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{{Short description|Birth control method which is taken orally}} | |||
'''Oral ]''' are chemicals taken by mouth to inhibit normal fertility. All act on the ] system. Female oral contraceptives have been on the market since the early ], and enjoy great popularity. It is used by millions of women around the world, though the acceptance varies by region: approximately one-third of sexually active women in the ], but much less in countries such as ]. ]s remain a subject of research and development, and are not widely available to the public. | |||
{{Redirect|The pill|other uses|Pill (disambiguation)}} | |||
{{About|daily use of COC|occasional use|Emergency contraception}} | |||
{{Use dmy dates|date=February 2024}} | |||
{{cs1 config|name-list-style=vanc|display-authors=6}} | |||
{{Infobox Birth control | |||
| name = Combined oral contraceptive pill | |||
| image = Pilule contraceptive.jpg | |||
| width = 200 | |||
| caption = | |||
| bc_type = Hormonal | |||
| date_first_use = {{start date and age|1960}} (United States) | |||
| rate_type = Failure | |||
| perfect_failure% = 0.3 | |||
| perfect_failure_ref = <ref name="Trussell 2011">{{cite book| vauthors = Trussell J |year=2011 |chapter=Contraceptive efficacy | veditors = Hatcher RA, Trussell J, Nelson A, Cates W, Kowal D, Policar M |title= Contraceptive technology |edition=20th revised |location=New York|publisher=Ardent Media|isbn=978-1-59708-004-0|issn = 0091-9721|oclc=781956734|pages=779–863}} Table 26–1 = <span class="plainlinks"> {{Webarchive|url=https://web.archive.org/web/20170215224018/http://www.contraceptivetechnology.org/wp-content/uploads/2013/09/CTFailureTable.pdf |date=15 February 2017 }}</span></ref> | |||
| typical_failure% = 9 | |||
| typical_failure_ref =<ref name="Trussell 2011"/> | |||
| duration_effect = 1–4 days <!-- depending where in pack/cycle, EC required after 1–4 days missed --> | |||
| reversibility = Yes | |||
| user_reminders = Taken within same 24-hour window each day | |||
| clinic_interval = 6 months | |||
| STD_protection_YesNo = No | |||
| periods = Regulated, and often lighter and less painful | |||
| benefits = Evidence for reduced mortality risk and reduced death rates in all cancers.<ref name="Hannaford 2010"/> Possible reduced ] and ] risks.<ref>{{cite web | title = Oral Contraceptives and Cancer Risk | publisher = National Cancer Institute | date = 22 February 2018 | url = https://www.cancer.gov/about-cancer/causes-prevention/risk/hormones/oral-contraceptives-fact-sheet | access-date = 10 May 2020 | archive-date = 27 May 2020 | archive-url = https://web.archive.org/web/20200527074301/https://www.cancer.gov/about-cancer/causes-prevention/risk/hormones/oral-contraceptives-fact-sheet | url-status = live }}</ref> | |||
{{Citation needed|date=August 2020}}<br />May treat ], ], ], ]{{Citation needed|date=August 2020}} | |||
| weight_gain_loss = No proven effect | |||
| risks = Possible small increase in some cancers.<ref name=IARC2007/><ref name="oxford 1996a">{{cite journal | author = Collaborative Group on Hormonal Factors in Breast Cancer | title = Breast cancer and hormonal contraceptives: collaborative reanalysis of individual data on 53 297 women with breast cancer and 100 239 women without breast cancer from 54 epidemiological studies | journal = Lancet | volume = 347 | issue = 9017 | pages = 1713–27 | date = June 1996 | pmid = 8656904 | doi = 10.1016/S0140-6736(96)90806-5 | s2cid = 36136756 | doi-access = free | title-link = doi }}</ref> Small reversible increase in ]s; ],<ref name="KemmerenEtAl2002">{{cite journal | vauthors = Kemmeren JM, Tanis BC, van den Bosch MA, Bollen EL, Helmerhorst FM, van der Graaf Y, Rosendaal FR, Algra A | title = Risk of Arterial Thrombosis in Relation to Oral Contraceptives (RATIO) study: oral contraceptives and the risk of ischemic stroke | journal = Stroke | volume = 33 | issue = 5 | pages = 1202–8 | date = May 2002 | pmid = 11988591 | doi = 10.1161/01.STR.0000015345.61324.3F | doi-access = free | title-link = doi }}</ref> ]<ref name="BaillargeonMcClishEssahNestler2004">{{cite journal | vauthors = Baillargeon JP, McClish DK, Essah PA, Nestler JE | title = Association between the current use of low-dose oral contraceptives and cardiovascular arterial disease: a meta-analysis | journal = The Journal of Clinical Endocrinology and Metabolism | volume = 90 | issue = 7 | pages = 3863–70 | date = July 2005 | pmid = 15814774 | doi = 10.1210/jc.2004-1958 | doi-access = free | title-link = doi }}</ref> | |||
| medical_notes = Affected by the antibiotic ],<ref>{{cite web|url=http://www.plannedparenthood.org/health-topics/birth-control/birth-control-pill-4228.htm|title=Birth Control Pills - Birth Control Pill - The Pill|access-date=3 April 2009|archive-date=5 August 2011|archive-url=https://web.archive.org/web/20110805151417/http://www.plannedparenthood.org/health-topics/birth-control/birth-control-pill-4228.htm|url-status=live}}</ref> the herb Hypericum (St. Johns Wort) and some anti-epileptics, also vomiting or diarrhea. Caution if history of migraines. | |||
}} | |||
The '''combined oral contraceptive pill''' ('''COCP'''), often referred to as the '''birth control pill''' or colloquially as "'''the pill'''", is a type of ] that is designed to be ] by women. It is the oral form of ]. The pill contains two important ]s: a ] (a synthetic form of the hormone ] / ]) and ] (usually ] or ]).<ref name=":02"/><ref name=":8">{{cite news |title=Guinea pigs or pioneers? How Puerto Rican women were used to test the birth control pill. |newspaper=] |url=https://www.washingtonpost.com/news/retropolis/wp/2017/05/09/guinea-pigs-or-pioneers-how-puerto-rican-women-were-used-to-test-the-birth-control-pill/ |access-date=14 September 2022 |issn=0190-8286 |archive-date=8 November 2022 |archive-url=https://web.archive.org/web/20221108052715/https://www.washingtonpost.com/news/retropolis/wp/2017/05/09/guinea-pigs-or-pioneers-how-puerto-rican-women-were-used-to-test-the-birth-control-pill/ |url-status=live }}</ref><ref>{{cite web |title=Birth Control Pill (for Teens) - Nemours KidsHealth |url=https://kidshealth.org/en/teens/contraception-birth.html#:~:text=The |access-date=21 September 2022 |website=kidshealth.org |archive-date=21 September 2022 |archive-url=https://web.archive.org/web/20220921151321/https://kidshealth.org/en/teens/contraception-birth.html#:~:text=The |url-status=live }}</ref><ref>{{cite journal |last1=Tyrer |first1=Louise |title=Introduction of the pill and its impact |journal=] |date=1999 |volume=59 |issue=1 |pages=11S–16S |doi=10.1016/s0010-7824(98)00131-0|pmid=10342090 }}</ref> When taken correctly, it alters the ] to eliminate ] and prevent ]. | |||
==Principles== | |||
Female oral contraceptives, colloquially known as ''the Pill'', are the most common form of pharmaceutical ]. They are used to prevent ]. The pill can also be used to control ] or symptoms of ]. They consist of a pill that women take daily and that contains doses of synthetic hormones (always a ] and most often also an ]). In some types of pill the doses of hormones are adjusted to be in synchrony with the ] (two- or three-phase pills), while others keep a constant level of the hormones. | |||
Combined oral contraceptive pills were first approved for contraceptive use in the United States in 1960, and remain a very popular form of birth control. They are used by more than 100 million women worldwide <ref>{{cite book |url=https://www.worldcat.org/oclc/1135665739 |title=Contraceptive use by method 2019 : data booklet |date=2019 |publisher = United Nations. Department of Economic and Social Affairs. Population Division |isbn=978-92-1-148329-1 |location= |oclc=1135665739}}</ref><ref>{{cite journal | vauthors = Christin-Maitre S | title = History of oral contraceptive drugs and their use worldwide | journal = Best Practice & Research. Clinical Endocrinology & Metabolism | volume = 27 | issue = 1 | pages = 3–12 | date = February 2013 | pmid = 23384741 | doi = 10.1016/j.beem.2012.11.004 }}</ref> including about 9 million women in the United States.<ref>{{cite web |date=11 July 2022 |title=Products - Data Briefs - Number 327 - December 2018 |url=https://www.cdc.gov/nchs/products/databriefs/db327.htm |access-date=14 September 2022 |website=U.S. ] (CDC) |archive-date=13 September 2022 |archive-url=https://web.archive.org/web/20220913114252/https://www.cdc.gov/nchs/products/databriefs/db327.htm |url-status=live }}</ref><ref>{{cite journal | vauthors = Sech LA, Mishell DR | title = Oral steroid contraception | journal = Women's Health | volume = 11 | issue = 6 | pages = 743–748 | date = November 2015 | pmid = 26673988 | doi = 10.2217/whe.15.82 | s2cid = 6433771 | doi-access = free | title-link = doi }}</ref> From 2015 to 2017, 12.6% of women aged 15–49 in the US reported using combined oral contraceptive pills, making it the second most common method of contraception in this age range (] is the most common method).<ref>{{cite web|url=https://www.cdc.gov/nchs/products/databriefs/db327.htm|title=Current Contraceptive Status Among Women Aged 15–49: United States, 2015–2017|date=7 June 2019|website=U.S. ] (CDC)|access-date=2 August 2019|archive-date=13 September 2022|archive-url=https://web.archive.org/web/20220913114252/https://www.cdc.gov/nchs/products/databriefs/db327.htm|url-status=live}}</ref> Use of combined oral contraceptive pills, however, varies widely by country,<ref>{{cite book| author = UN Population Division| title = World Contraceptive Use 2005| url = https://www.un.org/esa/population/publications/contraceptive2005/2005_World_Contraceptive_files/WallChart_WCU2005.pdf| year = 2006| publisher = United Nations| location = New York| isbn = 978-92-1-151418-6| access-date = 28 June 2017| archive-date = 26 April 2018| archive-url = https://web.archive.org/web/20180426164139/http://www.un.org/esa/population/publications/contraceptive2005/2005_World_Contraceptive_files/WallChart_WCU2005.pdf| url-status = live}} women aged 15–49 married or in consensual union</ref> age, education, and ] status. For example, one third of women aged 16–49 in the United Kingdom use either the combined pill or ] (POP),<ref>{{cite web |url=http://www.netdoctor.co.uk/sex_relationships/facts/contraceptivepills.htm |vauthors=Delvin D |title=Contraception – the contraceptive pill: How many women take it in the UK? |date=15 June 2016 |access-date=25 December 2010 |archive-date=4 January 2011 |archive-url=https://web.archive.org/web/20110104034215/http://www.netdoctor.co.uk/sex_relationships/facts/contraceptivepills.htm |url-status=live }}</ref><ref name="taylor">{{cite book | vauthors = Taylor T, Keyse L, Bryant A |year=2006 |title=Contraception and Sexual Health, 2005/06 |location=London |publisher=Office for National Statistics |isbn=978-1-85774-638-9 |url=http://www.statistics.gov.uk/downloads/theme_health/contraception2005-06.pdf |url-status=dead |archive-url=http://webarchive.nationalarchives.gov.uk/20070109053900/http://www.statistics.gov.uk/downloads/theme_health/contraception2005-06.pdf |archive-date=9 January 2007 }} British women aged 16–49: 24% use the pill {{as of|2016|lc=y}} (17% use Combined pill, 5% use Minipill, 2% don't know type)</ref> compared with less than 3% of women in Japan (as of 1950–2014).<ref name="Yoshida 2016">{{cite journal | vauthors = Yoshida H, Sakamoto H, Leslie A, Takahashi O, Tsuboi S, Kitamura K | title = Contraception in Japan: Current trends | journal = Contraception | volume = 93 | issue = 6 | pages = 475–477 | date = June 2016 | pmid = 26872717 | doi = 10.1016/j.contraception.2016.02.006 }}</ref> | |||
Combined oral contraceptives are on the ].<ref name="WHO23rd">{{cite book | vauthors = ((World Health Organization)) | title = The selection and use of essential medicines 2023: web annex A: World Health Organization model list of essential medicines: 23rd list (2023) | year = 2023 | hdl = 10665/371090 | author-link = World Health Organization | publisher = World Health Organization | location = Geneva | id = WHO/MHP/HPS/EML/2023.02 | hdl-access=free }}</ref> The pill was a catalyst for the ].<ref>{{cite news|url=https://www.nytimes.com/2010/05/04/health/04pill.html|title=The Pill Started More Than One Revolution|vauthors=Harris G|date=3 May 2010|newspaper=]|access-date=21 September 2015|archive-date=27 September 2015|archive-url=https://web.archive.org/web/20150927124922/http://www.nytimes.com/2010/05/04/health/04pill.html|url-status=live}}</ref> | |||
{{TOC limit|3}} | |||
==Background== | |||
===Oral contraceptives=== | |||
] | |||
] | |||
{{unreferenced section|date=December 2024}} | |||
'''Hormonal oral contraceptives''' are preventive ]s taken ] by ]s to avoid ] by manipulating their ]s. The first oral contraceptive was approved by the US ] (FDA) and sold to the market in 1960. There are two types of hormonal oral contraceptives, namely Combined Oral Contraceptives and ] Only Pills. Oral contraceptives, be it combined or progesterone-only, can effectively prevent pregnancy by regulating hormonal changes in the ], inhibiting ], and altering ] ] to impede ] mobility; combined pills have extra effects in menstrual cycle regulation and menstrual pain relief. Common ]s include ] and ] relief, with Combined Oral Contraceptives having additional benefits in relieving menstrual ]. | |||
=== Variants === | |||
'''Progesterone-only pills''' ('''POPs''') utilise ], the synthetic form of ], as the only active pharmaceutical ingredient in the formulation.<ref name=":0a" /><ref>{{Citation |last1=Edwards |first1=Michael |title=Progestins |date=2024 |work=StatPearls |url=http://www.ncbi.nlm.nih.gov/books/NBK563211/ |access-date=2024-02-28 |place=Treasure Island (FL) |publisher=StatPearls Publishing |pmid=33085358 |last2=Can |first2=Ahmet S.}}</ref> In the US, ] and ] are the most commonly used compounds in formulations.<ref name=":0" /> | |||
'''Combined oral contraceptives''' ('''COCs''') are commonly classified into generations, referring to their order of development in history.<ref name=":3a">{{Cite web |title=Combined hormonal contraceptives {{!}} European Medicines Agency |url=https://www.ema.europa.eu/en/human-regulatory-overview/post-authorisation/pharmacovigilance-post-authorisation/referral-procedures-human-medicines/combined-hormonal-contraceptives |access-date=2024-02-28 |website=www.ema.europa.eu}}</ref> This discussion may also help identify some key features in a variety of products. According to ], the first generation of combined oral contraceptives, which made use of a high concentration of oestrogen only, were those invented in the 1960s.<ref name=":3a" /> In the second generation of products, progestogens were introduced into the formulation while the concentration of oestrogen was reduced.<ref name=":3a" /> Starting from the 1990s, the progression in the development of combined oral contraceptives has been directed towards varying the type of progestogen incorporated.<ref name=":3a" /> These products are referred as the third and fourth generation.<ref name=":3a" /> | |||
Oestrogen ingredients: ], ], ].<ref name=":0a" /> | |||
1st generation progestin: ], ], ], ].<ref name=":0a" /> | |||
2nd generation progestin: ], ].<ref name=":0a" /> | |||
3rd generation progestin: ], ], ].<ref name=":0a" /> | |||
=== The menstrual cycle === | |||
] | |||
Hormonal oral contraceptives (HOCs) interact with hormonal changes in the menstrual cycle in females to prevent ], and hence achieve contraception.<ref name=":0a">{{Citation |last1=Cooper |first1=Danielle B. |title=Oral Contraceptive Pills |date=2024 |work=StatPearls |url=http://www.ncbi.nlm.nih.gov/books/NBK430882/ |access-date=2024-02-28 |place=Treasure Island (FL) |publisher=StatPearls Publishing |pmid=28613632 |last2=Patel |first2=Preeti |last3=Mahdy |first3=Heba}}</ref> In a 28-day menstrual cycle, there are the proliferative phase, ovulation, and then the secretory phase.<ref name=":1a">{{Citation |last1=Thiyagarajan |first1=Dhanalakshmi K. |title=Physiology, Menstrual Cycle |date=2024 |work=StatPearls |url=http://www.ncbi.nlm.nih.gov/books/NBK500020/ |access-date=2024-02-28 |place=Treasure Island (FL) |publisher=StatPearls Publishing |pmid=29763196 |last2=Basit |first2=Hajira |last3=Jeanmonod |first3=Rebecca}}</ref> | |||
Menstruation marks the beginning of proliferative phase in day 1-14.<ref name=":1a" /> In this period, the ] located near the ] secretes ] (FSH) into the ] to signal the development of ] in ] in the ].<ref name=":1a" /> While follicle serves as the chamber of ovum development, it secretes ], a hormone that not only triggers the thickening of ] in preparation for ], but also inhibits the secretion of FSH in pituitary via a ].<ref name=":1a" /> | |||
Specifically in ovulation, transient positive feedback by Oestrogen on FSH and ] (LH) secretion from pituitary is permitted so that the release of mature ] from follicle is triggered.<ref name=":1a" /> | |||
In secretory phase on day 14-28, this follicle then transforms into ] and continues releasing Oestrogen with ] into bloodstream.<ref name=":1a" /> While Oestrogen and Progesterone primarily aid the maintenance of thickness in uterine lining,<ref name=":1a" /> the negative feedback in pituitary allows them to inhibit FSH and LH secretion.<ref name=":1a" /> In the absence of LH, corpus luteum degenerates and ultimately causes blood Oestrogen and Progesterone levels to decline.<ref name=":1a" /> Without these thickness maintaining agents, uterine lining breaks down and hence the presentation of menstruation.<ref name=":1a" /> | |||
==Mechanism of action== | ==Mechanism of action== | ||
Progesterone and Oestrogen, either in combination or with Progesterone-only, are the ] found in a hormonal oral contraceptive formulation.<ref name=":2a">{{Cite web |title=Estrogen and Progestin (Oral Contraceptives): MedlinePlus Drug Information |url=https://medlineplus.gov/druginfo/meds/a601050.html |access-date=2024-02-28 |website=medlineplus.gov }}</ref> These medications are ] administered for ] to exert their effects.<ref name=":2a" /> An artificially enhanced level of Progesterone throughout the menstrual cycle inhibits the pituitary secretion of FSH and LH such that their actions in stimulating follicular development and ovulation are prevented.<ref name=":0a" /> Similarly, a boosted Oestrogen level activates the negative feedback mechanism in reducing FSH secretion from pituitary and therefore prevents follicular development.<ref name=":0a" /> In the absence of a developed follicle, ovulation cannot occur so that ] is made impossible and ] is achieved.<ref name=":2a" /> In comparison, Progesterone is more efficacious than Oestrogen not only because of its additional action in impeding LH, but also its ability to modulate the cervical mucus into sperm-repellent.<ref name=":0a" /> | |||
The pill works by preventing ], as well as making the ] less likely to accept implantation of an embryo if one is created, and thickens the mucus in the ] making it more difficult for sperm to reach any egg. | |||
Combined oral contraceptive pills were developed to prevent ] by suppressing the release of ]s. Combined hormonal contraceptives, including combined oral contraceptive pills, inhibit ] and prevent ovulation as a primary mechanism of action.<ref name="Nelson 2011">{{cite book| veditors = Hatcher RA, Trussell J, Nelson A, Cates W, Kowal D, Policar M | title = Contraceptive technology| edition = 20th revised| year = 2011| publisher = Ardent Media| location = New York| isbn = 978-1-59708-004-0| oclc = 781956734| pages = 249–341| chapter = Combined oral contraceptives (COCs)| issn = 0091-9721 }} pp. 257–258:{{blockquote|Mechanism of action<br /> Combined oral contraceptive pills prevent fertilization and, therefore, qualify as contraceptives. There is no significant evidence that they work after fertilization. The progestins in all combined oral contraceptives provide most of the contraceptive effect by suppressing ovulation and thickening cervical mucus, although the estrogens also make a small contribution to ovulation suppression. Cycle control is enhanced by the estrogen.<br />Because combined oral contraceptives so effectively suppress ovulation and block ascent of sperm into the upper genital tract, the potential impact on endometrial receptivity to implantation is almost academic. When the two primary mechanisms fail, the fact that pregnancy occurs despite the endometrial changes demonstrates that those endometrial changes do not significantly contribute to the pill's mechanism of action.}}</ref><ref name="Speroff 2011">{{cite book| vauthors = Speroff L, Darney PD | title = A clinical guide for contraception| edition = 5th| year = 2011| publisher = Lippincott Williams & Wilkins| location = Philadelphia| isbn = 978-1-60831-610-6| pages = 19–152| chapter = Oral contraception }}</ref><ref name="Levin 2011">{{cite book| vauthors = Levin ER, Hammes SR | veditors = Goodman LS, Brunton LL, Chabner BA, Knollmann BC | title = Goodman & Gilman's pharmacological basis of therapeutics| edition = 12th| year = 2011| publisher = McGraw-Hill Medical| location = New York| isbn = 978-0-07-162442-8| pages = 1163–1194| chapter = Estrogens and progestins }}</ref><ref name="Glasier 2010">{{cite book| vauthors = Glasier A | author-link = Anna Glasier| veditors = Jameson JL, De Groot LJ | title = Endocrinology| edition = 6th| year = 2010| publisher = Saunders Elsevier| location = Philadelphia| isbn = 978-1-4160-5583-9| pages = 2417–2427| chapter = Contraception }}</ref> | |||
Several different types of 'the pill' exist. Generally, they all have revolved around different synthetic estrogens and progestins, chemical analogues of the natural ]s ] (an ]) and ] (a ]). Most common brands use 20 to 40 micrograms of ] as the estrogen component and either a fixed or varying (the bi- and triphasic pills) amount of either ] or ] as the progestagen component. | |||
Under normal circumstances, ] (LH) stimulates the ] of the ovarian follicle to produce ]. The ]s of the ovarian follicle then convert this androstenedione to estradiol. This conversion process is catalyzed by aromatase, an enzyme produced as a result of ] (FSH) stimulation.<ref>{{Citation |last=Barbieri |first=Robert L. |title=The Endocrinology of the Menstrual Cycle |date=2014 |url=https://doi.org/10.1007/978-1-4939-0659-8_7 |work=Human Fertility: Methods and Protocols |series=Methods in Molecular Biology |volume=1154 |pages=145–169 |editor-last=Rosenwaks |editor-first=Zev |place=New York, NY |publisher=Springer |doi=10.1007/978-1-4939-0659-8_7 |pmid=24782009 |isbn=978-1-4939-0659-8 |access-date=15 September 2022 |editor2-last=Wassarman |editor2-first=Paul M. |archive-date=15 July 2023 |archive-url=https://web.archive.org/web/20230715025752/https://link.springer.com/protocol/10.1007/978-1-4939-0659-8_7 |url-status=live }}</ref> In individuals using oral contraceptives, progestogen ] decreases the pulse frequency of ] (GnRH) release by the ], which decreases the secretion of FSH and greatly decreases the secretion of LH by the ]. Decreased levels of FSH inhibit follicular development, preventing an increase in ] levels. Progestogen negative feedback and the lack of estrogen ] on LH secretion prevent a ] LH surge. Inhibition of follicular development and the absence of an LH surge prevent ovulation.<ref name="Nelson 2011"/><ref name="Speroff 2011"/><ref name="Levin 2011"/> | |||
==Effectivity== | |||
The ''Pearl index''{{ref|1}} is often used to compare the effectiveness of various methods of contraception. It is expressed as the "number of pregnancies in 100 normally fertile women over the period of one year". Each method of birth control has two Pearl index numbers: | |||
Estrogen was originally included in oral contraceptives for better cycle control (to stabilize the endometrium and thereby reduce the incidence of breakthrough bleeding), but was also found to inhibit follicular development and help prevent ovulation. Estrogen negative feedback on the anterior pituitary greatly decreases the secretion of FSH, which inhibits follicular development and helps prevent ovulation.<ref name="Nelson 2011"/><ref name="Speroff 2011"/><ref name="Levin 2011"/> | |||
*''method effectiveness'': is the Pearl index number for use under ''perfect'' conditons. The method effectiveness Pearl index for ''the Pill'' has been measured as low as 0.3 and as high as 1.25, which means that under ideal conditions, anywhere from 0.3 to 1.25 out of 100 users will become ] during one year of perfect use (Pearl index = 0.3 to 1.25). | |||
Another primary mechanism of action of all progestogen-containing contraceptives is inhibition of ] penetration through the ] into the upper ] (] and ]s) by decreasing the water content and increasing the ] of the ].<ref name="Nelson 2011"/> | |||
*''user effectiveness'': is the Pearl index number for use under ''typical'' conditions. The user effectiveness measured by the Pearl index for ''the Pill'' has been measured as low as 2.15 and as high as 8.0, which means that anywhere from 2.15 to 8.0 out of 100 women will become ] during the first year of typical use (Pearl index = 2.15 to 8.0). {{ref|2}} {{ref|3}} | |||
The estrogen and progestogen in combined oral contraceptive pills have other effects on the reproductive system, but these have not been shown to contribute to their contraceptive efficacy:<ref name="Nelson 2011"/> | |||
Many women occasionally forget to take the Pill daily, impairing its effectivity. Correct use of the pill usually implies taking it every day at the same hour for 21 days, followed by a pause of seven days. | |||
* Slowing tubal motility and ova transport, which may interfere with ]. | |||
* ] atrophy and alteration of ] content, which may impede sperm motility and viability, or theoretically inhibit ]. | |||
* Endometrial edema, which may affect implantation. | |||
Insufficient evidence exists on whether changes in the endometrium could actually prevent implantation. The primary mechanisms of action are so effective that the possibility of fertilization during combined oral contraceptive pill use is very small. Since pregnancy occurs despite endometrial changes when the primary mechanisms of action fail, endometrial changes are unlikely to play a significant role, if any, in the observed effectiveness of combined oral contraceptive pills.<ref name="Nelson 2011"/> | |||
Use of other medications can prevent the pill from working, due to interactions with the metabolism of the hormonal constituents. ] will also stop the pill from working, because the hormones are not properly absorbed by the bowels. | |||
== |
==Formulations== | ||
{{Main|Oral contraceptive formulations}} | |||
] | |||
The pill usually comes in two different packet sizes, and each packet usually has days marked off for a cycle lasting of 28 days. For the 21-pill packet, a woman takes a pill each day for 21 days, and waits for an additional seven days before starting the next packet. For the 28-pill packet, the woman similarly takes a pill each day. However, instead of only taking pills for 21 days of the month, she also takes the remaining seven placebo or ] included in the packet, and once she finishes the last placebo pill, she can immediately start the next packet on the following day. The purpose of the placebo pills is to ensure that the woman, out of habit, can take a pill on ''every day'' of her menstrual cycle, so that she does not have to calculate when exactly is the next date that she should start her next packet of pills. It is possible for a woman to skip menstruation and still remain protected against conception by skipping these pills in the cycle. The presence of these pills is still thought to be comforting for the woman as menstruation is a physical confirmation that she is still not pregnant. | |||
Oral contraceptives come in a variety of formulations, some containing both ] and ]s, and some only containing ]. Doses of component hormones also vary among products, and some pills are ] (delivering the same dose of hormones each day) while others are ] (doses vary each day). combined oral contraceptive pills can also be divided into two groups, those with progestins that possess ] activity (], ], ], ], ], ], ]) or ] activity (], ], ], ], ]). | |||
==Drug interactions== | |||
Some drugs reduce the effect of the pill and can cause ], or pregnancy (together with ], of course). These include ], ]s, ] and ]. The traditional medicinal drug ] has also been implicated. | |||
Combined oral contraceptive pills have been somewhat inconsistently grouped into "generations" in the medical literature based on when they were introduced.<ref name="Nelson 2011a">{{cite book| vauthors = Nelson AL, Cwiak C |year=2011|chapter=Combined oral contraceptives | veditors = Hatcher RA, Trussell J, Nelson A, Cates W, Kowal D, Policar M |title=Contraceptive technology|edition=20th revised|location=New York|publisher=Ardent Media|pages=253–254|isbn=978-1-59708-004-0|issn=0091-9721|oclc=781956734}}{{blockquote|Ten different progestins have been used in the combined oral contraceptives that have been sold in the United States. Several different classification systems for the progestins exist, but the one most commonly used system recapitulates the history of the pill in the United States by categorizing the progestins into the so-called "generations of progestins". The first three generations of progestins are derived from 19-nortestosterone. The fourth generation is drospirenone. Newer progestins are hybrids.<br/>First-generation progestins. First-generation progestins include noretynodrel, norethisterone, norethisterone acetate, and etynodiol diacetate... These compounds have the lowest potency and relatively short half-lives. The short half-life did not matter in the early, high-dose pills but as doses of progestin were decreased in the more modern pills, problems with unscheduled spotting and bleeding became more common.<br/>Second-generation progestins. To solve the problem of unscheduled bleeding and spotting, the second generation progestins (norgestrol and levonorgestrel) were designed to be significantly more potent and to have longer half-lives than norethisterone-related progestins ... The second-generation progestins have been associated with more androgen-related side-effects such as adverse effect on lipids, oily skin, acne, and facial hair growth.<br/>Third-generation progestins. Third-generation progestins (desogestrel, norgestimate and elsewhere, gestodene) were introduced to maintain the potent progestational activity of second-generation progestins, but to reduce androgeneic side effects. Reduction in androgen impacts allows a fuller expression of the pill's estrogen impacts. This has some clinical benefits... On the other hand, concern arose that the increased expression of estrogen might increase the risk of venous thromboembolism (VTE). This concern introduced a pill scare in Europe until international studies were completed and correctly interpreted.<br/>Fourth-generation progestins. Drospirenone is an analogue of spironolactone, a potassium-sparing diuretic used to treat hypertension. Drospirenone possesses anti-mineralocorticoid and anti-androgenic properties. These properties have led to new contraceptive applications, such as treatment of premenstrual dysphoric disorder and acne... In the wake of concerns around possible increased VTE risk with less androgenic third-generation formulations, those issues were anticipated with drospirenone. They were clearly answered by large international studies.<br/>Next-generation progestins. Progestins have been developed with properties that are shared with different generations of progestins. They have more profound, diverse, and discrete effects on the endometrium than prior progestins. This class would include dienogest (United States) and nomegestrol (Europe).}}</ref><ref name="Speroff 2011a">{{cite book| vauthors = Speroff L, Darney PD |year=2011|chapter=Oral contraception|title=A clinical guide for contraception|edition=5th|location=Philadelphia|publisher=Lippincott Williams & Wilkins|page=<span class="plainlinks"></span>|isbn=978-1-60831-610-6}}</ref> | |||
==Side-effects== | |||
* First generation combined oral contraceptive pills are sometimes defined as those containing the progestins noretynodrel, norethisterone, norethisterone acetate, or etynodiol acetate;<ref name="Nelson 2011a"/> and sometimes defined as all combined oral contraceptive pills containing ≥ 50 μg ethinylestradiol.<ref name="Speroff 2011a"/> | |||
When starting to take the birth control pill some women report slight ], although this depends entirely on the individual and some people experience no weight gain at all while people who are already ] or overweight may continue to gain weight. Some people also notice changes in the intensity or decline of ], ] and ]. | |||
* Second generation combined oral contraceptive pills are sometimes defined as those containing the progestins norgestrel or levonorgestrel;<ref name="Nelson 2011a"/> and sometimes defined as those containing the progestins norethisterone, norethisterone acetate, etynodiol acetate, norgestrel, levonorgestrel, or norgestimate and < 50 μg ethinylestradiol.<ref name="Speroff 2011a"/> | |||
* Third generation combined oral contraceptive pills are sometimes defined as those containing the progestins desogestrel or gestodene;<ref name="Speroff 2011a"/> and sometimes defined as those containing desogestrel, gestodene, or norgestimate.<ref name="Nelson 2011a"/> | |||
* Fourth generation combined oral contraceptive pills are sometimes defined as those containing the progestin drospirenone;<ref name="Nelson 2011a"/> and sometimes defined as those containing drospirenone, dienogest, or nomegestrol acetate.<ref name="Speroff 2011a"/> | |||
==Medical use== | |||
Some other common side effects are: ], ], ], ], ], changes in the ]s, ], and ]. | |||
] | |||
=== Contraceptive use === | |||
==Cautions and contraindications== | |||
Combined oral contraceptive pills are a type of oral medication that were originally designed to be taken every day at the same time of day in order to prevent pregnancy.<ref name=":0">{{cite web|url=https://www.plannedparenthood.org/learn/birth-control/birth-control-pill/how-do-i-use-the-birth-control-pill|title=How to Use Birth Control Pills|website=Planned Parenthood|access-date=29 November 2017|archive-date=6 December 2017|archive-url=https://web.archive.org/web/20171206140038/https://www.plannedparenthood.org/learn/birth-control/birth-control-pill/how-do-i-use-the-birth-control-pill|url-status=live}}</ref><ref name=":13">{{cite book | vauthors = Callahan TL, Caughey AB |title=Blueprints obstetrics & gynecology |date=2013|publisher=Lippincott Williams & Wilkins |isbn=978-1-4511-1702-8 |edition=6th |location=Baltimore, MD |oclc=800907400 }}</ref> There are many different formulations or brands, but the average pack is designed to be taken over a 28-day period (also known as a cycle).{{cn|date=December 2024}} For the first 21 days of the cycle, users take a daily pill that contains two hormones, estrogen and progestogen.{{cn|date=December 2024}} During the last 7 days of the cycle, users take daily ] (biologically inactive) pills and these days are considered hormone-free days.{{cn|date=December 2024}} Although these are hormone-free days, users are still protected from pregnancy during this time.{{medcn|date=December 2024}} | |||
Oral contraceptives may influence ], increasing the risk of ]s causing ] (DVT) and ], ] and ] (heart attack). This is especially so in women who already have some pre-existing ], in women who have a familial tendency to form blood clots (such as familial ]), women with ] or ] (]) and in ]. | |||
Some combined oral contraceptive pill packs only contain 21 pills and users are advised to take no pills for the last 7 days of the cycle.<ref name=":02"/> Other combined oral contraceptive pill formulations contain 91 pills, consisting of 84 days of active hormones followed by 7 days of placebo (]).<ref name=":0" /> Combined oral contraceptive pill formulations can contain 24 days of active hormone pills followed by 4 days of placebo pills (e.g. Yaz 28 and Loestrin 24 Fe) as a means to decrease the severity of placebo effects.<ref name=":02"/> These combined oral contraceptive pills containing active hormones and a placebo/hormone-free period are called cyclic combined oral contraceptive pills. Once a pack of cyclical combined oral contraceptive pill treatment is completed, users start a new pack and new cycle.<ref>{{cite web| url = https://youngwomenshealth.org/birth-control-pills-all-guides/| title = Birth Control Pills All Guides| date = October 2014| access-date = 20 October 2018| archive-date = 31 May 2023| archive-url = https://web.archive.org/web/20230531032622/https://youngwomenshealth.org/birth-control-pills-all-guides/| url-status = live}}</ref> | |||
The pill has also been linked to an increased risk of ], although newer pill types may not influence breast cancer risk. In rare cases, high estrogen pills may trigger ]. | |||
Women who use the pill have an increased chance of developing certain serious problems that can be fatal. Benign liver tumors have been reported. | |||
Most monophasic combined oral contraceptive pills can be used continuously such that patients can skip placebo days and continuously take hormone active pills from a combined oral contraceptive pill pack.<ref name=":02">{{cite journal | vauthors = Teal S, Edelman A | title = Contraception Selection, Effectiveness, and Adverse Effects: A Review | journal = JAMA | volume = 326 | issue = 24 | pages = 2507–2518 | date = December 2021 | pmid = 34962522 | doi = 10.1001/jama.2021.21392 | s2cid = 245557522 | doi-access = free | title-link = doi }}</ref> One of the most common reasons users do this is to avoid or diminish ]. The majority of women on cyclic combined oral contraceptive pills have regularly scheduled withdrawal bleeding, which is vaginal bleeding mimicking users' menstrual cycles with the exception of lighter menstrual bleeding compared to bleeding patterns prior to combined oral contraceptive pill commencement. As such, a study reported that out of 1003 women taking combined oral contraceptive pills approximately 90% reported regularly scheduled withdrawal bleeds over a 90-day standard reference period.<ref name=":02" /> Withdrawal bleeding usually occurs during the placebo, hormone-free days.{{medcn|date=December 2024}} Therefore, avoiding placebo days can diminish withdrawal bleeding among other placebo effects.{{medcn|date=December 2024}} | |||
The chance of developing most of the above problems increases with age - especially when certain other health problems are present. The risks are even greater for women who are age 35 or older, smoke more than 15 cigarettes a day, or have conditions associated with heart attack, such as ], ], or ], and certain inherited conditions that increase the risk of blood clotting. Women using the pill who undergo major surgery seem to have a greater chance of having blood clots. | |||
== |
=== Regimen === | ||
This section demonstrates the overall rationalisation of ] and intervals of hormonal oral contraceptives, please seek advice and follow instructions from ] in administering specific hormonal oral contraceptives. Considering the menstrual cycle as a 28-day cycle, hormonal oral contraceptives are available in packages of 21, 28, or 91 tablets.<ref name=":2a" /> These pills have typically undergone unit dose optimisation so that they follow the administration pattern of once daily, every day or almost every day on a regular basis.<ref name=":2a" /> Since they are formulated into daily doses, it is recommended that the medication should be taken at the same time every day to maximise ].<ref name=":2a" /> | |||
Aside from being a contraceptive and for management of irregular periods, there are some incidental benefits to the pill that should be considered. It is reported that use of the pill can reduce the incidence of ] and ] {{ref|5}}. The reduction in these cancers is far larger than the risk of developing breast cancer or DVTs. This balance is rarely pointed out by the media. | |||
] | |||
For 21-tablet packs, the general instruction is to take one tablet daily for 21 days, followed by a 7-day blank interval without taking hormonal oral contraceptives before initiating another 21-tablet pack.<ref name=":2a" /> For 28-tablet packs, the 1st tablet from a new pack should be taken on the next day when the 28th tablet from an old pack was finished.<ref name=":2a" /> While the 7-day blank period does not apply to 28-tablet packs, they will likely include tablets in distinctive colours indicating that they have an alternate amount of active ingredients, otherwise inactive ingredient or ] supplement only.<ref name=":2a" /> The instruction for 91-tablet pack follows that of 28-tablet packs with some colour-distinguishable tablets which contain different amounts of medicine or supplement.<ref name=":2a" /> | |||
To acquire immediate contraceptive effects, the initiation of hormonal oral contraceptive dosing is recommended within the 1st-5th day from menstruation in order to discard other means of ].<ref name=":4a">{{Cite web |date=2017-12-21 |title=Combined pill |url=https://www.nhs.uk/conditions/contraception/combined-contraceptive-pill/ |access-date=2024-02-28 |website=nhs.uk }}</ref> Specific to Progesterone only pills, even if dosing is initiated within five days, backup contraception is suggested in the first 48 hours since the first pill.<ref name=":0a" /> In the case of dosing initiated after the 5th day from menstruation, effects usually take place after seven days and other contraceptive methods should remain in place until then.<ref name=":4a" /> | |||
==== Effectiveness ==== | |||
If used exactly as instructed, the estimated risk of getting pregnant is 0.3% which means that about 3 in 1000 women on combined oral contraceptive pills will become pregnant within one year.<ref name=":22">{{cite book |title=Selected practice recommendations for contraceptive use |publisher=World Health Organization | vauthors = ((World Health Organization)) |isbn=978-92-4-156540-0 |edition=Third |location=Geneva |pages=150 |oclc=985676200 |year=2016 |hdl=10665/252267 |hdl-access=free | author-link = World Health Organization }}</ref> However, typical use of combined oral contraceptive pills by users often consists of timing errors, forgotten pills, or unwanted side effects. With typical use, the estimated risk of getting pregnant is about 9% which means that about 9 in 100 women on combined oral contraceptive pills will become pregnant in one year.<ref name="pmid27467196" /> The perfect use failure rate is based on a review of pregnancy rates in clinical trials, and the typical use failure rate is based on a weighted average of estimates from the 1995 and 2002 US National Surveys of Family Growth (NSFG), corrected for underreporting of abortions.<ref>{{cite journal | vauthors = Trussell J | title = Understanding contraceptive failure | journal = Best Practice & Research. Clinical Obstetrics & Gynaecology | volume = 23 | issue = 2 | pages = 199–209 | date = April 2009 | pmid = 19223239 | pmc = 3638203 | doi = 10.1016/j.bpobgyn.2008.11.008 | series = Contraception and Sexual Health }}</ref><ref>{{cite journal | vauthors = Trussell J | title = Contraceptive failure in the United States | journal = Contraception | volume = 83 | issue = 5 | pages = 397–404 | date = May 2011 | pmid = 21477680 | pmc = 3638209 | doi = 10.1016/j.contraception.2011.01.021 }}</ref> | |||
Several factors account for typical use effectiveness being lower than perfect use effectiveness: | |||
# Mistakes on part of those providing instructions on how to use the method | |||
# Mistakes on part of the user | |||
# Conscious user non-compliance with instructions | |||
For instance, someone using combined oral contraceptive pills might have received incorrect information by a health care provider about medication frequency, forgotten to take the pill one day or not gone to the pharmacy in time to renew a combined oral contraceptive pill prescription. | |||
Combined oral contraceptive pills provide effective contraception from the very first pill if started within five days of the beginning of the ] (within five days of the first day of ]). If started at any other time in the menstrual cycle, combined oral contraceptive pills provide effective contraception only after 7 consecutive days of use of active pills, so a backup method of contraception (e.g. ]s) must be used in the interim.<ref name="Speroff 20052">{{cite book|title=A Clinical Guide for Contraception| vauthors = Speroff L, Darney PD |publisher= Lippincott Williams & Wilkins|year=2005|isbn=978-0-7817-6488-9|edition=4th|location=Philadelphia|pages=21–138|chapter=Oral Contraception}}</ref><ref name="FFPRHC COC2">{{cite web|url=http://www.ffprhc.org.uk/admin/uploads/FirstPrescCombOralContJan06.pdf|title=Clinical Guidance: First Prescription of Combined Oral Contraception|author=FFPRHC|year=2007|archive-url=https://web.archive.org/web/20070704044305/http://www.ffprhc.org.uk/admin/uploads/FirstPrescCombOralContJan06.pdf|archive-date=4 July 2007|url-status=dead|access-date=26 June 2007|author-link=Royal College of Obstetricians and Gynaecologists}}</ref> | |||
The effectiveness of combined oral contraceptive pills appears to be similar whether the active pills are taken continuously or if they are taken cyclically.<ref name="Continuous or extended cycle vs. cy">{{cite journal | vauthors = Edelman A, Micks E, Gallo MF, Jensen JT, Grimes DA | title = Continuous or extended cycle vs. cyclic use of combined hormonal contraceptives for contraception | journal = The Cochrane Database of Systematic Reviews | issue = 7 | pages = CD004695 | date = July 2014 | volume = 2014 | pmid = 25072731 | pmc = 6837850 | doi = 10.1002/14651858.CD004695.pub3 }}</ref> Contraceptive efficacy, however, could be impaired by numerous means. Factors that may contribute to a decrease in effectiveness:<ref name="Speroff 20052" /> | |||
# Missing more than one active pill in a packet, | |||
# Delay in starting the next packet of active pills (i.e., extending the pill-free, inactive pill or placebo pill period beyond 7 days), | |||
# ] ] of active pills due to ] or ], | |||
# Drug-drug interactions among combined oral contraceptive pills and other medications of the user that decrease contraceptive estrogen and/or progestogen levels.<ref name="Speroff 20052" /> | |||
In any of these instances, a backup contraceptive method should be used until hormone active pills have been consistently taken for 7 consecutive days or drug-drug interactions or underlying illnesses have been discontinued or resolved.<ref name="Speroff 20052" /> According to the US ] (CDC) guidelines, a pill is considered "late" if a user takes the pill after the user's normal medication time, but no longer than 24 hours after this normal time. If 24 hours or more have passed since the time the user was supposed to take the pill, then the pill is considered "missed".<ref name=":22" /> CDC guidelines discuss potential next steps for users who missed their pill or took it late.<ref>{{cite journal | vauthors = Curtis KM, Jatlaoui TC, Tepper NK, Zapata LB, Horton LG, Jamieson DJ, Whiteman MK | title = U.S. Selected Practice Recommendations for Contraceptive Use, 2016 | journal = MMWR. Recommendations and Reports | volume = 65 | issue = 4 | pages = 1–66 | date = July 2016 | pmid = 27467319 | doi = 10.15585/mmwr.rr6504a1 | doi-access = free | title-link = doi }}</ref> | |||
===Role of placebo pills=== | |||
The role of the ] pills is two-fold: to allow the user to continue the routine of taking a pill every day and to simulate the average ]. By continuing to take a pill every day, users remain in the daily habit even during the week without hormones. Failure to take pills during the placebo week does not impact the effectiveness of the pill, provided that daily ingestion of active pills is resumed at the end of the week.{{citation needed|date=July 2023}} | |||
The placebo, or hormone-free, week in the 28-day pill package simulates an average menstrual cycle, though the hormonal events during a pill cycle are significantly different from those of a normal ovulatory menstrual cycle. Because the pill suppresses ovulation (to be discussed more in the ]), birth control users do not have true menstrual periods. Instead, it is the lack of hormones for a week that causes a withdrawal bleed.<ref name=":13"/> The withdrawal bleeding that occurs during the break from active pills has been thought to be reassuring, a physical confirmation of not being pregnant.<ref name="gladwell2">{{cite magazine| vauthors = Gladwell M |date=10 March 2000|title=John Rock's Error|url=http://www.gladwell.com/2000/2000_03_10_a_rock.htm|magazine=The New Yorker|archive-url=https://web.archive.org/web/20130511133811/http://www.gladwell.com/2000/2000_03_10_a_rock.htm|archive-date=11 May 2013|access-date=4 February 2009}}</ref> The withdrawal bleeding is also predictable. Unexpected breakthrough bleeding can be a possible side effect of longer term active regimens.<ref>{{cite web|url=http://www.mayoclinic.com/health/birth-control-pill/WO00098|title=Birth control pill FAQ: Benefits, risks and choices|last=Mayo Clinic staff|publisher=Mayo Clinic|access-date=1 February 2013|archive-date=26 December 2012|archive-url=https://web.archive.org/web/20121226060838/http://www.mayoclinic.com/health/birth-control-pill/WO00098|url-status=live}}</ref> | |||
Since it is not uncommon for menstruating women to become anemic, some placebo pills may contain an ] supplement.<ref>{{cite web|url=http://www.patentstorm.us/patents/6451778/description.html|title=US Patent:Oral contraceptive:Patent 6451778 Issued on September 17, 2002 Estimated Expiration Date: July 2, 2017.|publisher=PatentStorm LLC|archive-url=https://web.archive.org/web/20110613020809/http://www.patentstorm.us/patents/6451778/description.html|archive-date=13 June 2011|url-status=dead|access-date=19 November 2010}}</ref><ref name="pmid11683548">{{cite journal | vauthors = Hercberg S, Preziosi P, Galan P | title = Iron deficiency in Europe | journal = Public Health Nutrition | volume = 4 | issue = 2B | pages = 537–545 | date = April 2001 | pmid = 11683548 | doi = 10.1079/phn2001139 | doi-access = free | title-link = doi }}</ref> This replenishes iron stores that may become depleted during menstruation. As well, birth control pills, such as combined oral contraceptive pills, are sometimes fortified with ] as it is recommended to take folic acid supplementation in the months prior to pregnancy to decrease the likelihood of ] in infants.<ref>{{cite journal | vauthors = Viswanathan M, Treiman KA, Kish-Doto J, Middleton JC, Coker-Schwimmer EJ, Nicholson WK | title = Folic Acid Supplementation for the Prevention of Neural Tube Defects: An Updated Evidence Report and Systematic Review for the US Preventive Services Task Force | journal = JAMA | volume = 317 | issue = 2 | pages = 190–203 | date = January 2017 | pmid = 28097361 | doi = 10.1001/jama.2016.19193 }}</ref><ref>{{cite journal | vauthors = Lassi ZS, Bhutta ZA | title = Clinical utility of folate-containing oral contraceptives | journal = International Journal of Women's Health | volume = 4 | pages = 185–190 | date = April 2012 | pmid = 22570577 | pmc = 3346209 | doi = 10.2147/IJWH.S18611 | doi-access = free | title-link = doi }}</ref> | |||
===No or less frequent placebos=== | |||
{{Main|Extended cycle combined oral contraceptive pill}} | |||
If the pill formulation is monophasic, meaning each hormonal pill contains a fixed dose of hormones, it is possible to skip withdrawal bleeding and still remain protected against conception by skipping the placebo pills altogether and starting directly with the next packet. Attempting this with bi- or tri-phasic pill formulations carries an increased risk of ] and may be undesirable. It will not, however, increase the risk of getting pregnant. | |||
Starting in 2003, women have also been able to use a three-month version of the pill.<ref>{{cite web|url=https://www.fda.gov/bbs/topics/ANSWERS/2003/ANS01251.html|title=FDA Approves Seasonal Oral Contraceptive|website=U.S. ] (FDA) |date=25 September 2003|archive-url=https://web.archive.org/web/20061007101134/https://www.fda.gov/bbs/topics/ANSWERS/2003/ANS01251.html <!-- Bot retrieved archive -->|archive-date=7 October 2006|access-date=9 November 2006}}</ref> Similar to the effect of using a constant-dosage formulation and skipping the placebo weeks for three months, ] gives the benefit of less frequent periods, at the potential drawback of breakthrough bleeding. Seasonique is another version in which the placebo week every three months is replaced with a week of low-dose estrogen. | |||
A version of the combined pill has also been packaged to eliminate placebo pills and withdrawal bleeds. Marketed as Anya or Lybrel, studies have shown that after seven months, 71% of users no longer had any breakthrough bleeding, the most common side effect of going longer periods of time without breaks from active pills. | |||
While more research needs to be done to assess the long term safety of using combined oral contraceptive pills continuously, studies have shown there may be no difference in short term adverse effects when comparing continuous use versus cyclic use of birth control pills.<ref name="Continuous or extended cycle vs. cy"/> | |||
===Non-contraceptive use=== | |||
The hormones in the pill have also been used to treat other medical conditions, such as ] (PCOS), ], ], acne, hirsutism, ], menstrual cramps, ]s, menorrhagia (excessive menstrual bleeding), menstruation-related or fibroid-related anemia and ] (painful menstruation).<ref name="pmid27467196" /><ref>{{cite web|url=http://www.youngwomenshealth.org/med-uses-ocp.html|title=Medical Uses of the Birth Control Pill|last=CYWH Staff|access-date=1 February 2013|date=18 October 2011|archive-date=5 February 2013|archive-url=https://web.archive.org/web/20130205071228/http://www.youngwomenshealth.org/med-uses-ocp.html|url-status=dead}}</ref> Besides acne, no oral contraceptives have been approved by the US FDA for the previously mentioned uses despite extensive use for these conditions.<ref>{{cite web|url=https://www.fda.gov/Drugs/ResourcesForYou/Consumers/ucm450624.htm|title=Information for Consumers (Drugs) - Find Information about a Drug|website=U.S. ] (FDA)|access-date=13 December 2017|archive-date=14 November 2017|archive-url=https://web.archive.org/web/20171114004746/https://www.fda.gov/Drugs/ResourcesForYou/Consumers/ucm450624.htm|url-status=dead}}</ref> | |||
==== PCOS ==== | |||
The cause of PCOS, or polycystic ovary syndrome, is multifactorial and not well-understood. Women with PCOS often have higher than normal levels of luteinizing hormone (LH) and androgens that impact the normal function of the ovaries.<ref>{{cite web |title=Patient education: Polycystic ovary syndrome (PCOS) (Beyond the Basics) |url=https://www.uptodate.com/contents/polycystic-ovary-syndrome-pcos-beyond-the-basics |access-date=15 September 2022 |website=UpToDate |archive-date=15 September 2022 |archive-url=https://web.archive.org/web/20220915125817/https://www.uptodate.com/contents/polycystic-ovary-syndrome-pcos-beyond-the-basics |url-status=live }}</ref> While multiple small follicles develop in the ovary, none are able to grow in size enough to become the dominant follicle and trigger ovulation.<ref>{{cite journal |last1=Dumesic |first1=Daniel A. |last2=Lobo |first2=Rogerio A. |date=August 2013 |title=Cancer risk and PCOS |journal=Steroids |volume=78 |issue=8 |pages=782–785 |doi=10.1016/j.steroids.2013.04.004 |issn=1878-5867 |pmid=23624028|s2cid=10185317 }}</ref> This leads to an imbalance of LH, follicle stimulating hormone, estrogen, and progesterone. Without ovulation, unopposed estrogen can lead to endometrial hyperplasia, or overgrowth of tissue in the uterus.<ref>{{cite web |title=Polycystic Ovary Syndrome (PCOS) |url=https://www.acog.org/en/womens-health/faqs/polycystic-ovary-syndrome-pcos |access-date=15 September 2022 |website=American College of Obstetricians and Gynecologists |archive-date=15 September 2022 |archive-url=https://web.archive.org/web/20220915125811/https://www.acog.org/en/womens-health/faqs/polycystic-ovary-syndrome-pcos |url-status=live }}</ref> This endometrial overgrowth is more likely to become cancerous than normal endometrial tissue.<ref>Barakat RR, Park RC, Grigsby PW, et al. Corpus: Epithelial Tumors. In: Principles and Practice of Gynecologic Oncology, 2nd, Hoskins WH, Perez CA, Young RC (Eds), Lippincott-Raven Publishers, Philadelphia 1997. p.859</ref> Thus, although the data varies, it is generally agreed upon by most gynecological societies that due to the unopposed estrogen, women with PCOS are at higher risk for endometrial cancer.<ref>{{cite journal | vauthors = Hardiman P, Pillay OC, Atiomo W | title = Polycystic ovary syndrome and endometrial carcinoma | journal = Lancet | volume = 361 | issue = 9371 | pages = 1810–2 | date = May 2003 | pmid = 12781553 | doi = 10.1016/s0140-6736(03)13409-5 | s2cid = 27453081 }}</ref> | |||
To reduce the risk of endometrial cancer, it is often recommended that women with PCOS who do not desire pregnancy take hormonal contraceptives to prevent the effects of unopposed estrogen. Both combined oral contraceptive pills and progestin-only methods are recommended.{{citation needed|date=July 2023}} It is the progestin component of combined oral contraceptive pills that protects the endometrium from hyperplasia, and thus reduces a woman with PCOS's endometrial cancer risk.<ref>{{cite web |title=Can birth control pills cure PCOS |url=https://www.acog.org/en/womens-health/experts-and-stories/ask-acog/can-birth-control-pills-cure-pcos |access-date=18 September 2022 |website=American College of Obstetricians and Gynecologists |archive-date=20 September 2022 |archive-url=https://web.archive.org/web/20220920171751/https://www.acog.org/en/womens-health/experts-and-stories/ask-acog/can-birth-control-pills-cure-pcos |url-status=live }}</ref> Combined oral contraceptive pills are preferred to progestin-only methods in women who also have uncontrolled acne, symptoms of hirsutism, and androgenic alopecia, because combined oral contraceptive pills can help treat these symptoms.<ref name=":13" /> | |||
==== Acne and hirsutism ==== | |||
Combined oral contraceptive pills are sometimes prescribed to treat symptoms of androgenization, including acne and hirsutism.<ref>{{cite journal |vauthors=Huber J, Walch K |date=January 2006 |title=Treating acne with oral contraceptives: use of lower doses |journal=Contraception |volume=73 |issue=1 |pages=23–9 |doi=10.1016/j.contraception.2005.07.010 |pmid=16371290}}</ref> The estrogen component of combined oral contraceptive pills appears to suppress androgen production in the ovaries. Estrogen also leads to increased synthesis of sex hormone binding globulin, which causes a decrease in the levels of free testosterone.<ref>{{cite web |title=Hormonal Contraceptives and Acne: A Retrospective Analysis of 2147 Patients |url=https://jddonline.com/articles/hormonal-contraceptives-and-acne-a-retrospective-analysis-of-2147-patients-S1545961616P0670X/ |access-date=15 September 2022 |website=JDDonline - Journal of Drugs in Dermatology |archive-date=19 May 2022 |archive-url=https://web.archive.org/web/20220519125904/https://jddonline.com/articles/hormonal-contraceptives-and-acne-a-retrospective-analysis-of-2147-patients-S1545961616P0670X/ |url-status=live }}</ref> | |||
Ultimately, the drop in the level of free androgens leads to a decrease in the production of sebum, which is a major contributor to development of acne.{{citation needed|date=July 2023}} Four different oral contraceptives have been approved by the US FDA to treat moderate acne if the patient is at least 14 or 15 years old, has already begun menstruating, and needs contraception. These include ], ], ], and ].<ref>{{cite web |title=Birth Control of Acne |url=http://www.webmd.com/skin-problems-and-treatments/acne/birth-control-for-acne-treatment |access-date=1 February 2013 |publisher=WebMD, LLC |vauthors=Chang L |archive-date=26 January 2013 |archive-url=https://web.archive.org/web/20130126051445/http://www.webmd.com/skin-problems-and-treatments/acne/birth-control-for-acne-treatment |url-status=live }}</ref><ref>{{cite web |title=DailyMed - ORTHO TRI CYCLEN- norgestimate and ethinyl estradiol ORTHO CYCLEN- norgestimate and ethinyl estradiol |url=https://dailymed.nlm.nih.gov/dailymed/drugInfo.cfm?setid=384e7a40-dcbd-4908-bf5e-65abc9932973#section-1.1 |access-date=13 December 2017 |website=dailymed.nlm.nih.gov |archive-date=14 December 2017 |archive-url=https://web.archive.org/web/20171214072204/https://dailymed.nlm.nih.gov/dailymed/drugInfo.cfm?setid=384e7a40-dcbd-4908-bf5e-65abc9932973#section-1.1 |url-status=live }}</ref><ref>{{cite web |title=Beyaz Package Insert |url=https://www.accessdata.fda.gov/drugsatfda_docs/label/2012/022532s004lbl.pdf |website=U.S. ] (FDA) |access-date=6 August 2019 |archive-date=15 April 2023 |archive-url=https://web.archive.org/web/20230415183259/https://www.accessdata.fda.gov/drugsatfda_docs/label/2012/022532s004lbl.pdf |url-status=live }}</ref> | |||
Hirsutism is the growth of coarse, dark hair where women typically grow only fine hair or no hair at all.<ref>{{cite web |title=Patient education: Hirsutism (excess hair growth in females) (Beyond the Basics) |url=https://www.uptodate.com/contents/hirsutism-excess-hair-growth-in-women-beyond-the-basics |access-date=18 September 2022 |website=UpToDate |archive-date=20 September 2022 |archive-url=https://web.archive.org/web/20220920171546/https://www.uptodate.com/contents/hirsutism-excess-hair-growth-in-women-beyond-the-basics |url-status=live }}</ref> This hair growth on the face, chest, and abdomen is also mediated by higher levels or action of androgens. Therefore, combined oral contraceptive pills also work to treat these symptoms by lowering the levels of free circulating androgens.<ref>{{cite web |title=Hirsutism: What It Is, In Women, Causes, PCOS & Treatment |url=https://my.clevelandclinic.org/health/diseases/14523-hirsutism |access-date=18 September 2022 |website=Cleveland Clinic |archive-date=19 September 2022 |archive-url=https://web.archive.org/web/20220919044547/https://my.clevelandclinic.org/health/diseases/14523-hirsutism |url-status=live }}</ref> | |||
Studies have shown that combined oral contraceptives are effective in reducing both ] and non-inflammatory facial acne lesions.<ref name=":12a">{{Citation |last1=Arowojolu |first1=Ao |title=Combined oral contraceptive pills for treatment of acne |date=2004-07-19 |journal=Cochrane Database of Systematic Reviews |editor-last=The Cochrane Collaboration |url=https://doi.wiley.com/10.1002/14651858.CD004425.pub2 |access-date=2024-02-28 |place=Chichester, UK |publisher=John Wiley & Sons, Ltd |doi=10.1002/14651858.cd004425.pub2 |last2=Gallo |first2=Mf |last3=Grimes |first3=Da |last4=Garner |first4=Se|issue=3 |pages=CD004425 |pmid=15266533 }}</ref> However, comparisons between different combined oral contraceptives have not been studied to understand if any brand is superior than the others.<ref name=":12a" /> Oestrogen decreases ] production by shrinking the ], increasing ] (SHBG) production to reduce unbound ], and regulating LH and FSH levels.<ref>{{Cite journal |last=Frances E. Casey |first=M. D. |date=January 2023 |title=Contraception and its impact on acne |url=https://www.contemporaryobgyn.net/view/contraception-acne |journal=GYN Journal |series=Vol 68 No 01 |volume=68 |issue=1}}</ref> Studies have not shown that POPs are effective against acne lesions.{{cn|date=December 2024}} | |||
==== Endometriosis ==== | |||
For pelvic pain associated with endometriosis, combined oral contraceptive pills are considered a first-line medical treatment, along with NSAIDs, GnRH agonists, and aromatase inhibitors.<ref>{{cite web|url=https://www.acog.org/Patients/FAQs/Endometriosis#treated|title=ACOG Endometriosis FAQ|access-date=3 March 2019|archive-date=1 February 2020|archive-url=https://web.archive.org/web/20200201032951/https://www.acog.org/Patients/FAQs/Endometriosis#treated|url-status=live}}</ref> Combined oral contraceptive pills work to suppress the growth of the extra-uterine endometrial tissue. This works to lessen its inflammatory effects.<ref name=":13"/> Combined oral contraceptive pills, along with the other medical treatments listed above, do not eliminate the extra-uterine tissue growth, they just reduce the symptoms. Surgery is the only definitive treatment. Studies looking at rates of pelvic pain recurrence after surgery have shown that continuous use of combined oral contraceptive pills is more effective at reducing the recurrence of pain than cyclic use.<ref>{{cite journal | vauthors = Zorbas KA, Economopoulos KP, Vlahos NF | title = Continuous versus cyclic oral contraceptives for the treatment of endometriosis: a systematic review | journal = Archives of Gynecology and Obstetrics | volume = 292 | issue = 1 | pages = 37–43 | date = July 2015 | pmid = 25644508 | doi = 10.1007/s00404-015-3641-1 | s2cid = 23340983 }}</ref> | |||
==== Adenomyosis ==== | |||
Similar to endometriosis, adenomyosis is often treated with combined oral contraceptive pills to suppress the growth the endometrial tissue that has grown into the myometrium. Unlike endometriosis however, levonorgestrel containing IUDs are more effective at reducing pelvic pain in adenomyosis than combined oral contraceptive pills.<ref name=":13"/> | |||
====Menorrhagia==== | |||
In the average menstrual cycle, a woman typically loses 35 to 40 milliliters of blood.<ref>{{cite web |title=Heavy Menstrual Bleeding |url=https://www.acog.org/en/womens-health/faqs/heavy-menstrual-bleeding |access-date=18 September 2022 |website=American College of Obstetricians and Gynecologists |archive-date=20 September 2022 |archive-url=https://web.archive.org/web/20220920170333/https://www.acog.org/en/womens-health/faqs/heavy-menstrual-bleeding |url-status=live }}</ref> However, up to 20% of women experience much heavier bleeding, or menorrhagia.<ref>{{cite journal |last1=Apgar |first1=Barbara S. |last2=Kaufman |first2=Amanda H. |last3=George-Nwogu |first3=Uche |last4=Kittendorf |first4=Anne |date=15 June 2007 |title=Treatment of Menorrhagia |url=https://www.aafp.org/pubs/afp/issues/2007/0615/p1813.html |journal=American Family Physician |volume=75 |issue=12 |pages=1813–1819 |pmid=17619523 |access-date=15 September 2022 |archive-date=6 October 2022 |archive-url=https://web.archive.org/web/20221006155406/https://www.aafp.org/pubs/afp/issues/2007/0615/p1813.html |url-status=live }}</ref> This excess blood loss can lead to anemia, with symptoms of fatigue and weakness, as well as disruption in their normal life activities.<ref>{{cite web |title=Patient education: Heavy or prolonged menstrual bleeding (menorrhagia) (Beyond the Basics) |url=https://www.uptodate.com/contents/heavy-or-prolonged-menstrual-bleeding-menorrhagia-beyond-the-basics/print |access-date=15 September 2022 |website=UpToDate |archive-date=15 September 2022 |archive-url=https://web.archive.org/web/20220915132011/https://www.uptodate.com/contents/heavy-or-prolonged-menstrual-bleeding-menorrhagia-beyond-the-basics/print |url-status=live }}</ref> Combined oral contraceptive pills contain progestin, which causes the lining of the uterus to be thinner, resulting in lighter bleeding episodes for those with heavy menstrual bleeding.<ref>{{cite web |title=Noncontraceptive Benefits of Birth Control Pills |url=https://www.reproductivefacts.org/news-and-publications/patient-fact-sheets-and-booklets/documents/fact-sheets-and-info-booklets/noncontraceptive-benefits-of-birth-control-pills/ |access-date=15 September 2022 |website=American Society for Reproductive Medicine (ASRM) |archive-date=13 September 2022 |archive-url=https://web.archive.org/web/20220913013344/https://www.reproductivefacts.org/news-and-publications/patient-fact-sheets-and-booklets/documents/fact-sheets-and-info-booklets/noncontraceptive-benefits-of-birth-control-pills/ |url-status=dead }}</ref> | |||
==== Amenorrhea ==== | |||
Although the pill is sometimes prescribed to induce menstruation on a regular schedule for women bothered by irregular menstrual cycles, it actually suppresses the normal menstrual cycle and then mimics a regular 28-day monthly cycle. | |||
Women who are experiencing menstrual dysfunction due to ] are sometimes prescribed oral contraceptives as pills that can create menstrual bleeding cycles.<ref name="AMSSMfive2">{{Citation|title=Five Things Physicians and Patients Should Question|date=24 April 2014|url=http://www.choosingwisely.org/doctor-patient-lists/american-medical-society-for-sports-medicine/|author1=American Medical Society for Sports Medicine|author1-link=American Medical Society for Sports Medicine|work=]: an initiative of the ]|publisher=American Medical Society for Sports Medicine|access-date=29 July 2014|archive-date=29 July 2014|archive-url=https://web.archive.org/web/20140729224526/http://www.choosingwisely.org/doctor-patient-lists/american-medical-society-for-sports-medicine/|url-status=live}}</ref> However, the condition's underlying cause is energy deficiency and should be treated by correcting the imbalance between calories eaten and calories burned by exercise. Oral contraceptives should not be used as an initial treatment for female athlete triad.<ref name="AMSSMfive2" /> | |||
=== Menstrual suppression === | |||
Menstrual bleeding is not necessary in women who do not wish to conceive, therefore menstrual suppression may be implemented in women who do not want to have menstrual bleeding for convenience, ], bleeding disorders or other medical conditions.<ref name=":7a">{{Cite web |title=Hormonal contraception for menstrual suppression |url=https://www.uptodate.com/contents/hormonal-contraception-for-menstrual-suppression |access-date=2024-02-28 |website=www.uptodate.com}}</ref> | |||
In the two types of hormonal oral contraceptives, only combined oral contraceptives can achieve ], while POPs can only reduce the amount of blood.<ref>{{Cite journal |last1=Irvine |first1=G. A. |last2=Campbell-Brown |first2=M. B. |last3=Lumsden |first3=M. A. |last4=Heikkilä |first4=A. |last5=Walker |first5=J. J. |last6=Cameron |first6=I. T. |date=June 1998 |title=Randomised comparative trial of the levonorgestrel intrauterine system and norethisterone for treatment of idiopathic menorrhagia |url=https://pubmed.ncbi.nlm.nih.gov/9647148/ |journal=British Journal of Obstetrics and Gynaecology |volume=105 |issue=6 |pages=592–598 |doi=10.1111/j.1471-0528.1998.tb10172.x |issn=0306-5456 |pmid=9647148}}</ref> The method of using combined oral contraceptives for menstrual suppression is to skip the 7 ] pills and continue taking active pills after the 21 active pills.<ref name=":8a">{{Cite journal |last1=Jacobson |first1=Janet C. |last2=Likis |first2=Frances E. |last3=Murphy |first3=Patricia Aikins |date=2012 |title=Extended and continuous combined contraceptive regimens for menstrual suppression |url=https://pubmed.ncbi.nlm.nih.gov/23217068/ |journal=Journal of Midwifery & Women's Health |volume=57 |issue=6 |pages=585–592 |doi=10.1111/j.1542-2011.2012.00250.x |issn=1542-2011 |pmid=23217068}}</ref> This can be used in extended method or continuous method.<ref name=":8a" /> For extended method, patients who take active pills for 3, 4, or 6 months and then take placebo pills for a period of time will more likely experience withdrawal bleeding.<ref name=":8a" /> The interval can be decided by the patients according to their own preferences.<ref name=":8a" /> For continuous method, people can take combined oral contraceptives for a year continuously without any placebo pills.<ref name=":8a" /> In the first few months of extended or continuous use of combined oral contraceptives, unscheduled bleeding or spotting may occur.<ref name=":9a">{{Cite journal |last1=Sulak |first1=P. J. |last2=Scow |first2=R. D. |last3=Preece |first3=C. |last4=Riggs |first4=M. W. |last5=Kuehl |first5=T. J. |date=February 2000 |title=Hormone withdrawal symptoms in oral contraceptive users |url=https://pubmed.ncbi.nlm.nih.gov/10674591/ |journal=Obstetrics and Gynecology |volume=95 |issue=2 |pages=261–266 |doi=10.1016/s0029-7844(99)00524-4 |issn=0029-7844 |pmid=10674591}}</ref> However, the bleeding or spotting is expected to resolve after a few months of use.<ref name=":9a" /> | |||
Menstrual suppression is commonly used for convenience especially when women go on vacation.<ref name=":7a" /> It is also used for gynecologic disorders such as ] (commonly known as menstrual pain), symptoms related to premenstrual hormone change and excessive bleeding related to ]s. Patients can also benefit from menstrual suppression for bleeding disorders or chronic ].<ref name=":7a" /> | |||
=== Menstrual migraine === | |||
Patients with menstrual Oestrogen-related ], but without aura and additional risk factors to stroke, can be benefited from combined oral contraceptives.<ref name=":10a">{{Cite journal |last1=Loder |first1=Elizabeth W. |last2=Buse |first2=Dawn C. |last3=Golub |first3=Joan R. |date=March 2005 |title=Headache and Combination Estrogen-Progestin Oral Contraceptives: Integrating Evidence, Guidelines, and Clinical Practice |url=https://headachejournal.onlinelibrary.wiley.com/doi/10.1111/j.1526-4610.2005.05049.x |journal=Headache: The Journal of Head and Face Pain |volume=45 |issue=3 |pages=224–231 |doi=10.1111/j.1526-4610.2005.05049.x |pmid=15836597 |issn=0017-8748}}</ref><ref name=":11a">{{Cite journal |last=Silberstein |first=Stephen D. |date=September 1999 |title=Menstrual Migraine |url=http://www.liebertpub.com/doi/10.1089/jwh.1.1999.8.919 |journal=Journal of Women's Health & Gender-Based Medicine |volume=8 |issue=7 |pages=919–931 |doi=10.1089/jwh.1.1999.8.919 |pmid=10534294 |issn=1524-6094}}</ref> However, older women and those with a strong family history of problematic headaches may find that using hormonal oral contraceptives worsens their headache.<ref name=":10a" /><ref name=":11a" /> | |||
== Benefits == | |||
The distinctive feature of hormonal oral contraceptives when compared to other contraceptive methods is that they are less invasive and do not interfere with sex.<ref name=":4a" /> Conclusive data suggest that the failure rate of contraception in using hormonal oral contraceptives for the first year is 9% in typical use which allows ]s, and <1% in perfect use.<ref name=":0a" /><ref name=":4a" /> The ] of hormonal oral contraceptives in preventing pregnancy is high overall.<ref name=":0a" /> Furthermore, the regular use of hormonal oral contraceptive tends to not only ease ], but also allow lighter and less painful menstruation.<ref name=":4a" /> In addition, the association between a suppressed risk of developing ] and hormonal oral contraceptive use is proven.<ref name=":5a" /><ref name=":6a" /> | |||
==Contraindications== | |||
While combined oral contraceptives are generally considered to be a relatively safe medication, they are contraindicated for those with certain medical conditions. The ] and the US ] publish guidance, called ], on the safety of birth control in the context of medical conditions.<ref name="who mec" /><ref name="pmid27467196" /> | |||
In terms of protection in ], a sole reliance on hormonal oral contraceptives does not defend one from ]s such as ].<ref name=":0a" /><ref name=":4a" /> Additionally, ] and spotting are exceptionally prevalent in the early stage of using hormonal oral contraceptives.<ref name=":0a" /><ref name=":2a" /><ref name=":4a" /> Although most reported side effects including ], ], or ]s will disappear as the therapy progresses or upon switching formulation, ] or ] in patients with ] are documented side effects that requires medical attention if not termination of hormonal oral contraceptives.<ref name=":0a" /><ref name=":2a" /><ref name=":4a" /> It is because combined oral contraceptives uses have been found to be related to an increased risk of ] or ], especially in combined oral contraceptives with >50 μg Oestrogen.<ref>{{cite journal |last1=Roach |first1=Rachel E. J. |last2=Helmerhorst |first2=Frans M. |last3=Lijfering |first3=Willem M. |last4=Stijnen |first4=Theo |last5=Algra |first5=Ale |last6=Dekkers |first6=Olaf M. |title=Combined oral contraceptives: the risk of myocardial infarction and ischemic stroke |journal=The Cochrane Database of Systematic Reviews |date=27 August 2015 |volume=2015 |issue=8 |pages=CD011054 |doi=10.1002/14651858.CD011054.pub2 |pmid=26310586 |pmc=6494192 |issn=1469-493X}}</ref> | |||
Besides, some ongoing studies giving evidence on the association between hormonal oral contraceptive use and escalated ] risks cannot be neglected.<ref>{{Cite journal |last1=Fitzpatrick |first1=Danielle |last2=Pirie |first2=Kirstin |last3=Reeves |first3=Gillian |last4=Green |first4=Jane |last5=Beral |first5=Valerie |date=March 2023 |title=Combined and progestagen-only hormonal contraceptives and breast cancer risk: A UK nested case-control study and meta-analysis |journal=PLOS Medicine |volume=20 |issue=3 |pages=e1004188 |doi=10.1371/journal.pmed.1004188 |doi-access=free |issn=1549-1676 |pmid=36943819|pmc=10030023 }}</ref><ref>{{Cite journal |last1=Anastasiou |first1=Elle |last2=McCarthy |first2=Katharine J. |last3=Gollub |first3=Erica L. |last4=Ralph |first4=Lauren |last5=van de Wijgert |first5=Janneke H. H. M. |last6=Jones |first6=Heidi E. |date=March 2022 |title=The relationship between hormonal contraception and cervical dysplasia/cancer controlling for human papillomavirus infection: A systematic review |journal=Contraception |volume=107 |pages=1–9 |doi=10.1016/j.contraception.2021.10.018 |issn=1879-0518 |pmc=8837691 |pmid=34752778}}</ref><ref name=":5a">{{Cite journal |last1=Huber |first1=D. |last2=Seitz |first2=S. |last3=Kast |first3=K. |last4=Emons |first4=G. |last5=Ortmann |first5=O. |date=April 2020 |title=Use of oral contraceptives in BRCA mutation carriers and risk for ovarian and breast cancer: a systematic review |journal=Archives of Gynecology and Obstetrics |volume=301 |issue=4 |pages=875–884 |doi=10.1007/s00404-020-05458-w |issn=1432-0711 |pmc=8494665 |pmid=32140806}}</ref><ref name=":6a">{{Cite journal |last1=van Bommel |first1=Majke H. D. |last2=IntHout |first2=Joanna |last3=Veldmate |first3=Guus |last4=Kets |first4=C. Marleen |last5=de Hullu |first5=Joanne A. |last6=van Altena |first6=Anne M. |last7=Harmsen |first7=Marline G. |date=2023-03-01 |title=Contraceptives and cancer risks in BRCA1/2 pathogenic variant carriers: a systematic review and meta-analysis |journal=Human Reproduction Update |volume=29 |issue=2 |pages=197–217 |doi=10.1093/humupd/dmac038 |issn=1460-2369 |pmc=9976973 |pmid=36383189}}</ref> | |||
According to ] Medical Eligibility Criteria for Contraceptive Use 2015, Category 3 implies that the use of such contraception is usually not recommended, unless other more appropriate methods are neither available nor acceptable and with good resources of clinical judgment; Category 4 implies that the contraceptive method should not be used even with good resources of clinical judgment.<ref name=":13a">{{Cite web |title=Medical eligibility criteria for contraceptive use |url=https://www.who.int/publications-detail-redirect/9789241549158 |access-date=2024-02-28 |website=] (WHO) }}</ref> Both categories suggest that the contraceptive method should not be used with limited resources for clinical judgment.<ref name=":13a" /> The tables below summarise conditions of category 3 and 4 from ] Medical Eligibility Criteria for Contraceptive Use 2015. | |||
=== Precautions and contraindications for combined oral contraceptives === | |||
{| class="wikitable" | |||
|+ | |||
!Condition | |||
!Category | |||
|- | |||
| colspan="2" |] | |||
|- | |||
|''for < 6 weeks postpartum'' | |||
|4 | |||
|- | |||
|''for ≥ 6 weeks to < 6 months postpartum'' | |||
|3 | |||
|- | |||
| colspan="2" |] (non-breastfeeding) | |||
|- | |||
|''< 21 days postpartum without other risk factors for ]'' | |||
|3 | |||
|- | |||
|''< 21 days postpartum with other risk factors for VTE'' | |||
|4 | |||
|- | |||
|''≥ 21 days to 42 days postpartum with other risk factors for VTE'' | |||
|3 | |||
|- | |||
| colspan="2" |Smoking | |||
|- | |||
|''age ≥ 35 years and smoking < 15 cigarettes/day'' | |||
|3 | |||
|- | |||
|''age ≥ 35 years and smoking ≥ 15 cigarettes/day'' | |||
|4 | |||
|- | |||
|Multiple risk factors for ] | |||
|3/4* | |||
|- | |||
| colspan="2" |] | |||
|- | |||
|''history of hypertension, where blood pressure CANNOT be evaluated'' | |||
|3 | |||
|- | |||
|''adequately controlled hypertension, where blood pressure CAN be evaluated'' | |||
|3 | |||
|- | |||
|''elevated blood pressure levels (properly taken measurements)'' | |||
''with systolic 140–159 or diastolic 90–99 mm Hg'' | |||
|3 | |||
|- | |||
|''elevated blood pressure levels (properly taken measurements)'' | |||
''with systolic ≥ 160 or diastolic ≥ 100 mm Hg'' | |||
|4 | |||
|- | |||
|''elevated blood pressure levels (properly taken measurements) with ]'' | |||
|4 | |||
|- | |||
| colspan="2" |] (DVT) / ] (PE) | |||
|- | |||
|''with History of DVT/PE'' | |||
|4 | |||
|- | |||
|''with acute DVT/PE'' | |||
|4 | |||
|- | |||
|''with DVT/PE and established on ] therapy'' | |||
|4 | |||
|- | |||
|''with Major surgery with prolonged immobilization'' | |||
|4 | |||
|- | |||
|Known thrombogenic mutations | |||
|4 | |||
|- | |||
|Current and history of ] | |||
|4 | |||
|- | |||
|] (history of cerebrovascular accident) | |||
|4 | |||
|- | |||
|Complicated ] | |||
|4 | |||
|- | |||
|Positive (or unknown) antiphospholipid antibodies ] | |||
|4 | |||
|- | |||
| colspan="2" |Headache | |||
|- | |||
|''migraine without aura of age ≥ 35 years (for initiation of combined oral contraceptives)'' | |||
|3 | |||
|- | |||
|''migraine without aura of age < 35 years (for continuation of combined oral contraceptives)'' | |||
|3 | |||
|- | |||
|''migraine without aura of age ≥ 35 years (for continuation of combined oral contraceptives)'' | |||
|4 | |||
|- | |||
|''migraine with aura, at any age (for initiation and continuation of combined oral contraceptives)'' | |||
|4 | |||
|- | |||
|Breast cancer | |||
| | |||
|- | |||
|''current Breast cancer'' | |||
|4 | |||
|- | |||
|''past Breast Cancer and no evidence of current disease for 5 years'' | |||
|3 | |||
|- | |||
|]/]/] | |||
|3/4* | |||
|- | |||
|Other vascular disease or ] of > 20 years’ duration | |||
|3/4* | |||
|- | |||
|Medically treated symptomatic ] | |||
|3 | |||
|- | |||
|Current symptomatic gall bladder disease | |||
|3 | |||
|- | |||
|Past-combined oral contraceptive related history of ] | |||
|3 | |||
|- | |||
|Acute or flare ] (for initiation of combined oral contraceptives) | |||
|3/4* | |||
|- | |||
|Severe ] (decompensated) | |||
|4 | |||
|- | |||
| colspan="2" |Liver tumors | |||
|- | |||
|'']'' | |||
|4 | |||
|- | |||
|''malignant (hepatoma)'' | |||
|4 | |||
|- | |||
| colspan="2" |On ] therapy | |||
|- | |||
|''with ], ], ]s, ], ], ]'' | |||
|3 | |||
|- | |||
|''with ]'' | |||
|3 | |||
|- | |||
|On ] therapy with ] or ] therapy | |||
| | |||
|} | |||
<nowiki>*</nowiki>The category should be assessed according to the severity of the condition. | |||
===Hypercoagulability=== | |||
Estrogen in high doses can increase risk of blood clots. All combined oral contraceptive pill users have a small increase in the risk of venous thromboembolism compared with non-users; this risk is greatest within the first year of combined oral contraceptive pill use.<ref name=":6">{{cite journal | vauthors = Black A, Guilbert E, Costescu D, Dunn S, Fisher W, Kives S, Mirosh M, Norman WV, Pymar H, Reid R, Roy G, Varto H, Waddington A, Wagner MS, Whelan AM | title = No. 329-Canadian Contraception Consensus Part 4 of 4 Chapter 9: Combined Hormonal Contraception | journal = Journal of Obstetrics and Gynaecology Canada | volume = 39 | issue = 4 | pages = 229–268.e5 | date = April 2017 | pmid = 28413042 | doi = 10.1016/j.jogc.2016.10.005 }}</ref> Individuals with any pre-existing medical condition that also increases their risk for blood clots have a more significant increase in risk of thrombotic events with combined oral contraceptive pill use.<ref name=":6" /> These conditions include but are not limited to high blood pressure, pre-existing ] (such as ] or ]<ref name=":4">{{cite book|vauthors=Cooper DB, Patel P, Mahdy H|chapter=Oral Contraceptive Pills|date=2019|chapter-url=http://www.ncbi.nlm.nih.gov/books/NBK430882/|title=StatPearls|publisher=StatPearls Publishing|pmid=28613632|access-date=5 August 2019|archive-date=3 May 2019|archive-url=https://web.archive.org/web/20190503071035/https://www.ncbi.nlm.nih.gov/books/NBK430882/|url-status=live}}</ref>), history of thromboembolism or pulmonary embolism, cerebrovascular accident, and a familial tendency to form blood clots (such as familial ]).<ref name="webmdbcp2">{{cite web|url=http://www.webmd.com/sex/birth-control/birth-control-pills?page=5#1|title=Can Any Woman Take Birth Control Pills?|website=WebMD|access-date=8 May 2016|archive-date=3 May 2016|archive-url=https://web.archive.org/web/20160503120843/http://www.webmd.com/sex/birth-control/birth-control-pills?page=5#1|url-status=live}}</ref> There are conditions that, when associated with combined oral contraceptive pill use, increase risk of adverse effects other than thrombosis. For example, women with a history of ] with aura have an increased risk of ] when using combined oral contraceptive pills, and women who ] over age 35 and use combined oral contraceptive pills are at higher risk of ].<ref name="who mec" /> | |||
===Pregnancy and postpartum=== | |||
Women who are known to be pregnant should not take combined oral contraceptive pills. Those in the postpartum period who are ] are also advised not to start combined oral contraceptive pills until 4 weeks after birth due to increased risk of blood clots.<ref name=":22" /> While studies have demonstrated conflicting results about the effects of combined oral contraceptive pills on lactation duration and milk volume, there exist concerns about the transient risk of combined oral contraceptive pills on breast milk production when breastfeeding is being established early postpartum.<ref>{{cite journal | vauthors = Lopez LM, Grey TW, Stuebe AM, Chen M, Truitt ST, Gallo MF | title = Combined hormonal versus nonhormonal versus progestin-only contraception in lactation | journal = The Cochrane Database of Systematic Reviews | issue = 3 | pages = CD003988 | date = March 2015 | volume = 2015 | pmid = 25793657 | doi = 10.1002/14651858.CD003988.pub2 | collaboration = Cochrane Fertility Regulation Group | pmc = 10644229 }}</ref> Due to the stated risks and additional concerns on lactation, women who are breastfeeding are not advised to start combined oral contraceptive pills until at least six weeks postpartum, while women who are not breastfeeding and have no other risks factors for blood clots may start combined oral contraceptive pills after 21 days postpartum.<ref>{{cite web|date=9 April 2020|title=Classifications for Combined Hormonal Contraceptives|url=https://www.cdc.gov/reproductivehealth/contraception/mmwr/mec/appendixd.html|access-date=7 December 2020|website=U.S. ] (CDC)|archive-date=27 November 2020|archive-url=https://web.archive.org/web/20201127184611/https://www.cdc.gov/reproductivehealth/contraception/mmwr/mec/appendixd.html|url-status=live}}</ref><ref name="who mec">{{cite book|url=https://www.who.int/publications/i/item/9789241549158|title=Medical eligibility criteria for contraceptive use|publisher=World Health Organization|year=2015|isbn=978-92-4-154915-8|edition=Fifth|location=Geneva, Switzerland|oclc=932048744|hdl=10665/181468|hdl-access=free|vauthors=((World Health Organization))|author-link=World Health Organization|access-date=11 February 2024|archive-date=11 February 2024|archive-url=https://web.archive.org/web/20240211070350/https://www.who.int/publications/i/item/9789241549158|url-status=live}}</ref> | |||
===Breast cancer=== | |||
The ] (WHO) does not recommend the use of combined oral contraceptive pills in women with breast cancer.<ref name="pmid27467196">{{cite journal |vauthors=Curtis KM, Tepper NK, Jatlaoui TC, Berry-Bibee E, Horton LG, Zapata LB, Simmons KB, Pagano HP, Jamieson DJ, Whiteman MK |date=July 2016 |title=U.S. Medical Eligibility Criteria for Contraceptive Use, 2016 |url=https://www.cdc.gov/mmwr/volumes/65/rr/pdfs/rr6503.pdf |journal=MMWR. Recommendations and Reports |volume=65 |issue=3 |pages=1–103 |doi=10.15585/mmwr.rr6503a1 |pmid=27467196 |issn=1057-5987 |doi-access=free |title-link=doi |access-date=11 February 2024 |archive-date=16 October 2020 |archive-url=https://web.archive.org/web/20201016231003/https://www.cdc.gov/mmwr/volumes/65/rr/pdfs/rr6503.pdf |url-status=live }}</ref><ref>{{cite journal | vauthors = Tepper NK, Curtis KM, Cox S, Whiteman MK | title = Update to U.S. Medical Eligibility Criteria for Contraceptive Use, 2016: Updated Recommendations for the Use of Contraception Among Women at High Risk for HIV Infection | journal = MMWR. Morbidity and Mortality Weekly Report | volume = 69 | issue = 14 | pages = 405–410 | date = April 2020 | pmid = 32271729 | pmc = 7147901 | doi = 10.15585/mmwr.mm6914a3 | url = https://www.cdc.gov/mmwr/volumes/69/wr/pdfs/mm6914a3-H.pdf | doi-access = free | title-link = doi | access-date = 11 February 2024 | archive-date = 9 June 2023 | archive-url = https://web.archive.org/web/20230609055201/https://www.cdc.gov/mmwr/volumes/69/wr/pdfs/mm6914a3-H.pdf | url-status = live }}</ref> Since combined oral contraceptive pills contain both estrogen and progestin, they are not recommended to be used in those with hormonally-sensitive cancers, including some types of breast cancer.<ref>{{cite web |title=Is There a Link Between Birth Control Pills and Higher Breast Cancer Risk? |url=https://www.breastcancer.org/research-news/study-questions-birth-control-and-risk |access-date=18 September 2022 |website=www.breastcancer.org |archive-date=20 September 2022 |archive-url=https://web.archive.org/web/20220920171723/https://www.breastcancer.org/research-news/study-questions-birth-control-and-risk |url-status=live }}</ref>{{Unreliable medical source|date=February 2024}}<ref>{{cite web |last=Pernambuco-Holsten |first=Christina |title=Birth Control and Cancer Risk: 6 Things You Should Know |url=https://www.mskcc.org/news/birth-control-and-cancer-risk |access-date=18 September 2022 |website=Memorial Sloan Kettering Cancer Center |date=25 September 2018 |archive-date=20 September 2022 |archive-url=https://web.archive.org/web/20220920173430/https://www.mskcc.org/news/birth-control-and-cancer-risk |url-status=live }}</ref> Non-hormonal contraceptive methods, such as the Copper IUD or condoms,<ref>{{cite web |title=What are the best birth control options that aren't hormonal? |url=https://www.plannedparenthood.org/learn/ask-experts/what-are-the-best-birth-control-options-that-arent-hormonal |access-date=18 September 2022 |website=Planned Parenthood |archive-date=20 September 2022 |archive-url=https://web.archive.org/web/20220920171208/https://www.plannedparenthood.org/learn/ask-experts/what-are-the-best-birth-control-options-that-arent-hormonal |url-status=live }}</ref> should be the first-line contraceptive choice for these patients instead of combined oral contraceptive pills.<ref>{{cite web |title=Do Hormonal Contraceptives Increase Breast Cancer Risk? |url=https://www.breastcancer.org/research-news/do-hormonal-contraceptives-increase-risk |access-date=18 September 2022 |website=www.breastcancer.org |archive-date=20 September 2022 |archive-url=https://web.archive.org/web/20220920172638/https://www.breastcancer.org/research-news/do-hormonal-contraceptives-increase-risk |url-status=live }}</ref>{{Unreliable medical source|date=February 2024}} | |||
===Other=== | |||
Women with known or suspected ] or unexplained uterine bleeding should also not take combined oral contraceptive pills to avoid health risks.<ref name=":4" /> Combined oral contraceptive pills are also contraindicated for people with advanced diabetes, liver tumors, ] or severe ] of the liver.<ref name="pmid27467196" /><ref name="webmdbcp2" /> Combined oral contraceptive pills are metabolized in the liver and thus liver disease can lead to reduced elimination of the medication. Additionally, severe ] and ] are also contraindications, but the evidence showing that combined oral contraceptive pills lead to worse outcomes in this population is weak.<ref name=":13" /><ref name=":22" /> ] is not considered to be a contraindication to taking combined oral contraceptive pills.<ref name=":22" /> | |||
==Side effects== | |||
It is generally accepted that the health risks of oral contraceptives are lower than those from pregnancy and birth,<ref>{{cite book| vauthors = Crooks RL, Baur K | title=Our Sexuality | year=2005 | publisher=Thomson Wadsworth |location=Belmont, CA | isbn=978-0-534-65176-3}}{{page needed|date=August 2012}}</ref> and "the health benefits of any method of contraception are far greater than any risks from the method".<ref>{{cite book | publisher = ] | date = 2005 | url = https://www.who.int/publications/i/item/9241593229 | title = Decision-Making Tool for Family Planning Clients and Providers | chapter = Appendix 10: Myths about contraception | access-date = 14 September 2022 | archive-date = 7 January 2007 | archive-url = https://web.archive.org/web/20070107004503/http://www.who.int/reproductive-health/family_planning/counselling.htm | url-status = live }}</ref> Some organizations have argued that comparing a contraceptive method to no method (pregnancy) is not relevant—instead, the comparison of safety should be among available methods of contraception.<ref>{{cite web |vauthors=Holck S |title=Contraceptive Safety |work=Special Challenges in Third World Women's Health |publisher=1989 Annual Meeting of the American Public Health Association |url=http://www.users.interport.net/i/w/iwhc/sc_cs.html |access-date=7 October 2006 |archive-date=8 November 2017 |archive-url=https://web.archive.org/web/20171108202427/http://www.users.interport.net/i/w/iwhc/sc_cs.html |url-status=live }}</ref> | |||
===Common=== | |||
Different sources note different incidence of side effects. The most common side effect is ]. Combined oral contraceptive pills can improve conditions such as dysmenorrhea, premenstrual syndrome, and acne,<ref name="pmid18710356">{{cite journal | vauthors = Huber JC, Bentz EK, Ott J, Tempfer CB | title = Non-contraceptive benefits of oral contraceptives | journal = Expert Opinion on Pharmacotherapy | volume = 9 | issue = 13 | pages = 2317–2325 | date = September 2008 | pmid = 18710356 | doi = 10.1517/14656566.9.13.2317 | s2cid = 73326364 }}</ref> reduce symptoms of endometriosis and polycystic ovary syndrome, and decrease the risk of anemia.<ref name="Nelson, Randy J. 2005">{{cite book| vauthors = Nelson RJ | title = An introduction to behavioral endocrinology| edition = 3rd| year = 2005| publisher = Sinauer Associates| location = Sunderland, Mass| isbn = 978-0-87893-617-5 }}{{page needed|date=August 2012}}</ref> Use of oral contraceptives also reduces lifetime risk of ovarian and endometrial cancer.<ref name="pmid18061864">{{cite journal | vauthors = Vo C, Carney ME | title = Ovarian cancer hormonal and environmental risk effect | journal = Obstetrics and Gynecology Clinics of North America | volume = 34 | issue = 4 | pages = 687–700, viii | date = December 2007 | pmid = 18061864 | doi = 10.1016/j.ogc.2007.09.008 }}</ref><ref name="pmid16050564">{{cite journal | vauthors = Bandera CA | title = Advances in the understanding of risk factors for ovarian cancer | journal = The Journal of Reproductive Medicine | volume = 50 | issue = 6 | pages = 399–406 | date = June 2005 | pmid = 16050564 }}</ref><ref>{{cite journal | vauthors = Pragout D, Laurence V, Baffet H, Raccah-Tebeka B, Rousset-Jablonski C | title = Contraception et cancer. RPC Contraception CNGOF |trans-title=Contraception and cancer: CNGOF Contraception Guidelines | journal = Gynécologie Obstétrique Fertilité & Sénologie| volume = 46 | issue = 12 | pages = 834–844 | date = December 2018 | pmid = 30385358 | doi = 10.1016/j.gofs.2018.10.010 | s2cid = 196536513 }}</ref> | |||
Nausea, vomiting, headache, bloating, breast tenderness, swelling of the ankles/feet (fluid retention), or weight change may occur. Vaginal bleeding between periods (spotting) or missed/irregular periods may occur, especially during the first few months of use.<ref>{{cite web|url=http://www.webmd.com/drugs/2/drug-17518-115/apri-oral/progestin-estrogen-contraceptive---oral/details|title=Apri oral : Uses, Side Effects, Interactions, Pictures, Warnings & Dosing|access-date=2 December 2016|archive-date=13 December 2016|archive-url=https://web.archive.org/web/20161213184059/http://www.webmd.com/drugs/2/drug-17518-115/apri-oral/progestin-estrogen-contraceptive---oral/details|url-status=live}}</ref> | |||
===Heart and blood vessels=== | |||
Combined oral contraceptives are associated with an increased risk of ], including ] (DVT) and ] (PE).<ref name="VTE10">{{cite journal | vauthors = Blanco-Molina A, Monreal M | title = Venous thromboembolism in women taking hormonal contraceptives | journal = Expert Review of Cardiovascular Therapy | volume = 8 | issue = 2 | pages = 211–5 | date = February 2010 | pmid = 20136607 | doi = 10.1586/erc.09.175 | s2cid = 41309800 }}</ref><ref>{{Cite journal |last1=de Bastos |first1=Marcos |last2=Stegeman |first2=Bernardine H. |last3=Rosendaal |first3=Frits R. |last4=Van Hylckama Vlieg |first4=Astrid |last5=Helmerhorst |first5=Frans M |last6=Stijnen |first6=Theo |last7=Dekkers |first7=Olaf M |date=2014-03-03 |editor-last=Cochrane Fertility Regulation Group |title=Combined oral contraceptives: venous thrombosis |journal=Cochrane Database of Systematic Reviews |volume=2014 |issue=3 |pages=CD010813 |doi=10.1002/14651858.CD010813.pub2 |pmc=10637279 |pmid=24590565}}</ref> | |||
While lower doses of estrogen in combined oral contraceptive pills may have a lower risk of ] and ] compared to higher estrogen dose pills (50 μg/day), users of low estrogen dose combined oral contraceptive pills still have an increased risk compared to non-users.<ref>{{cite journal | vauthors = Roach RE, Helmerhorst FM, Lijfering WM, Stijnen T, Algra A, Dekkers OM | title = Combined oral contraceptives: the risk of myocardial infarction and ischemic stroke | journal = The Cochrane Database of Systematic Reviews | volume = 8 | issue = 8 | pages = CD011054 | date = August 2015 | pmid = 26310586 | pmc = 6494192 | doi = 10.1002/14651858.CD011054.pub2 }}</ref> These risks are greatest in women with additional risk factors, such as smoking (which increases risk substantially) and long-continued use of the pill, especially in women over 35 years of age.<ref name="Rang 2012">{{cite book| vauthors = Rang HP, Dale MM, Ritter JM, Flower RJ, Henderson G | title = Rang and Dale's pharmacology| edition = 7th| year = 2012| publisher = Elsevier/Churchill Livingstone| location = Edinburgh| isbn = 978-0-7020-3471-8| page = 426| chapter = The reproductive system }}</ref> | |||
The overall absolute risk of venous thrombosis per 100,000 woman-years in current use of combined oral contraceptives is approximately 60, compared with 30 in non-users.<ref name=eshre2013/> The risk of thromboembolism varies with different types of birth control pills; compared with combined oral contraceptives containing levonorgestrel (LNG), and with the same dose of estrogen and duration of use, the rate ratio of deep venous thrombosis for combined oral contraceptives with ] is 0.98, with ] 1.19, with ] (DSG) 1.82, with ] 1.86, with ] (DRSP) 1.64, and with ] 1.88.<ref name=eshre2013/> In comparison, venous thromboembolism occurs in 100–200 per 100.000 pregnant women every year.<ref name=eshre2013>{{cite journal | title = Venous thromboembolism in women: a specific reproductive health risk | journal = Human Reproduction Update | volume = 19 | issue = 5 | pages = 471–82 | year = 2013 | pmid = 23825156 | doi = 10.1093/humupd/dmt028 | author1 = ESHRE Capri Workshop Group | doi-access = free | title-link = doi }}</ref> | |||
One study showed more than a 600% increased risk of blood clots for women taking combined oral contraceptive pills with drospirenone compared with non-users, compared with 360% higher for women taking birth control pills containing levonorgestrel.<ref>{{cite journal|vauthors=Lidegaard Ø, Milsom I, Geirsson RT, Skjeldestad FE|date=July 2012|title=Hormonal contraception and venous thromboembolism|journal=Acta Obstetricia et Gynecologica Scandinavica|volume=91|issue=7|pages=769–78|doi=10.1111/j.1600-0412.2012.01444.x|pmid=22568831|s2cid=2691199| doi-access = free | title-link = doi }}<!--| access-date = 22 October 2012 --></ref> The US ] (FDA) initiated studies evaluating the health of more than 800,000 women taking combined oral contraceptive pills and found that the risk of VTE was 93% higher for women who had been taking drospirenone combined oral contraceptive pills for 3 months or less and 290% higher for women taking drospirenone combined oral contraceptive pills for 7–12 months, compared with women taking other types of oral contraceptives.<ref name="BMJ11">{{cite journal | vauthors = Dunn N | title = The risk of deep venous thrombosis with oral contraceptives containing drospirenone | journal = BMJ | volume = 342 | pages = d2519 | date = April 2011 | pmid = 21511807 | doi = 10.1136/bmj.d2519 | s2cid = 42721801 }}</ref> | |||
Based on these studies, in 2012, the FDA updated the label for drospirenone combined oral contraceptive pills to include a warning that contraceptives with drospirenone may have a higher risk of dangerous blood clots.<ref name="Yasmin FDA label">{{cite web | title=Yasmin- drospirenone and ethinyl estradiol kit | website=DailyMed | date=19 May 2023 | url=https://dailymed.nlm.nih.gov/dailymed/drugInfo.cfm?setid=d7ea6a60-5a56-4f81-b206-9b27b7e58875 | access-date=28 December 2024}}</ref> | |||
A 2015 ] and ] found that combined birth control pills were associated with 7.6-fold higher risk of ], a rare form of ] in which blood clotting occurs in the cerebral venous sinuses.<ref name="pmid25699010">{{cite journal | vauthors = Amoozegar F, Ronksley PE, Sauve R, Menon BK | title = Hormonal contraceptives and cerebral venous thrombosis risk: a systematic review and meta-analysis | journal = Front Neurol | volume = 6 | issue = | pages = 7 | date = 2015 | pmid = 25699010 | pmc = 4313700 | doi = 10.3389/fneur.2015.00007 | doi-access = free | title-link = doi }}</ref> | |||
{{Risk of venous thromboembolism with hormone therapy and birth control pills (QResearch/CPRD)}} | |||
===Cancer=== | |||
====Decreased risk of ovarian, endometrial, and colorectal cancers==== | |||
Usage of combined oral concetraption decreased the risk of ], ],<!-- | |||
--><ref name="Speroff 20052"/> and ].<ref name=IARC2007/><ref name="pmid18710356"/><ref name="pmid17302189">{{cite book |vauthors=Bast RC, Brewer M, Zou C, Hernandez MA, Daley M, Ozols R, Lu K, Lu Z, Badgwell D, Mills GB, Skates S, Zhang Z, Chan D, Lokshin A, Yu Y | chapter = Prevention and Early Detection of Ovarian Cancer: Mission Impossible? | title = Cancer Prevention | volume = 174 | pages = 91–100 | year = 2007 | pmid = 17302189 | doi = 10.1007/978-3-540-37696-5_9 | isbn = 978-3-540-37695-8 | series = Recent Results in Cancer Research }}</ref> Two large cohort studies published in 2010 both found a significant reduction in adjusted relative risk of ovarian and endometrial cancer mortality in ever-users of OCs compared with never-users.<ref name="Hannaford 2010">{{cite journal | vauthors = Hannaford PC, Iversen L, Macfarlane TV, Elliott AM, Angus V, Lee AJ | title = Mortality among contraceptive pill users: cohort evidence from Royal College of General Practitioners' Oral Contraception Study | journal = BMJ | volume = 340 | pages = c927 | date = March 2010 | pmid = 20223876 | pmc = 2837145 | doi = 10.1136/bmj.c927 }}</ref><ref name="Vessey 2010">{{cite journal | vauthors = Vessey M, Yeates D, Flynn S | title = Factors affecting mortality in a large cohort study with special reference to oral contraceptive use | journal = Contraception | volume = 82 | issue = 3 | pages = 221–9 | date = September 2010 | pmid = 20705149 | doi = 10.1016/j.contraception.2010.04.006 }}</ref> The use of oral contraceptives (birth control pills) for five years or more decreases the risk of ovarian cancer in later life by 50%.<ref name="pmid17302189"/><ref>{{cite journal |last1=Nappi |first1=Rossella E. |last2=Pellegrinelli |first2=Alice |last3=Campolo |first3=Federica |last4=Lanzo |first4=Gabriele |last5=Santamaria |first5=Valentina |last6=Suragna |first6=Alessandro |last7=Spinillo |first7=Arsenio |last8=Benedetto |first8=Chiara |date=2 January 2015 |title=Effects of combined hormonal contraception on health and wellbeing: Women's knowledge in northern Italy |journal=The European Journal of Contraception & Reproductive Health Care |volume=20 |issue=1 |pages=36–46 |doi=10.3109/13625187.2014.961598 |issn=1362-5187 |pmid=25317952|s2cid=26048792 }}</ref> Combined oral contraceptive use reduces the risk of ] by 40% and the risk of ] by 50% compared with never users. The risk reduction increases with duration of use, with an 80% reduction in risk for both ovarian and endometrial cancer with use for more than 10 years. The risk reduction for both ovarian and endometrial cancer persists for at least 20 years.<!-- | |||
--><ref name="Speroff 20052"/> | |||
====Increased risk of breast, cervical, and liver cancers==== | |||
A report by a 2005 ] (IARC) working group found that combined oral contraceptives increase the risk of cancers of the ], ] and ].<ref name="IARC2007">{{cite journal | journal = IARC Monographs on the Evaluation of Carcinogenic Risks to Humans | volume = 91 | year = 2007 | title = Combined Estrogen-Progestogen Contraceptives | url = http://monographs.iarc.fr/ENG/Monographs/vol91/mono91-6.pdf | author1 = IARC working group | access-date = 14 September 2010 | archive-date = 3 August 2016 | archive-url = https://web.archive.org/web/20160803085912/http://monographs.iarc.fr/ENG/Monographs/vol91/mono91-6.pdf | url-status = live }}</ref> A ] in 2010 did not support an increased overall cancer risk in users of combined oral contraceptive pills, but did find a slight increase in ] risk among current users, which disappears 5–10 years after use has stopped; the study also found an increased risk of cervical and liver cancers.<ref>{{cite journal | vauthors = Cibula D, Gompel A, Mueck AO, La Vecchia C, Hannaford PC, Skouby SO, Zikan M, Dusek L | title = Hormonal contraception and risk of cancer | journal = Human Reproduction Update | volume = 16 | issue = 6 | pages = 631–50 | year = 2010 | pmid = 20543200 | doi = 10.1093/humupd/dmq022 | doi-access = free | title-link = doi }}</ref> A 2013 ] concluded that every use of birth control pills is associated with a modest increase in the risk of breast cancer (relative risk 1.08) and a reduced risk of colorectal cancer (relative risk 0.86) and endometrial cancer (relative risk 0.57). Cervical cancer risk in those infected with ] is increased.<ref>{{cite journal | vauthors = Gierisch JM, Coeytaux RR, Urrutia RP, Havrilesky LJ, Moorman PG, Lowery WJ, Dinan M, McBroom AJ, Hasselblad V, Sanders GD, Myers ER | title = Oral contraceptive use and risk of breast, cervical, colorectal, and endometrial cancers: a systematic review | journal = Cancer Epidemiology, Biomarkers & Prevention | volume = 22 | issue = 11 | pages = 1931–43 | date = November 2013 | pmid = 24014598 | doi = 10.1158/1055-9965.EPI-13-0298 | doi-access = free | title-link = doi }}</ref> A similar small increase in breast cancer risk was observed in other meta analyses.<ref>{{cite journal | vauthors = Anothaisintawee T, Wiratkapun C, Lerdsitthichai P, Kasamesup V, Wongwaisayawan S, Srinakarin J, Hirunpat S, Woodtichartpreecha P, Boonlikit S, Teerawattananon Y, Thakkinstian A | title = Risk factors of breast cancer: a systematic review and meta-analysis | journal = Asia-Pacific Journal of Public Health | volume = 25 | issue = 5 | pages = 368–87 | date = September 2013 | pmid = 23709491 | doi = 10.1177/1010539513488795 | s2cid = 206616972 }}</ref><ref>{{cite journal | vauthors = Zhu H, Lei X, Feng J, Wang Y | title = Oral contraceptive use and risk of breast cancer: a meta-analysis of prospective cohort studies | journal = The European Journal of Contraception & Reproductive Health Care | volume = 17 | issue = 6 | pages = 402–14 | date = December 2012 | pmid = 23061743 | doi = 10.3109/13625187.2012.715357 | s2cid = 33708638 }}</ref> A study of 1.8 million Danish women of reproductive age followed for 11 years found that the risk of breast cancer was 20% higher among those who currently or recently used hormonal contraceptives than among women who had never used hormonal contraceptives.<ref name="Mørch et al., NEJM 2017">{{cite journal |last1=Mørch |first1=LS |last2=Skovlund |first2=CW |last3=Hannaford |first3=PC |last4=Iversen |first4=L |last5=Fielding |first5=S |last6=Lidegaard |first6=Ø |title=Contemporary Hormonal Contraception and the Risk of Breast Cancer. |journal=The New England Journal of Medicine |date=7 December 2017 |volume=377 |issue=23 |pages=2228–2239 |doi=10.1056/NEJMoa1700732 |pmid=29211679|hdl=2164/15157 |s2cid=4498610 |hdl-access=free }}</ref> This risk increased with duration of use, with a 38% increase in risk after more than 10 years of use.<ref name="Mørch et al., NEJM 2017" /> | |||
===Weight=== | |||
A 2016 systematic review found low quality evidence that studies of combination hormonal contraceptives showed no large difference in weight when compared with placebo or no intervention groups.<ref name="pmid27567593">{{cite journal |last1=Lopez |first1=Laureen M. |last2=Ramesh |first2=Shanthi |last3=Chen |first3=Mario |last4=Edelman |first4=Alison |last5=Otterness |first5=Conrad |last6=Trussell |first6=James |last7=Helmerhorst |first7=Frans M. |date=28 August 2016 |title=Progestin-only contraceptives: effects on weight |journal=The Cochrane Database of Systematic Reviews |volume=2016 |issue=8 |pages=CD008815 |doi=10.1002/14651858.CD008815.pub4 |issn=1469-493X |pmc=5034734 |pmid=27567593}}</ref> The evidence was not strong enough to be certain that contraceptive methods do not cause some weight change, but no major effect was found.<ref name="pmid27567593" /> This review also found "that women did not stop using the pill or patch because of weight change".<ref name="pmid27567593" /> | |||
===Sexual function and risk aversion=== | |||
====Sexual desire==== | |||
{{Main|Effects of hormones on sexual motivation}} | |||
{{See also|Gene-centered view of evolution|Automatic and controlled processes|Sexual arousal}} | |||
Some researchers question a causal link between combined oral contraceptive pill use and decreased ];<ref>{{cite book| vauthors = Weir GC, DeGroot LJ, Grossman A, Marshall JF, Melmed S, Potts JT| title = Endocrinology| edition = 5th| year = 2006| publisher = Elsevier Saunders| location = St. Louis, Mo| isbn = 978-0-7216-0376-6| page = | url = https://archive.org/details/endocrinology0003unse/page/2999}}{{page needed|date=August 2012}}</ref> a 2007 study of 1700 women found combined oral contraceptive pill users experienced no change in sexual satisfaction.<ref name="pmid17403440">{{cite journal | vauthors = Westhoff CL, Heartwell S, Edwards S, Zieman M, Stuart G, Cwiak C, Davis A, Robilotto T, Cushman L, Kalmuss D | title = Oral contraceptive discontinuation: do side effects matter? | journal = American Journal of Obstetrics and Gynecology | volume = 196 | issue = 4 | pages = 412.e1–6; discussion 412.e6–7 | date = April 2007 | pmid = 17403440 | pmc = 1903378 | doi = 10.1016/j.ajog.2006.12.015 }}</ref> A 2005 laboratory study of genital arousal tested fourteen women before and after they began taking combined oral contraceptive pills. The study found that women experienced a significantly wider range of arousal responses after beginning pill use; decreases and increases in measures of arousal were equally common.<ref>{{cite journal | vauthors = Seal BN, Brotto LA, Gorzalka BB | title = Oral contraceptive use and female genital arousal: methodological considerations | journal = Journal of Sex Research | volume = 42 | issue = 3 | pages = 249–58 | date = August 2005 | pmid = 19817038 | doi = 10.1080/00224490509552279 | s2cid = 10402534 }}</ref><ref>{{cite journal | vauthors = Higgins JA, Davis AR | title = Contraceptive sex acceptability: a commentary, synopsis and agenda for future research | journal = Contraception | volume = 90 | issue = 1 | pages = 4–10 | date = July 2014 | pmid = 24792147 | pmc = 4247241 | doi = 10.1016/j.contraception.2014.02.029 }}</ref> | |||
In 2012, '']'' published a review of research studying the effects of hormonal contraceptives on female sexual function that concluded that the sexual side effects of hormonal contraceptives are not well-studied and especially in regards to impacts on libido, with research establishing only mixed effects where only small percentages of women report experiencing an increase or decrease and majorities report being unaffected.<ref>{{cite journal|vauthors=Burrows LJ, Basha M, Goldstein AT|year=2012|title=The Effects of Hormonal Contraceptives on Female Sexuality: A Review|journal=The Journal of Sexual Medicine|publisher=]|volume=9|issue=9|pages=2213–2223|doi=10.1111/j.1743-6109.2012.02848.x|pmid=22788250 }}</ref> In 2013, '']'' published a review of 36 studies including 8,422 female subjects in total taking combined oral contraceptive pills that found that 5,358 subjects (or 63.6 percent) reported no change in libido, 1,826 subjects (or 21.7 percent) reported an increase, and 1,238 subjects (or 14.7 percent) reported a decrease.<ref name="Pastor Holla & Chmel">{{cite journal|vauthors=Pastor Z, Holla K, Chmel R|title=The influence of combined oral contraceptives on female sexual desire: a systematic review|journal=The European Journal of Contraception & Reproductive Health Care|publisher=Taylor & Francis|volume=18|issue=1|pages=27–43|year=2013| pmid=23320933|doi=10.3109/13625187.2012.728643|s2cid=34748865}}</ref> In 2019, '']'' published a ] of 22 published and 4 unpublished studies (with 7,529 female subjects in total) that evaluated whether women expose themselves to greater health risks at different points in the menstrual cycle including by sexual activity with partners and found that subjects in the last third of the follicular phase and at ovulation (when levels of ] estradiol and luteinizing hormones are heightened) experienced increased sexual activity with partners as compared with the ] and during menstruation.<ref name="Boudesseul Gildersleeve Haselton & Bègue">{{cite journal|vauthors=Boudesseul J, Gildersleeve KA, Haselton MG, Bègue L|author-link3=Martie Haselton|year=2019|title=Do women expose themselves to more health-related risks in certain phases of the menstrual cycle? A meta-analytic review|journal=Neuroscience & Biobehavioral Reviews|volume=107|pages=505–524|pmid=31513819|doi=10.1016/j.neubiorev.2019.08.016|url=https://psyarxiv.com/k8s5y/|access-date=27 April 2023|archive-date=6 May 2023|archive-url=https://web.archive.org/web/20230506202444/https://psyarxiv.com/k8s5y/|url-status=live}}</ref> | |||
A 2006 study of 124 ] women measured ] (SHBG), including before and after discontinuation of the oral contraceptive pill. Women continuing use of oral contraceptives had SHBG levels four times higher than those who never used it, and levels remained elevated even in the group that had discontinued its use.<ref>{{cite journal | vauthors = Panzer C, Wise S, Fantini G, Kang D, Munarriz R, Guay A, Goldstein I | title = Impact of oral contraceptives on sex hormone-binding globulin and androgen levels: a retrospective study in women with sexual dysfunction | journal = The Journal of Sexual Medicine | volume = 3 | issue = 1 | pages = 104–13 | date = January 2006 | pmid = 16409223 | doi = 10.1111/j.1743-6109.2005.00198.x }} | |||
<br /> Description of the study results in Medical News Today: {{cite web | title=Birth Control Pill Could Cause Long-Term Problems With Testosterone, New Research Indicates | url=http://www.medicalnewstoday.com/articles/35663.php | date=4 January 2006 | access-date=9 April 2011 | archive-date=24 April 2011 | archive-url=https://web.archive.org/web/20110424204010/http://www.medicalnewstoday.com/articles/35663.php | url-status=dead }}</ref><ref>{{cite journal | vauthors = Panzer C, Wise S, Fantini G, Kang D, Munarriz R, Guay A, Goldstein I | title = Impact of oral contraceptives on sex hormone-binding globulin and androgen levels: a retrospective study in women with sexual dysfunction | journal = The Journal of Sexual Medicine | volume = 3 | issue = 1 | pages = 104–13 | date = January 2006 | pmid = 16409223 | doi = 10.1111/j.1743-6109.2005.00198.x }}</ref> Theoretically, an increase in SHBG may be a physiologic response to increased hormone levels, but may decrease the free levels of other hormones, such as androgens, because of the unspecificity of its sex hormone binding. In 2020, '']'' published a ] of 588 premenopausal female subjects aged 18 to 39 years from the ]n ] of ], ], and ] with regular menstrual cycles whose SHBG levels were measured by ] that found that after controlling for age, ], cycle stage, smoking, parity, partner status, and psychoactive medication, SHBG was inversely correlated with ].<ref>{{cite journal|vauthors=Zheng J, Islam RM, Skiba MA, Bell RJ, Davis SR|year=2020|title=Associations between androgens and sexual function in premenopausal women: a cross-sectional study|journal=The Lancet Diabetes & Endocrinology|publisher=Elsevier|volume=8|issue=8|pages=693–702|doi=10.1016/S2213-8587(20)30239-4|pmid=32707117 |s2cid=225473332 }}</ref> | |||
====Sexual attractiveness and function==== | |||
{{See also|Sexual attraction|Concealed ovulation|3=Estrous cycle|6=Menstruation (mammal)}} | |||
Combined oral contraceptive pills may increase natural ],<ref name="hn"/> while some women experience decreased lubrication.<ref name="hn">{{cite book| vauthors = Hatcher RD, Nelson AL| title = Contraceptive technology| edition = 18th| year = 2004| publisher = Ardent Media, Inc| location = New York| isbn = 978-0-9664902-5-1| pages = 403, 432, 434| chapter = Combined Hormonal Contraceptive Methods| veditors = Hatcher RD }}</ref><ref>{{cite book| vauthors = Speroff L | title = A clinical guide for contraception| edition = 4th| year = 2005| publisher = Lippincott Williams & Wilkins| location = Hagerstown, MD| isbn = 978-0-7817-6488-9| page = 72 }}</ref> | |||
In 2004, the '']'' published a study where pairs of digital photographs of the faces of 48 women at ] and ] between the ages 19 and 33 who were not taking hormonal contraceptives during the study were photographed in the late follicular and early mid-luteal phases of their menstrual cycles and the photographs were then rated by 261 ] subjects (130 male and 131 female) at their respective universities who compared the facial attractiveness of each photographed woman in their photograph pairs, and found that the subjects perceived the late follicular phase images of the photographed women as being more attractive than the luteal phase images by more than ] by ].<ref>{{cite journal|vauthors=Roberts SC, Havlicek J, Flegr J, Hruskova M, Little AC, Jones BC, Perrett DI, Petrie M|author-link3=Jaroslav Flegr|author-link6=Benedict Jones|author-link7=David Perrett|year=2004|title=Female facial attractiveness increases during the fertile phase of the menstrual cycle|journal=Proceedings of the Royal Society B: Biological Sciences|publisher=Royal Society|volume=271|issue=Supplemental 5|pages=S270–S272|doi=10.1098/rsbl.2004.0174|pmid=15503991|pmc=1810066|jstor=4142824}}</ref> | |||
In 2007, '']'' published a study where 18 professional ]rs recorded their menstrual cycles, work shifts, and tip earnings at ] for 60 days that found by a ] analysis of 296 work shifts (or approximately 5,300 lap dances) that the 11 dancers with normal menstrual cycles earned ]335 per 5-hour shift during the late follicular phase and at ovulation, US$260 per shift during the luteal phase, and US$185 per shift during menstruation, while the 7 dancers using hormonal contraceptives showed no earnings peak during the late follicular phase and at ovulation.<ref>{{cite journal |title=Ovulatory cycle effects on tip earnings by lap dancers: economic evidence for human estrus? |vauthors=Miller GF, Tybur JM, Jordan BD |author-link1=Geoffrey Miller (psychologist) |author-link2=Joshua Tybur |date=2007 |journal=Evolution and Human Behavior |doi=10.1016/j.evolhumbehav.2007.06.002 |volume=28 |issue=6 |pages=375–381 |citeseerx=10.1.1.154.8176 |url=https://www.unm.edu/~gfmiller/cycle_effects_on_tips.pdf |access-date=16 May 2023 |archive-date=13 June 2023 |archive-url=https://web.archive.org/web/20230613025953/http://www.unm.edu/~gfmiller/cycle_effects_on_tips.pdf |url-status=live }}</ref> In 2008, ''Evolution and Human Behavior'' published a study where the voices of 51 female students at the ] were recorded with the women counting from 1 to 10 at four different points in their menstrual cycles were rated by blinded subjects who listened to the recordings to be more attractive at the points of the menstrual cycle with higher probabilities of conception, while the ratings of the voices of the women who were taking hormonal contraceptives showed no variation over the menstrual cycle in attractiveness.<ref>{{cite journal|vauthors=Pipitone RN, Gallup GG|author-link2=Gordon G. Gallup|year=2008|title=Women's voice attractiveness varies across the menstrual cycle|journal=Evolution and Human Behavior|publisher=Elsevier|volume=29|issue=4|pages=268–274|doi=10.1016/j.evolhumbehav.2008.02.001|bibcode=2008EHumB..29..268P }}</ref> | |||
====Risk-taking behaviour==== | |||
{{See also|Behavioral modernity|Evolutionary mismatch|Human factors and ergonomics|l3=Human factors}} | |||
In 1998, ''Evolution and Human Behavior'' published a study of 300 female undergraduate students at the State University of New York at Albany between the ages of 18 and 54 (with a mean age of 21.9 years) that surveyed the subjects engagement in 18 different behaviors over the 24 hours prior to filling out the study's questionnaire that varied in their risk of potential ] or ] and the first day of their last menstruations, and found that subjects at ovulation showed ] decreased engagement in behaviors that risked rape and sexual assault while subjects taking birth control pills showed no variation over their menstrual cycles in the same behaviors (suggesting a ] function of the hormonal fluctuations during the menstrual cycle in causing avoidance of behaviors that risk rape and sexual assault).<ref>{{cite journal|vauthors=Chavanne TJ, Gallup GG|year=1998|title=Variation in Risk Taking Behavior Among Female College Students as a Function of the Menstrual Cycle|journal=Evolution and Human Behavior|publisher=Elsevier|volume=19|issue=1|pages=27–32|doi=10.1016/S1090-5138(98)00016-6|bibcode=1998EHumB..19...27C }}</ref><ref>{{cite book|vauthors=Buss DM|author-link=David Buss|title=The Evolution of Desire: Strategies of Human Mating|title-link=The Evolution of Desire|year=2016|orig-date=1994|publisher=]|place=New York|edition=3rd|pages=260–262|isbn=978-0-465-09776-0}}</ref> In 2003, ''Evolution and Human Behavior'' published a conceptual ] study of the 1998 survey that confirmed its findings.<ref>{{cite journal|vauthors=Bröder A, Hohmann N|year=2003|title=Variations in risk taking behavior over the menstrual cycle: An improved replication|journal=Evolution and Human Behavior|publisher=Elsevier|volume=24|issue=6|pages=391–398|doi=10.1016/S1090-5138(03)00055-2|bibcode=2003EHumB..24..391B }}</ref> | |||
In 2006, a study presented at the annual conference of the ] surveyed 176 female undergraduate students at ] (with a mean age of 19.9 years) in a ] ] where the subjects chose between an option with a guaranteed outcome or an option involving ] and indicated the first day of their last menstruations, and found that the subjects ] varied over the menstrual cycle (with none of the subjects at ovulation preferring the risky option) and only subjects not taking hormonal contraceptives showed the menstrual cycle effect on risk aversion.<ref>{{cite journal|vauthors=Burns BD|year=2006|title=Cognitive Neuroendocrinology: Risk Preference Changes Across the Menstrual Cycle|journal=Proceedings of the Annual Meeting of the Cognitive Science Society|volume=28|pages=125–130|issn=1069-7977|url=https://escholarship.org/uc/item/37k5j9w2|access-date=27 April 2023|archive-date=27 April 2023|archive-url=https://web.archive.org/web/20230427055609/https://escholarship.org/uc/item/37k5j9w2|url-status=live}}</ref> In the 2019 ''Neuroscience & Biobehavioral Reviews'' meta-analysis, the research reviewed also evaluated whether the 7,529 female subjects across the 26 studies showed greater risk recognition and avoidance of potentially threatening people and dangerous situations at different phases of the menstrual cycle and found that the subjects displayed better risk accuracy recognition during the late follicular phase and at ovulation as compared to the luteal phase.<ref name="Boudesseul Gildersleeve Haselton & Bègue" /> | |||
===Depression=== | |||
Low levels of ], a neurotransmitter in the brain, have been linked to ]. High levels of estrogen, as in first-generation combined oral contraceptive pills, and progestin, as in some progestin-only contraceptives, have been shown to lower the brain serotonin levels by increasing the concentration of a brain enzyme that reduces serotonin.{{Citation needed|date=August 2024}} | |||
Current medical reference textbooks on contraception<ref name="Speroff 20052"/> and major organizations such as the American ],<!-- | |||
--><ref name="acog practice bulletin">{{cite journal |doi=10.1097/00006250-200606000-00055 |pmid=16738183 |title=ACOG Practice Bulletin No. 73: Use of Hormonal Contraception in Women with Coexisting Medical Conditions |year=2006 |journal=Obstetrics & Gynecology |volume=107 |issue=6 |pages=1453–72|author1=ACOG Committee on Practice Bulletins-Gynecology }}</ref> the ],<!-- | |||
--><ref name="who mec" /> and the United Kingdom's ]<!-- | |||
--><ref name="ffprhc mec">{{cite web|author=FFPRHC | year=2006 |title=The UK Medical Eligibility Criteria for Contraceptive Use (2005/2006) |url=http://www.ffprhc.org.uk/admin/uploads/UKMEC200506.pdf |access-date=31 March 2007|archive-url = https://web.archive.org/web/20070619230102/http://www.ffprhc.org.uk/admin/uploads/UKMEC200506.pdf <!-- Bot retrieved archive --> |archive-date = 19 June 2007| author-link=Royal College of Obstetricians and Gynaecologists }}</ref> agree that current evidence indicates low-dose combined oral contraceptives are unlikely to increase the risk of depression, and unlikely to worsen the condition in women that are depressed. | |||
===Hypertension=== | |||
Bradykinin lowers blood pressure by causing blood vessel dilation. Certain enzymes are capable of breaking down bradykinin (Angiotensin Converting Enzyme, Aminopeptidase P). Progesterone can increase the levels of Aminopeptidase P (AP-P), thereby increasing the breakdown of bradykinin, which increases the risk of developing hypertension.<ref name="Cilia La Corte AL, Carter AM, Turner AJ, Grant PJ, Hooper NM 2008 221–5">{{cite journal | vauthors = Cilia La Corte AL, Carter AM, Turner AJ, Grant PJ, Hooper NM | title = The bradykinin-degrading aminopeptidase P is increased in women taking the oral contraceptive pill | journal = Journal of the Renin-Angiotensin-Aldosterone System | volume = 9 | issue = 4 | pages = 221–5 | date = December 2008 | pmid = 19126663 | doi = 10.1177/1470320308096405 | s2cid = 206729914 | doi-access = free | title-link = doi }}</ref> | |||
=== Thyroid === | |||
Estrogen in oral contraceptives may increase thyroid binding globulin and decrease free T4. Thus, longer history of oral contraceptives use may be strongly associated with hypothyroidism, especially for more than 10 years. Also, a higher dose of thyroxine may be needed with oral contraceptives.<ref>{{cite journal |last1= Qiu|first1= Yuxuan|last2= Hu|first2= Yuanyuan |date= 23 June 2021 |title= Birth control pills and risk of hypothyroidism: a cross-sectional study of the National Health and Nutrition Examination Survey, 2007–2012|journal= BMJ Open |volume= 11|issue= 6|pages= e046607|doi= 10.1136/bmjopen-2020-046607 |pmid= 34162647|pmc= 8230965}}</ref> | |||
===Other effects=== | |||
Other side effects associated with low-dose combined oral contraceptive pills are ] (increased vaginal secretions), reductions in ], ] (breast tenderness), and decrease in ]. Side effects associated with older high-dose combined oral contraceptive pills include ], ], increases in ], and ] (facial skin discoloration); these effects are not strongly associated with low-dose formulations.{{Medical citation needed|date=December 2020}} | |||
Excess estrogen, such as from birth control pills, appears to increase cholesterol levels in bile and decrease gallbladder movement, which can lead to ].<ref>{{cite web |url=http://digestive.niddk.nih.gov/ddiseases/pubs/gallstones/ |title=Gallstones |publisher=NDDIC |date=July 2007 |access-date=13 August 2010 |archive-url=https://web.archive.org/web/20100811052827/http://digestive.niddk.nih.gov/ddiseases/pubs/gallstones/ |archive-date=11 August 2010 |url-status=dead }}</ref> Progestins found in certain formulations of oral contraceptive pills can limit the effectiveness of ] to increase muscle mass.<ref name="ScienceNews">{{cite news |url=https://www.sciencenews.org/blog/science-the-public/birth-control-pills-can-limit-muscle-training-gains |title=Birth control pills can limit muscle-training gains |vauthors=Raloff J |date=23 April 2009 |work=Science News |access-date=22 October 2018 |archive-date=11 June 2012 |archive-url=https://web.archive.org/web/20120611084209/http://www.sciencenews.org/view/generic/id/43210/title/Science_+_the_Public__Birth_control_pills_can_limit_muscle-training_gains |url-status=live }}</ref> This effect is caused by the ability of some progestins to inhibit ]s. One study claims that the pill may affect what male body odors a woman prefers, which may in turn influence her selection of partner.<ref>{{cite news |url=http://www.abc.net.au/news/stories/2008/08/14/2335871.htm?section=world |title=Love woes can be blamed on contraceptive pill: research – ABC News (Australian Broadcasting Corporation) |newspaper=ABC News |publisher=Abc.net.au |date=14 August 2008 |access-date=20 March 2010 |archive-date=22 July 2010 |archive-url=https://web.archive.org/web/20100722002011/http://www.abc.net.au/news/stories/2008/08/14/2335871.htm?section=world |url-status=live }}</ref><ref>{{cite journal | vauthors = Kollndorfer K, Ohrenberger I, Schöpf V | title = Contraceptive Use Affects Overall Olfactory Performance: Investigation of Estradiol Dosage and Duration of Intake | journal = PLOS ONE | volume = 11 | issue = 12 | pages = e0167520 | year = 2016 | pmid = 28002464 | pmc = 5176159 | doi = 10.1371/journal.pone.0167520 | bibcode = 2016PLoSO..1167520K | doi-access = free | title-link = doi }}</ref><ref>{{cite journal | vauthors = Roberts SC, Gosling LM, Carter V, Petrie M | title = MHC-correlated odour preferences in humans and the use of oral contraceptives | journal = Proceedings. Biological Sciences | volume = 275 | issue = 1652 | pages = 2715–22 | date = December 2008 | pmid = 18700206 | pmc = 2605820 | doi = 10.1098/rspb.2008.0825 }}</ref> Use of combined oral contraceptives is associated with a reduced risk of ], giving a relative risk of endometriosis of 0.63 during active use, yet with limited quality of evidence according to a ].<ref>{{cite journal | vauthors = Vercellini P, Eskenazi B, Consonni D, Somigliana E, Parazzini F, Abbiati A, Fedele L | title = Oral contraceptives and risk of endometriosis: a systematic review and meta-analysis | journal = Human Reproduction Update | volume = 17 | issue = 2 | pages = 159–70 | year = 2010 | pmid = 20833638 | doi = 10.1093/humupd/dmq042 | doi-access = free | title-link = doi }}</ref> | |||
Combined oral contraception decreases total ] levels by approximately 0.5 nmol/L, free testosterone by approximately 60%, and increases the amount of ] (SHBG) by approximately 100 nmol/L. Contraceptives containing second generation progestins and/or estrogen doses of around 20 –25 mg EE were found to have less impact on SHBG concentrations.<ref>{{cite journal | vauthors = Zimmerman Y, Eijkemans MJ, Coelingh Bennink HJ, Blankenstein MA, Fauser BC | title = The effect of combined oral contraception on testosterone levels in healthy women: a systematic review and meta-analysis | journal = Human Reproduction Update | volume = 20 | issue = 1 | pages = 76–105 | year = 2013 | pmid = 24082040 | pmc = 3845679 | doi = 10.1093/humupd/dmt038 }}</ref> Combined oral contraception may also reduce bone density.<ref>{{cite journal | vauthors = Scholes D, ], Ichikawa LE, LaCroix AZ, Spangler L, Beasley JM, Reed S, Ott SM | title = Oral contraceptive use and bone density change in adolescent and young adult women: a prospective study of age, hormone dose, and discontinuation | journal = The Journal of Clinical Endocrinology and Metabolism | volume = 96 | issue = 9 | pages = E1380–7 | date = September 2011 | pmid = 21752879 | pmc = 3167673 | doi = 10.1210/jc.2010-3027 }}</ref> | |||
==Drug interactions== | |||
Some ]s reduce the effect of the pill and can cause ], or increased chance of pregnancy. These include drugs such as ], ]s, ] and ]. In addition cautions are given about broad spectrum antibiotics, such as ] and ], which may cause problems "by impairing the ] responsible for recycling ] from the large bowel" (] 2003).<!-- | |||
--><ref>The effects of broad-spectrum antibiotics on Combined contraceptive pills is not found on systematic interaction metanalysis (Archer, 2002), although "individual patients do show large decreases in the plasma concentrations of ethinylestradiol when they take certain other antibiotics" (Dickinson, 2001). "experts on this topic still recommend informing oral contraceptive users of the potential for a rare interaction" (DeRossi, 2002) and this remains current (2006) UK {{Webarchive|url=https://web.archive.org/web/20070208155326/http://www.fpa.org.uk/information/leaflets/documents_and_pdfs/detail.cfm?contentID=130#17 |date=8 February 2007 }}.</ref><!-- | |||
--><ref>{{cite journal | vauthors = Archer JS, Archer DF | title = Oral contraceptive efficacy and antibiotic interaction: a myth debunked | journal = Journal of the American Academy of Dermatology | volume = 46 | issue = 6 | pages = 917–23 | date = June 2002 | pmid = 12063491 | doi = 10.1067/mjd.2002.120448 }}</ref><!-- | |||
--><ref>{{cite journal | vauthors = Dickinson BD, Altman RD, Nielsen NH, Sterling ML | title = Drug interactions between oral contraceptives and antibiotics | journal = Obstetrics and Gynecology | volume = 98 | issue = 5 Pt 1 | pages = 853–60 | date = November 2001 | pmid = 11704183 | doi = 10.1016/S0029-7844(01)01532-0 | s2cid = 41354899 }}</ref><!-- | |||
--><ref>{{cite journal | vauthors = DeRossi SS, Hersh EV | title = Antibiotics and oral contraceptives | journal = Dental Clinics of North America | volume = 46 | issue = 4 | pages = 653–64 | date = October 2002 | pmid = 12436822 | doi = 10.1016/S0011-8532(02)00017-4 | citeseerx = 10.1.1.620.9933 }}</ref> | |||
The traditional medicinal herb ] has also been implicated due to its upregulation of the ] system in the ] which could increase the metabolism of ethinyl estradiol and progestin components of some combined oral contraception.<ref>{{cite journal | vauthors = Berry-Bibee EN, Kim MJ, Tepper NK, Riley HE, Curtis KM | title = Co-administration of St. John's wort and hormonal contraceptives: a systematic review | journal = Contraception | volume = 94 | issue = 6 | pages = 668–677 | date = December 2016 | pmid = 27444983 | doi = 10.1016/j.contraception.2016.07.010 | pmc = 11283811 }}</ref> | |||
== Accessibility == | |||
The availability of pharmaceutical products to the public is determined by the local governing body. In the US, the responsible organisation is the ] (FDA). According to a press announcement in July 2023, a daily hormonal oral contraceptive was first made accessible to the public without a ].<ref name=":14a">{{Cite press release |date=July 2023 |title=FDA Approves First Nonprescription Daily Oral Contraceptive |url=https://www.fda.gov/news-events/press-announcements/fda-approves-first-nonprescription-daily-oral-contraceptive |access-date=2024-04-06 |website=U.S. ] (FDA) }}</ref> Although this drug class was approved for prescription use as early as in 1973, it took an additional 50 years to de-escalate its legal status. Such allowance is made plausible thanks to the demonstration of its safe and effective use by the general public, not needing any guidance from healthcare professionals.<ref name=":14a" /> Ultimately, the governing body should act accordingly to applicants' evidence and update the local legislation.<ref name=":14a" /> | |||
==History== | ==History== | ||
{| class="wikitable sortable floatright mw-collapsible" style="margin-left: auto; margin-right: auto; border: none;" | |||
===The invention=== | |||
|+ class="nowrap" | Introduction of first-generation birth control pills | |||
] (]-) invented ] in the ]. The Pill was developed in the ] by ] with the encouragement and financial backing of birth control activists ] and ]. | |||
|- | |||
! Progestin !! Estrogen !! Brand name !! Manufacturer !! US !! UK | |||
|- | |||
| ] || ] || Enovid (US) Conovid (UK) || ] || 1960 || 1961 | |||
|- | |||
| ] || ] || Ortho-Novum<br />Norinyl || ] and<br />] || 1963 || 1966 | |||
|- | |||
| ] || ] || Norlestrin || ] and<br />] || 1964 || 1962 | |||
|- | |||
| ] || ] || Lyndiol || ] || – || 1963 | |||
|- | |||
| ] || ] || Volidan<br />Nuvacon || ] || – || 1963 | |||
|- | |||
| ] || ] || Norlestrin || ] || 1964 || ? | |||
|- | |||
| ] || ] || Riglovis || Vister || – || – | |||
|- | |||
| ] || ] || Unovis || ] || – || – | |||
|- | |||
| ] || ] || Provest || ] || 1964 || – | |||
|- | |||
| ] || ] || C-Quens || ] || 1965 || 1965 | |||
|- | |||
| ] || ] || Oracon || ] || 1965 || – | |||
|- | |||
| ] || ] || Ovulen || ] || 1966 || 1965 | |||
|- | |||
| ] || ] || Demulen || ] || 1970 || 1968 | |||
|- | |||
| ] || ] || Planor<br />Miniplanor || ] || – || – | |||
|- | |||
| ] || ] || Ovral || ] || 1968 || 1972 | |||
|- | |||
| ] || ] || Neo-Novum || ] || – || – | |||
|- | |||
| ] || ] || Lyndiol || ] || – || 1969 | |||
|- class="sortbottom" | |||
| colspan="6" style="width: 1px; background-color:#eaecf0; text-align: center;" | '''Sources:''' <ref name="Marks2001">{{cite book|vauthors=Marks L|title=Sexual Chemistry: A History of the Contraceptive Pill|url=https://books.google.com/books?id=GgvLA3bqwnoC&pg=PA77|year=2001|publisher=Yale University Press|isbn=978-0-300-08943-1|pages=73–75, 77–78|access-date=27 September 2020|archive-date=11 January 2023|archive-url=https://web.archive.org/web/20230111061913/https://books.google.com/books?id=GgvLA3bqwnoC&pg=PA77|url-status=live}}</ref><ref name="Gelijns1991">{{cite book|vauthors=Gelijns A|title=Innovation in Clinical Practice: The Dynamics of Medical Technology Development|url=https://books.google.com/books?id=MZkrAAAAYAAJ&pg=PA167|year=1991|publisher=National Academies|pages=167–|id=NAP:13513|access-date=27 September 2020|archive-date=13 January 2023|archive-url=https://web.archive.org/web/20230113004846/https://books.google.com/books?id=MZkrAAAAYAAJ&pg=PA167|url-status=live}}</ref><ref name="Blum2013">{{cite book|vauthors= Blum RW |title=Adolescent Health Care: Clinical Issues|url=https://books.google.com/books?id=36PpAgAAQBAJ&pg=PA216|date=22 October 2013|publisher=Elsevier Science|isbn=978-1-4832-7738-7|pages=216–}}</ref><ref name="ToneWatkins2007">{{cite book| vauthors = Tone A, Watkins ES |title=Medicating Modern America: Prescription Drugs in History|url=https://books.google.com/books?id=M2sTCgAAQBAJ&pg=PA117|date=8 January 2007|publisher=NYU Press|isbn=978-0-8147-8301-6|pages=117–119}}</ref><ref name="McGuire2000">{{cite book|vauthors = McGuire JL |title=Pharmaceuticals, 4 Volume Set|url=https://books.google.com/books?id=uG9qAAAAMAAJ|year=2000|publisher=Wiley|isbn=978-3-527-29874-7|page=1580,1599}}</ref><ref name="Rao1998">{{cite book|vauthors= Rao B |title=Clinical Gynecology|url=https://books.google.com/books?id=rGSR8UaOEKkC&pg=PA163|date=1 January 1998|publisher=Orient Blackswan|isbn=978-81-250-1622-9|pages=163–|edition=4th}}</ref><ref name="Labhart2012">{{cite book|vauthors=Labhart A |title=Clinical Endocrinology: Theory and Practice|url=https://books.google.com/books?id=DAgJCAAAQBAJ&pg=PA571|date=6 December 2012|publisher=Springer Science & Business Media|isbn=978-3-642-96158-8|pages=571–}}</ref> | |||
|} | |||
By the 1930s, scientists had isolated and determined the structure of the ] and found that high doses of ]s, ] or ] inhibited ],<!-- | |||
--><ref name="goldzieher 1974">{{cite journal | vauthors = Goldzieher JW, Rudel HW | title = How the oral contraceptives came to be developed | journal = JAMA | volume = 230 | issue = 3 | pages = 421–5 | date = October 1974 | pmid = 4606623 | doi = 10.1001/jama.230.3.421 }}</ref><!-- | |||
--><ref name="goldzieher 1982">{{cite journal | vauthors = Goldzieher JW | title = Estrogens in oral contraceptives: historical perspectives | journal = The Johns Hopkins Medical Journal | volume = 150 | issue = 5 | pages = 165–9 | date = May 1982 | pmid = 7043034 }}</ref><!-- | |||
--><ref name="perone 1974">{{cite journal | vauthors = Perone N | title = The history of steroidal contraceptive development: the progestins | journal = Perspectives in Biology and Medicine | volume = 36 | issue = 3 | pages = 347–62 | date =Spring 1993 | pmid = 8506121 | doi = 10.1353/pbm.1993.0054 | s2cid = 46312750 }}</ref><!-- | |||
--><ref name="goldzieher 1993">{{cite journal | vauthors = Goldzieher JW | title = The history of steroidal contraceptive development: the estrogens | journal = Perspectives in Biology and Medicine | volume = 36 | issue = 3 | pages = 363–8 | date =Spring 1993 | pmid = 8506122 | doi = 10.1353/pbm.1993.0066 | s2cid = 28975213 }}</ref> | |||
but obtaining these hormones, which were produced from animal extracts, from European ] was extraordinarily expensive.<!-- | |||
--><ref name="maisel">{{cite book| vauthors = Maisel AQ |year=1965|title=The Hormone Quest |url= https://archive.org/details/hormonequest00mais|url-access=registration|location=New York |publisher=Random House|oclc=543168}}</ref> | |||
In 1939, ], a professor of ] at ], developed a method of synthesizing ] from plant steroid ]s, initially using sarsapogenin from ], which proved too expensive. After three years of extensive botanical research, he discovered a much better starting material, the ] from inedible Mexican yams ('']'' and '']'') found in the rain forests of ] near ]. The saponin could be converted in the lab to its aglycone moiety ]. Unable to interest his research sponsor ] in the commercial potential of synthesizing progesterone from Mexican yams, Marker left Penn State and in 1944 co-founded ] with two partners in ]. When he left Syntex a year later the ] had started and the period of the heyday of the ] had been started. Syntex broke the monopoly of European pharmaceutical companies on steroid hormones, reducing the price of progesterone almost 200-fold over the next eight years.<!-- | |||
--><ref name="asbell">{{cite book| vauthors = Asbell B |year=1995|title=The Pill: A Biography of the Drug That Changed the World|location=New York|publisher=Random House|isbn=978-0-679-43555-6|url=https://archive.org/details/pillthe00bern}}</ref><!-- | |||
--><ref name="lehmann">{{cite journal | vauthors = Lehmann PA, Bolivar A, Quintero R | title = Russell E. Marker. Pioneer of the Mexican steroid industry | journal = Journal of Chemical Education | volume = 50 | issue = 3 | pages = 195–9 | date = March 1973 | pmid = 4569922 | doi = 10.1021/ed050p195 | bibcode = 1973JChEd..50..195L }}</ref><!-- | |||
--><ref name="vaughan">{{cite book| vauthors = Vaughan P |year=1970|title=The Pill on Trial|location=New York|publisher=Coward-McCann|oclc=97780}}</ref> | |||
Midway through the 20th century, the stage was set for the development of a ], but pharmaceutical companies, universities and governments showed no interest in pursuing research.<!-- | |||
--><ref name="tone">{{cite book| vauthors = Tone A |year=2001|title=Devices & Desires: A History of Contraceptives in America|location=New York|publisher=Hill and Wang|isbn=978-0-8090-3817-6|url=https://archive.org/details/devicesdesireshi00tone}}</ref> | |||
===Progesterone to prevent ovulation=== | |||
Progesterone, given by injections, was first shown to inhibit ovulation in animals in 1937 by Makepeace and colleagues.<ref name="pmid14232795" /> | |||
In 1951, reproductive ] ], a leader in hormone research and co-founder of the ] (WFEB) in ], first met American birth control movement founder ] at a ] dinner hosted by Abraham Stone, medical director and vice president of ] (PPFA), who helped Pincus obtain a small grant from PPFA to begin hormonal contraceptive research.<ref>{{cite web|url=http://www.chicagotribune.com/lifestyles/books/ct-prj-birth-of-the-pill-jonathan-eig-20141016-story.html#page=1|title=Jonathan Eig on 'The Birth of the Pill'|vauthors=Nance K|website=]|date=16 October 2014|access-date=19 October 2014|archive-date=19 April 2019|archive-url=https://web.archive.org/web/20190419195123/https://www.chicagotribune.com/lifestyles/books/ct-prj-birth-of-the-pill-jonathan-eig-20141016-story.html#page=1|url-status=live}}</ref><ref>{{cite web | url=http://books.wwnorton.com/books/The-Birth-of-the-Pill/ | title=The Birth of the Pill | publisher=W. W. Norton & Company | access-date=19 October 2014 | archive-date=11 October 2014 | archive-url=https://web.archive.org/web/20141011202602/http://books.wwnorton.com/books/The-Birth-of-the-Pill/ | url-status=live }}</ref><ref>{{cite news|url=https://www.washingtonpost.com/opinions/book-review-the-birth-of-the-pill-and-the-reinvention-of-sex-by-jonathan-eig/2014/10/17/914acb3c-48c0-11e4-b72e-d60a9229cc10_story.html|title=Book review: 'The Birth of the Pill,' and the reinvention of sex, by Jonathan Eig|vauthors=Manning K|date=17 October 2014|newspaper=]|access-date=25 August 2017|archive-date=9 December 2022|archive-url=https://web.archive.org/web/20221209061302/https://www.washingtonpost.com/opinions/book-review-the-birth-of-the-pill-and-the-reinvention-of-sex-by-jonathan-eig/2014/10/17/914acb3c-48c0-11e4-b72e-d60a9229cc10_story.html|url-status=live}}</ref> Research started in April 1951, with reproductive physiologist ] repeating and extending the 1937 experiments of Makepeace et al. that was published in 1953 and showed that injections of progesterone suppressed ovulation in rabbits.<ref name="pmid14232795" /> In October 1951, ] refused Pincus' request to fund his hormonal contraceptive research, but retained him as a consultant and continued to provide chemical compounds to evaluate.<!-- | |||
--><ref name="maisel"/><!-- | |||
--><ref name="reed">{{cite book| vauthors = Reed J |year=1978|title=From Private Vice to Public Virtue: The Birth Control Movement and American Society Since 1830|location=New York|publisher=Basic Books|isbn=978-0-465-02582-4}}</ref><!-- | |||
--><ref name="Speroff 2009">{{cite book| vauthors = Speroff L |year=2009|title=A Good Man: Gregory Goodwin Pincus: The Man, His Story, The Birth Control Pill|location=Portland, Oregon|publisher=Arnica|isbn=978-0-9801942-9-6}}</ref> | |||
In March 1952, Sanger wrote a brief note mentioning Pincus' research to her longtime friend and supporter, ] and ] ], who visited the WFEB and its co-founder and old friend ] in June 1952 to learn about contraceptive research there. Frustrated when research stalled from PPFA's lack of interest and meager funding, McCormick arranged a meeting at the WFEB in June 1953, with Sanger and Hoagland, where she first met Pincus who committed to dramatically expand and accelerate research with McCormick providing fifty times PPFA's previous funding.<!-- | |||
--><ref name="reed"/><!-- | |||
--><ref name="fields">{{cite book| vauthors = Fields A |year=2003|title=Katharine Dexter McCormick: Pioneer for Women's Rights|location=Westport, Conn.|publisher=Prager|isbn=978-0-275-98004-7}}</ref> | |||
Pincus and McCormick enlisted ] clinical professor of ] ], chief of gynecology at the ] and an expert in the treatment of ], to lead clinical research with women. At a scientific conference in 1952, Pincus and Rock, who had known each other for many years, discovered they were using similar approaches to achieve opposite goals. In 1952, Rock induced a three-month ] "]" state in eighty of his infertility patients with continuous gradually increasing oral doses of an estrogen (5 to 30 mg/day ]) and progesterone (50 to 300 mg/day), and within the following four months 15% of the women became pregnant.<!-- | |||
--><ref name="reed"/><!-- | |||
--><ref name="mclaughlin">{{cite book| vauthors = McLaughlin L |year=1982|title=The Pill, John Rock, and the Church: The Biography of a Revolution|location=Boston|publisher=Little, Brown|isbn=978-0-316-56095-5|url=https://archive.org/details/pilljohnrock00mcla}}</ref><!-- | |||
--><ref name="rock 1957b">{{cite journal | vauthors = Rock J, Garcia CR, Pincus G | title = Synthetic progestins in the normal human menstrual cycle | journal = Recent Progress in Hormone Research | volume = 13 | pages = 323–39; discussion 339–46 | year = 1957 | pmid = 13477811 }}</ref> | |||
In 1953, at Pincus' suggestion, Rock induced a three-month anovulatory "pseudopregnancy" state in twenty-seven of his infertility patients with an oral 300 mg/day progesterone-only regimen for 20 days from ] days 5–24 followed by pill-free days to produce ].<ref name="pincus 1958b">{{cite journal | vauthors = Pincus G | title = The hormonal control of ovulation and early development | journal = Postgraduate Medicine | volume = 24 | issue = 6 | pages = 654–60 | date = December 1958 | pmid = 13614060 | doi = 10.1080/00325481.1958.11692305 }}</ref> This produced the same 15% pregnancy rate during the following four months without the ] of the previous continuous estrogen and progesterone regimen.<ref name="pincus 1958b" /> But 20% of the women experienced ] and in the first cycle ovulation was suppressed in only 85% of the women, indicating that even higher and more expensive oral doses of progesterone would be needed to initially consistently suppress ovulation.<ref name="pincus 1958b" /> Similarly, Ishikawa and colleagues found that ovulation inhibition occurred in only a "proportion" of cases with 300 mg/day oral progesterone.<ref name="Pincus1959">{{cite book| vauthors = Pincus G |title=Progestational Agents and the Control of Fertility|volume=17|year=1959|pages=307–324|issn=0083-6729|doi=10.1016/S0083-6729(08)60274-5|quote=Ishikawa et al. (1957) employing the same regime of progesterone administration also observed suppression of ovulation in a proportion of the cases taken to laparotomy. Although sexual intercourse was practised freely by the subjects of our experiments and those of Ishikawa el al., no pregnancies occurred. Since ovulation presumably took place in a proportion of cycles, the lack of any pregnancies may be due to chance, but Ishikawa et al. (1957) have presented data indicating that in women receiving oral progesterone the cervical mucus becomes impenetrable to sperm.|series=Vitamins & Hormones|publisher=Academic Press |isbn=978-0-12-709817-3}}</ref> Despite the incomplete inhibition of ovulation by oral progesterone, no pregnancies occurred in the two studies, although this could have simply been due to chance.<ref name="Pincus1959" /><ref name="pmid5848673">{{cite journal | vauthors = Diczfalusy E | title = Probable mode of action of oral contraceptives | journal = BMJ| volume = 2 | issue = 5475 | pages = 1394–9 | date = December 1965 | pmid = 5848673 | pmc = 1847181 | doi = 10.1136/bmj.2.5475.1394 | quote = At the Fifth International Conference on Planned Parenthood in Tokyo, Pincus (1955) reported an ovulation inhibition by progesterone or norethynodrel1 taken orally by women. This report indicated the beginning of a new era in the history of contraception. ... That the cervical mucus might be one of the principal sites of action was suggested by the first studies of Pincus (1956, 1959) and of Ishikawa et al. (1957). These investigators found that no pregnancies occurred in women treated orally with large doses of progesterone, though ovulation was inhibited only in some 70% of the cases studied. ... The mechanism of protection in this method—and probably in that of Pincus (1956) and of Ishikawa et al. (1957)—must involve an effect on the cervical mucus and/or endometrium and Fallopian tubes.}}</ref> However, Ishikawa et al. reported that the ] in women taking oral progesterone became impenetrable to sperm, and this may have accounted for the absence of pregnancies.<ref name="Pincus1959" /><ref name="pmid5848673" /> | |||
Progesterone was abandoned as an oral ovulation inhibitor following these clinical studies due to the high and expensive doses required, incomplete inhibition of ovulation, and the frequent incidence of breakthrough bleeding.<ref name="pmid14232795">{{cite book | vauthors = Pincus G, Bialy G | title = Drugs Used in Control of Reproduction | volume = 3 | pages = 285–313 | date = 1964 | pmid = 14232795 | doi = 10.1016/S1054-3589(08)61115-1 | quote = The original observation of Makepeace et al. (1937) that progesterone inhibited ovulation in the rabbit was substantiated by Pincus and Chang (1953). In women, 300 mg of progesterone per day taken orally resulted in ovulation inhibition in 80% of cases (Pincus, 1956). The high dosage and frequent incidence of breakthrough bleeding limited the practical application of the method. Subsequently, the utilization of potent 19-norsteroids, which could be given orally, opened the field to practical oral contraception.| series = Advances in Pharmacology | publisher = Academic Press | isbn = 978-0-12-032903-8 }}</ref><ref name="ArellanoSeipp2017">{{cite book|vauthors=Ramírez de Arellano AB, Seipp C|title=Colonialism, Catholicism, and Contraception: A History of Birth Control in Puerto Rico|url=https://books.google.com/books?id=0fs4DwAAQBAJ&pg=PT107|date=10 October 2017|publisher=University of North Carolina Press|isbn=978-1-4696-4001-3|pages=107–|quote=Still, neither of the two researchers was completely satisfied with the results. Progesterone tended to cause "premature menses", or breakthrough bleeding, in approximately 20 percent of the cycles, an occurrence that disturbed the patients and worried Rock.17 In addition, Pincus was concerned about the failure to inhibit ovulation in all the cases. Only large doses of orally administered progesterone could insure the suppression of ovulation, and these doses were expensive. The mass use of this regimen as a birth control method was thus seriously imperiled.|access-date=2 May 2019|archive-date=15 July 2023|archive-url=https://web.archive.org/web/20230715025752/https://books.google.com/books?id=0fs4DwAAQBAJ&pg=PT107|url-status=live}}</ref> Instead, researchers would turn to much more potent synthetic progestogens for use in oral contraception in the future.<ref name="pmid14232795" /><ref name="ArellanoSeipp2017" /> | |||
===Progestins to prevent ovulation=== | |||
In October 1951, Chemist ], working under the supervision of ], and the direction of ] at Syntex in Mexico City, synthesized the first oral contraceptive, which was based on highly active progestin norethisterone. ] at Searle in ] synthesized the orally highly active progestins noretynodrel (an isomer of norethisterone) in 1952 and norethandrolone in 1953.<!-- | |||
--><ref name="maisel"/> | |||
Pincus asked his contacts at pharmaceutical companies to send him chemical compounds with progestogenic activity. Chang screened nearly 200 chemical compounds in animals and found the three most promising were Syntex's ] and Searle's ] and ].<!-- | |||
--><ref name="chang">{{cite journal | vauthors = Chang MC | title = Development of the oral contraceptives | journal = American Journal of Obstetrics and Gynecology | volume = 132 | issue = 2 | pages = 217–9 | date = September 1978 | pmid = 356615 | doi = 10.1016/0002-9378(78)90928-6 }}</ref> | |||
In December 1954, Rock began the first studies of the ovulation-suppressing potential of 5–50 mg doses of the three oral progestins for three months (for 21 days per cycle—days 5–25 followed by pill-free days to produce withdrawal bleeding) in fifty of his patients with infertility in ]. Norethisterone or noretynodrel 5 mg doses and all doses of norethandrolone suppressed ovulation but caused breakthrough bleeding, but 10 mg and higher doses of norethisterone or noretynodrel suppressed ovulation without breakthrough bleeding and led to a 14% pregnancy rate in the following five months. Pincus and Rock selected Searle's noretynodrel for the first contraceptive trials in women, citing its total lack of androgenicity versus Syntex's norethisterone very slight androgenicity in animal tests.<!-- | |||
--><ref name="garcia">{{cite journal | vauthors = Garcia CR, Pincus G, Rock J | title = Effects of certain 19-nor steroids on the normal human menstrual cycle | journal = Science | volume = 124 | issue = 3227 | pages = 891–3 | date = November 1956 | pmid = 13380401 | doi = 10.1126/science.124.3227.891 | bibcode = 1956Sci...124..891R }}</ref><!-- | |||
--><ref name="rock 1957a">{{cite book| vauthors = Rock J, García CR |year=1957|chapter=Observed effects of 19-nor steroids on ovulation and menstruation|title=Proceedings of a Symposium on 19-Nor Progestational Steroids|location=Chicago|publisher=Searle Research Laboratories|pages=14–31|oclc=935295}}</ref> | |||
===Combined oral contraceptive=== | |||
Noretynodrel (and norethisterone) were subsequently discovered to be contaminated with a small percentage of the estrogen ] (an intermediate in their synthesis), with the noretynodrel in Rock's 1954–5 study containing 4–7% mestranol. When further purifying noretynodrel to contain less than 1% mestranol led to breakthrough bleeding, it was decided to intentionally incorporate 2.2% mestranol, a percentage that was not associated with breakthrough bleeding, in the first contraceptive trials in women in 1954. The noretynodrel and mestranol combination was given the proprietary name ].<!-- | |||
--><ref name="rock 1957a"/><!-- | |||
--><ref name="pincus 1958a">{{cite journal | vauthors = Pincus G, Rock J, Garcia CR, Ricewray E, Paniagua M, Rodriguez I | title = Fertility control with oral medication | journal = American Journal of Obstetrics and Gynecology | volume = 75 | issue = 6 | pages = 1333–46 | date = June 1958 | pmid = 13545267 | doi = 10.1016/0002-9378(58)90722-1 }}</ref> | |||
The first ] led by ] and ] began in April 1956 in ].<ref name="Garcia 2004">{{cite journal | vauthors = García CR | title = Development of the pill | journal = Annals of the New York Academy of Sciences | volume = 1038 | pages = 223–6 | date = December 2004 | issue = 1 | pmid = 15838117 | doi = 10.1196/annals.1315.031 | bibcode = 2004NYASA1038..223G | s2cid = 25550745 }}</ref><ref name="Strauss 2005">{{cite journal | vauthors = Strauss JF, Mastroianni L | title = In memoriam: Celso-Ramon Garcia, M.D. (1922-2004), reproductive medicine visionary | journal = Journal of Experimental & Clinical Assisted Reproduction | volume = 2 | issue = 1 | pages = 2 | date = January 2005 | pmid = 15673473 | pmc = 548289 | doi = 10.1186/1743-1050-2-2 | doi-access = free | title-link = doi }}</ref><ref name="junod">{{cite journal | vauthors = Junod SW, Marks L | title = Women's trials: the approval of the first oral contraceptive pill in the United States and Great Britain | journal = Journal of the History of Medicine and Allied Sciences | volume = 57 | issue = 2 | pages = 117–60 | date = April 2002 | pmid = 11995593 | doi = 10.1093/jhmas/57.2.117 | s2cid = 36533080 | doi-access = free | title-link = doi }}</ref> A second contraceptive trial of Enovid (and norethisterone) led by Edward T. Tyler began in June 1956 in ].<ref name="vaughan"/><ref name="tyler">{{cite journal | vauthors = Tyler ET, Olson HJ | title = Fertility promoting and inhibiting effects of new steroid hormonal substances | journal = Journal of the American Medical Association | volume = 169 | issue = 16 | pages = 1843–54 | date = April 1959 | pmid = 13640942 | doi = 10.1001/jama.1959.03000330015003 }}</ref> In January 1957, Searle held a symposium reviewing gynecologic and contraceptive research on Enovid through 1956 and concluded Enovid's estrogen content could be reduced by 33% to lower the incidence of estrogenic gastrointestinal side effects without significantly increasing the incidence of breakthrough bleeding.<!-- | |||
--><ref name="winter 1957">{{cite book| vauthors = Winter IC |year=1957|chapter=Summary|title=Proceedings of a Symposium on 19-Nor Progestational Steroids |location=Chicago|publisher=Searle Research Laboratories|pages=120–122|oclc=935295}}</ref> | |||
While these large-scale trials contributed to the initial understanding of the pill formulation's clinical effects, the ethical implications of the trials generated significant controversy. Of note is the apparent lack of both autonomy and informed consent among participants in the Puerto Rican cohort prior to the trials. Many of these participants hailed from impoverished, working-class backgrounds.<ref name=":8" /> | |||
===Public availability=== | |||
As of 2013, less than a third of countries worldwide required a prescription for oral contraceptives.<ref>{{Cite journal |last1=Grindlay |first1=Kate |last2=Burns |first2=Bridgit |last3=Grossman |first3=Daniel |date=July 2013 |title=Prescription requirements and over-the-counter access to oral contraceptives: a global review |url=https://pubmed.ncbi.nlm.nih.gov/23352799/ |journal=Contraception |volume=88 |issue=1 |pages=91–96 |doi=10.1016/j.contraception.2012.11.021 |issn=1879-0518 |pmid=23352799}}</ref> | |||
==== United States ==== | |||
] | |||
In June 1957, the ] (FDA) approved Enovid 10 mg (9.85 mg noretynodrel and 150 μg mestranol) for menstrual disorders, based on data from its use by more than 600 women. Numerous additional contraceptive trials showed Enovid at 10, 5, and 2.5 mg doses to be highly effective. In July 1959, ] filed a supplemental application to add contraception as an approved indication for 10, 5, and 2.5 mg doses of Enovid. The FDA refused to consider the application until Searle agreed to withdraw the lower dosage forms from the application. In May 1960, the FDA announced it would approve Enovid 10 mg for contraceptive use, and did so in June 1960. At that point, Enovid 10 mg had been in general use for three years and, by conservative estimate, at least half a million women had used it.<!-- | |||
--><ref name="junod"/><!-- | |||
--><ref name="marks">{{cite book| vauthors = Marks L |year=2001|title=Sexual Chemistry: A History of the Contraceptive Pill|location=New Haven|publisher=Yale University Press|isbn=978-0-300-08943-1|url=https://archive.org/details/sexualchemistryh00mark}}</ref><!-- | |||
--><ref name="winter 1970">{{cite journal | vauthors = Winter IC | title = Industrial pressure and the population problem--the FDA and the pill | journal = JAMA | volume = 212 | issue = 6 | pages = 1067–8 | date = May 1970 | pmid = 5467404 | doi = 10.1001/jama.212.6.1067 }}</ref> | |||
Although FDA-approved for contraceptive use, Searle never marketed Enovid 10 mg as a contraceptive. Eight months later, in February 1961, the FDA approved Enovid 5 mg for contraceptive use. In July 1961, Searle finally began marketing Enovid 5 mg (5 mg noretynodrel and 75 μg mestranol) to physicians as a contraceptive.<!-- | |||
--><ref name="marks"/><!-- | |||
--><ref name="watkins">{{cite book| vauthors = Watkins ES |year=1998|title=On the Pill: A Social History of Oral Contraceptives, 1950–1970|location=Baltimore|publisher = Johns Hopkins University Press|isbn=978-0-8018-5876-5}}</ref> | |||
Although the FDA approved the first oral contraceptive in 1960, contraceptives were not available to married women in all states until '']'' in 1965, and were not available to unmarried women in all states until '']'' in 1972.<!-- | |||
--><ref name="tone"/><!-- | |||
--><ref name="watkins"/> | |||
The first published case report of a ] and ] in a woman using Enavid (Enovid 10 mg in the US) at a dose of 20 mg/day did not appear until November 1961, four years after its approval, by which time it had been used by over one million women.<!-- | |||
--><ref name="junod"/><!-- | |||
--><ref name="winter 1965">{{cite journal | vauthors = Winter IC | journal = Metabolism | volume = 14 | issue = Supplement | pages = SUPPL:422–8 | date = March 1965 | pmid = 14261427 | doi = 10.1016/0026-0495(65)90029-6 | title = The incidence of thromboembolism in Enovid users }}</ref><!-- | |||
--><ref name="Jordan">{{cite journal |vauthors=Jordan WM, Anand JK | date = 18 November 1961|title=Pulmonary embolism|journal=Lancet|volume=278|issue=7212|pages=1146–1147|doi=10.1016/S0140-6736(61)91061-3}}</ref> It would take almost a decade of ] studies to conclusively establish an increased risk of ] in oral contraceptive users and an increased risk of ] and ] in oral contraceptive users who ] or have ] or other cardiovascular or cerebrovascular risk factors.<!-- | |||
--><ref name="marks"/> These risks of oral contraceptives were dramatized in the 1969 book ''The Doctors' Case Against the Pill'' by feminist journalist ] who helped arrange the 1970 ] called by Senator ].<!-- | |||
--><ref name="seaman 1969">{{cite book| vauthors = Seaman B |year=1969|title=The Doctors' Case Against the Pill|location=New York|publisher=P. H. Wyden|isbn=978-0-385-14575-6}}</ref> The hearings were conducted by senators who were all men and the witnesses in the first round of hearings were all men, leading ] and other feminists to protest the hearings and generate media attention.<!-- | |||
--><ref name="watkins"/> Their work led to mandating the inclusion of ]s with oral contraceptives to explain their possible side effects and risks to help facilitate ].<!-- | |||
--><ref>{{cite journal|vauthors=((US Food and Drug Administration))|author-link=Food and Drug Administration|date=11 June 1970 |title=Statement of policy concerning oral contraceptive labeling directed to users|journal=Federal Register|volume=35|issue=113|pages=9001–9003}}</ref><!-- | |||
--><ref>{{cite journal|vauthors=((US Food and Drug Administration))|author-link=Food and Drug Administration|date=31 January 1978|title=Oral contraceptives; requirement for labeling directed to the patient|journal=Federal Register|volume=43|issue=21|pages=4313–4334}}</ref><!-- | |||
--><ref>{{cite journal|vauthors=((US Food and Drug Administration))|author-link=Food and Drug Administration|date=25 May 1989|title=Oral contraceptives; patient package insert requirement|journal=Federal Register|volume=54|issue=100|pages=22585–22588}}</ref> Today's standard dose oral contraceptives contain an estrogen dose that is one third lower than the first marketed oral contraceptive and contain lower doses of different, more potent progestins in a variety of formulations.<!-- | |||
--><ref name="Speroff 20052"/><!-- | |||
--><ref name="marks"/><!-- | |||
--><ref name="watkins"/> | |||
Beginning in 2015, certain states passed legislation allowing pharmacists to prescribe oral contraceptives. Such legislation was considered to address physician shortages and decrease barriers to birth control for women.<ref name=":3">{{cite journal|url=https://www.pharmacytimes.com/publications/issue/2018/november2018/prescriptive-authority-for-pharmacists-oral-contraceptives|title=Prescriptive Authority for Pharmacists: Oral Contraceptives|journal=Pharmacy Times|series=November 2018 Cough, Cold, & Flu|date=19 November 2018|volume=84|issue=11|access-date=2 August 2019|archive-date=2 August 2019|archive-url=https://web.archive.org/web/20190802214230/https://www.pharmacytimes.com/publications/issue/2018/november2018/prescriptive-authority-for-pharmacists-oral-contraceptives|url-status=dead}}</ref> Pharmacists in Oregon, California, Colorado, Hawaii, Maryland, and New Mexico have authority to prescribe birth control after receiving specialized training and certification from their respective state ].<ref>{{cite web|url=https://naspa.us/resource/contraceptives/|title=Pharmacist Prescribing for Hormonal Contraceptive Medications|website=NASPA|access-date=2 August 2019|archive-date=2 August 2019|archive-url=https://web.archive.org/web/20190802214231/https://naspa.us/resource/contraceptives/|url-status=live}}</ref><ref>{{cite web|url=https://naspa.us/2017/05/pharmacists-authorized-prescribe-birth-control-states/|title=Pharmacists Authorized to Prescribe Birth Control in More States|date=4 May 2017|website=NASPA|access-date=2 August 2019|archive-date=2 August 2019|archive-url=https://web.archive.org/web/20190802214231/https://naspa.us/2017/05/pharmacists-authorized-prescribe-birth-control-states/|url-status=live}}</ref> {{As of|2024|01}}, pharmacists in 29 states can prescribe oral contraceptives.<ref>{{cite news | title=Doctor: Why I'm cheering about pharmacists in my state prescribing birth control pills | website=CNN | date=30 January 2024 | url=https://www.cnn.com/2024/01/30/opinions/pharmacist-birth-control-ranney/index.html | access-date=11 February 2024 | archive-date=8 February 2024 | archive-url=https://web.archive.org/web/20240208020319/https://www.cnn.com/2024/01/30/opinions/pharmacist-birth-control-ranney/index.html | url-status=live }}</ref> | |||
A progestin-based birth control pill (]) was approved by the FDA in 2023 and is available over the counter.<ref>{{Cite web |last=Commissioner |first=Office of the |date=2024-08-09 |title=FDA Approves First Nonprescription Daily Oral Contraceptive |url=https://www.fda.gov/news-events/press-announcements/fda-approves-first-nonprescription-daily-oral-contraceptive |access-date=2024-09-25 |website=FDA }}</ref> Estrogen-based pills still require prescriptions as of 2024. | |||
====Australia==== | |||
The first oral contraceptive introduced outside the United States was ]'s Anovlar (] 4 mg + ] 50 μg) in January 1961, in Australia.<!-- | |||
--><ref name="schering">{{cite web|url=http://www.scheringstiftung.de/scripts/index/web/en/content/index/174 |title=History of Schering AG |access-date=6 December 2007 |url-status=bot: unknown |archive-url=https://web.archive.org/web/20080415221032/http://www.scheringstiftung.de/scripts/index/web/en/content/index/174 |archive-date=15 April 2008 }}</ref> | |||
====Germany==== | |||
The first oral contraceptive introduced in Europe was Schering's ] in June 1961, in ].<!-- | |||
--><ref name="schering"/> The lower hormonal dose, still in use, was studied by the Belgian Gynaecologist ].<ref>{{cite web | vauthors = Van den Broeck K | title = Gynaecoloog Ferdinand Peeters: De vergeten stiefvader van de pil | trans-title = Gynecologist Ferdinand Peeters: The forgotten stepfather of the pil | work = ] | id = Extra #4 | date = 5 March 2010 | pages = 6–13 | language = Dutch | url = https://www.slideshare.net/MarcPeeters6/de-pil-ferdinand-peeters-de-vergeten-stiefvader-van-de-pil | access-date = 14 September 2022 | archive-date = 14 September 2022 | archive-url = https://web.archive.org/web/20220914171941/https://www.slideshare.net/MarcPeeters6/de-pil-ferdinand-peeters-de-vergeten-stiefvader-van-de-pil | url-status = live }}</ref><ref>{{cite journal|url=http://www.flanderstoday.eu/living/little-pill-could|vauthors=Hope A|date=24 May 2010|title=The little pill that could|journal=Flanders Today|access-date=28 December 2014|archive-date=1 January 2021|archive-url=https://web.archive.org/web/20210101051858/http://www.flanderstoday.eu/living/little-pill-could|url-status=dead}}</ref> | |||
====United Kingdom==== | |||
Before the mid-1960s, the United Kingdom did not require pre-marketing approval of drugs. The British ] (FPA) through its clinics was then the primary provider of family planning services in the UK and provided only contraceptives that were on its Approved List of Contraceptives (established in 1934). In 1957, Searle began marketing Enavid (Enovid 10 mg in the US) for menstrual disorders. Also in 1957, the FPA established a Council for the Investigation of Fertility Control (CIFC) to test and monitor oral contraceptives which began animal testing of oral contraceptives and in 1960 and 1961 began three large clinical trials in ], ], and ].<!-- | |||
--><ref name="junod"/><!-- | |||
--><ref name="fpa trials">{{cite journal | vauthors = Mears E | title = Clinical trials of oral contraceptives | journal = British Medical Journal | volume = 2 | issue = 5261 | pages = 1179–83 | date = November 1961 | pmid = 14471934 | pmc = 1970272 | doi = 10.1136/bmj.2.5261.1179 }}</ref> | |||
In March 1960, the Birmingham FPA began trials of noretynodrel 2.5 mg + mestranol 50 μg, but a high pregnancy rate initially occurred when the pills accidentally contained only 36 μg of mestranol—the trials were continued with noretynodrel 5 mg + mestranol 75 μg (Conovid in the UK, Enovid 5 mg in the US).<!-- | |||
--><ref name="birmingham">{{cite journal | vauthors = Eckstein P, Waterhouse JA, Bond GM, Mills WG, Sandilands DM, Shotton DM | title = The Birmingham oral contraceptive trial | journal = British Medical Journal | volume = 2 | issue = 5261 | pages = 1172–9 | date = November 1961 | pmid = 13889122 | pmc = 1970253 | doi = 10.1136/bmj.2.5261.1172 }}</ref> | |||
In August 1960, the Slough FPA began trials of noretynodrel 2.5 mg + mestranol 100 μg (Conovid-E in the UK, Enovid-E in the US).<!-- | |||
--><ref name="conovid-e">{{cite journal | vauthors = Pullen D | title = "Conovid-E" as an oral contraceptive | journal = British Medical Journal | volume = 2 | issue = 5311 | pages = 1016–9 | date = October 1962 | pmid = 13972503 | pmc = 1926317 | doi = 10.1136/bmj.2.5311.1016 }}</ref> | |||
In May 1961, the London FPA began trials of Schering's Anovlar.<!-- | |||
--><ref name="anovlar">{{cite journal | vauthors = Mears E, Grant EC | title = "Anovlar" as an oral contraceptive | journal = British Medical Journal | volume = 2 | issue = 5297 | pages = 75–9 | date = July 1962 | pmid = 14471933 | pmc = 1925289 | doi = 10.1136/bmj.2.5297.75 }}</ref> | |||
In October 1961, at the recommendation of the Medical Advisory Council of its CIFC, the FPA added Searle's Conovid to its Approved List of Contraceptives.<!-- | |||
--><ref name="conovid">{{cite journal | title = Annotations | journal = British Medical Journal | volume = 2 | issue = 5258 | pages = 1007–9 | date = October 1961 | pmid = 20789252 | pmc = 1970146 | doi = 10.1136/bmj.2.3490.1009 }}<br /> | |||
{{cite journal | doi = 10.1136/bmj.2.5258.1032 | volume=2 | title=Medical News | year=1961 | journal=BMJ | issue = 5258 | pages=1032–1034 | s2cid = 51696624 }}</ref> | |||
In December 1961, ], then ], announced that the oral contraceptive pill Conovid could be prescribed through the ] at a subsidized price of 2] per month.<!-- | |||
--><ref name="nhs">{{cite journal | vauthors = Chàvez L, Takahashi A, Yoshimoto T, Su CC, Sugawara T, Fujii Y | s2cid = 8849008 | title = Morphological changes in normal canine basilar arteries after transluminal angioplasty | journal = Neurological Research| volume = 12 | issue = 1 | pages = 12–6 | date = March 1990 | doi = 10.1136/bmj.2.5266.1584 | pmid = 1970619 }}</ref><ref>{{cite news |date=15 December 1961|title=Subsidizing birth control |magazine=]|volume=78|issue=24|page=55|url=http://www.time.com/time/magazine/article/0,9171,827091,00.html|archive-url=https://web.archive.org/web/20080205155642/http://www.time.com/time/magazine/article/0,9171,827091,00.html|url-status=dead|archive-date=5 February 2008}}</ref> | |||
In 1962, Schering's Anovlar and Searle's Conovid-E were added to the FPA's Approved List of Contraceptives.<!-- | |||
--><ref name="junod"/><!-- | |||
--><ref name="conovid-e"/><!-- | |||
--><ref name="anovlar"/> | |||
====France==== | |||
In December 1967, the ] legalized contraception in France, including the pill.<ref>{{cite journal | vauthors = Dourlen Rollier AV | title = | journal = Fertilité, Orthogénie | volume = 4 | issue = 4 | pages = 185–8 | date = October 1972 | pmid = 12306278 }}</ref> The pill is the most popular form of contraception in France, especially among young women. It accounts for 60% of the birth control used in France. The abortion rate has remained stable since the introduction of the pill.<ref>{{cite web|title=The Aids Generation: the pill takes priority?|publisher=Science Actualities|year=2000|access-date=7 September 2006|url=http://www.cite-sciences.fr/francais/ala_cite/science_actualites/sitesactu/question_actu.php?langue=an&id_article=263|archive-date=1 December 2006|archive-url=https://web.archive.org/web/20061201112340/http://www.cite-sciences.fr/francais/ala_cite/science_actualites/sitesactu/question_actu.php?langue=an&id_article=263|url-status=dead}}</ref> | |||
====Japan==== | |||
In Japan, lobbying from the ] prevented the pill from being approved for general use for nearly 40 years. The higher dose "second generation" pill was approved for use in cases of gynecological problems, but not for birth control. Two main objections raised by the association were safety concerns over long-term use of the pill, and concerns that pill use would lead to decreased use of condoms and thereby potentially increase ] (STI) rates.<!-- | |||
--><ref>{{cite press release |title=Djerassi on birth control in Japan – abortion 'yes,' pill 'no' |publisher=Stanford University News Service |date=14 February 1996 |url=http://www.stanford.edu/dept/news/pr/96/960214japanabort.html |access-date=23 August 2006 |archive-url=https://web.archive.org/web/20070106173620/http://www.stanford.edu/dept/news/pr/96/960214japanabort.html |archive-date=6 January 2007 |url-status=dead }}</ref> | |||
However, when the Ministry of Health and Welfare approved ]'s use in Japan after only six months of the application's submission, while still claiming that the pill required more data before approval, women's groups cried foul.<ref>{{cite news|url=https://www.nytimes.com/1999/04/27/science/japan-s-tale-of-two-pills-viagra-and-birth-control.html|title=Japan's Tale of Two Pills: Viagra and Birth Control|date=27 April 1999|newspaper=]|vauthors=Wudunn S|access-date=15 February 2017|archive-date=19 April 2023|archive-url=https://web.archive.org/web/20230419121521/https://www.nytimes.com/1999/04/27/science/japan-s-tale-of-two-pills-viagra-and-birth-control.html|url-status=live}}</ref> The pill was subsequently approved for use in June 1999, when Japan became the last UN member country to do so.<ref>{{cite web |vauthors=Efron S |date=3 June 1999 |title=Japan OKs Birth Control Pill After Decades of Delay |url=https://www.latimes.com/archives/la-xpm-1999-jun-03-mn-43662-story.html |access-date=31 August 2022 |website=] |archive-date=31 August 2022 |archive-url=https://web.archive.org/web/20220831131415/https://www.latimes.com/archives/la-xpm-1999-jun-03-mn-43662-story.html |url-status=live }}</ref> However, the pill has not become popular in Japan.<ref>{{cite news|url=https://www.latimes.com/archives/la-xpm-1999-jun-03-mn-43662-story.html|title=Japan OKs Birth Control Pill After Decades of Delay|vauthors=Efron S|date=3 June 1999|newspaper=]|access-date=15 January 2015|archive-date=10 August 2014|archive-url=https://web.archive.org/web/20140810011111/http://articles.latimes.com/1999/jun/03/news/mn-43662|url-status=live}}</ref> According to estimates, only 1.3 percent of 28 million Japanese females of childbearing age use the pill, compared with 15.6 percent in the United States. The pill prescription guidelines the government has endorsed require pill users to visit a doctor every three months for pelvic examinations and undergo tests for sexually transmitted diseases and uterine cancer. In the United States and Europe, in contrast, an annual or bi-annual clinic visit is standard for pill users. However, beginning as far back as 2007, many Japanese ]s have required only a yearly visit for pill users, with multiple checks a year recommended only for those who are older or at increased risk of side effects.<!-- | |||
--><ref name="cbs">{{cite news |vauthors=Hayashi A |url=https://www.cbsnews.com/news/japanese-women-shun-the-pill/ |title=Japanese Women Shun The Pill |work=CBS News |date=20 August 2004 |access-date=12 June 2006 |archive-date=29 June 2006 |archive-url=https://web.archive.org/web/20060629074107/http://www.cbsnews.com/stories/2004/08/20/health/main637523.shtml |url-status=live }}</ref> As of 2004, condoms accounted for 80% of birth control use in Japan, and this may explain Japan's comparatively low rates of AIDS.<ref name="cbs"/> | |||
==Society and culture== | |||
The pill was approved by the US FDA in the early 1960s; its use spread rapidly in the late part of that decade, generating an enormous social impact. '']'' magazine placed the pill on its cover in April 1967.<ref>{{cite magazine|url=http://www.time.com/time/covers/0,16641,1101670407,00.html |archive-url=https://web.archive.org/web/20050219124757/https://time.com/time/covers/0,16641,1101670407,00.html|archive-date=19 February 2005|title=The Pill |magazine=Time |date=7 April 1967 |url-status=dead |access-date=16 June 2020}}</ref><ref>{{cite web|vauthors=Westhoff C|date=15 December 2015|title=How Obamacare Explains the Rising Popularity of IUDs|url=https://www.publichealth.columbia.edu/public-health-now/news/how-obamacare-explains-rising-popularity-iuds|access-date=17 June 2020|website=Public Health Now at Columbia University|archive-date=23 December 2021|archive-url=https://web.archive.org/web/20211223112423/https://www.publichealth.columbia.edu/public-health-now/news/how-obamacare-explains-rising-popularity-iuds|url-status=live}}</ref> In the first place, it was more effective than most previous reversible methods of birth control, giving women unprecedented control over their fertility.<ref>{{cite web| url = https://www.plannedparenthood.org/files/1514/3518/7100/Pill_History_FactSheet.pdf| title = The Birth Control Pill: A History| access-date = 20 October 2018| archive-date = 9 December 2021| archive-url = https://web.archive.org/web/20211209221721/https://www.plannedparenthood.org/files/1514/3518/7100/Pill_History_FactSheet.pdf| url-status = dead}}</ref> Its use was separate from intercourse, requiring no special preparations at the time of sexual activity that might interfere with spontaneity or sensation, and the choice to take the pill was a private one. This combination of factors served to make the pill immensely popular within a few years of its introduction.<ref name="asbell"/><ref name="watkins"/> | |||
], among others, argue that this new contraceptive technology was a key player in forming women's modern economic role, in that it prolonged the age at which women first married allowing them to invest in education and other forms of human capital as well as generally become more career-oriented. Soon after the birth control pill was legalized, there was a sharp increase in college attendance and graduation rates for women.<ref>{{cite journal |author1-first=Claudia |author1-last=Goldin |author1-link=Claudia Goldin |author2-first=Lawrence F. |author2-last=Katz |author2-link=Lawrence F. Katz |year=2002 |title=The Power of the Pill: Oral Contraceptives and Women's Career and Marriage Decisions |journal=Journal of Political Economy |volume=110 |issue=4 |pages=730–770 |doi=10.1086/340778 |url=http://dash.harvard.edu/bitstream/handle/1/2624453/Goldin_PowerPill.pdf |citeseerx=10.1.1.473.6514 |s2cid=221286686 |access-date=1 November 2017 |archive-date=29 May 2023 |archive-url=https://web.archive.org/web/20230529052311/https://dash.harvard.edu/bitstream/handle/1/2624453/Goldin_PowerPill.pdf |url-status=live }}</ref> From an economic point of view, the birth control pill reduced the cost of staying in school. The ability to control fertility without sacrificing sexual relationships allowed women to make long term educational and career plans.<ref>{{cite news|url=http://equalityarchive.com/history/the-pill/|title=The Pill|date=1 March 2017|work=Equality Archive|access-date=9 March 2017|archive-date=23 December 2021|archive-url=https://web.archive.org/web/20211223112416/http://equalityarchive.com/history/the-pill/|url-status=dead}}</ref> | |||
Because the pill was so effective, and soon so widespread, it also heightened the debate about the moral and health consequences of ] and promiscuity. Never before had sexual activity been so divorced from reproduction. For a couple using the pill, intercourse became purely an expression of love, or a means of physical pleasure, or both; but it was no longer a means of reproduction. While this was true of previous contraceptives, their relatively high failure rates and their less widespread use failed to emphasize this distinction as clearly as did the pill. The spread of oral contraceptive use thus led many religious figures and institutions to debate the proper role of sexuality and its relationship to procreation. The ] in particular, after studying the phenomenon of oral contraceptives, re-emphasized the stated teaching on birth control in the 1968 papal encyclical '']''. The encyclical reiterated the established Catholic teaching that artificial contraception distorts the nature and purpose of sex.<ref>{{cite book| vauthors = Weigel G | title=The Courage to Be Catholic: Crisis, Reform, and the Renewal of the Church | year=2002 | publisher=Basic Books}}</ref> On the other side Anglican and other Protestant churches, such as the ] (EKD), accepted the combined oral contraceptive pill.<ref>{{cite web|url=http://www.focus.de/regional/muenchen/kirche-pillenverbot-bleibt-streitfrage-zwischen-den-konfessionen_id_4426875.html|title=Pillenverbot bleibt Streitfrage zwischen den Konfessionen|work=Focus Online|access-date=22 March 2016|archive-date=6 July 2021|archive-url=https://web.archive.org/web/20210706162710/https://www.focus.de/regional/muenchen/kirche-pillenverbot-bleibt-streitfrage-zwischen-den-konfessionen_id_4426875.html|url-status=live}}</ref> | |||
The ] began hearings on the pill in 1970 and where different viewpoints were heard from medical professionals. Dr. Michael Newton, President of the College of Obstetricians and Gynecologists said: | |||
{{blockquote| | |||
The evidence is not yet clear that these still do in fact cause cancer or related to it. The FDA Advisory Committee made comments about this, that if there wasn't enough evidence to indicate whether or not these pills were related to the development of cancer, and I think that's still thin; you have to be cautious about them, but I don't think there is clear evidence, either one way or the other, that they do or don't cause cancer.<ref name="UPI">{{cite web |url=http://www.upi.com/Audio/Year_in_Review/Events-of-1970/Apollo-13/12303235577467-2/#title |title=1970 Year in Review |work=UPI |access-date=8 April 2009 |archive-date=23 May 2009 |archive-url=https://web.archive.org/web/20090523010239/http://www.upi.com/Audio/Year_in_Review/Events-of-1970/Apollo-13/12303235577467-2/#title |url-status=live }}</ref> | |||
}} | |||
Another physician, Dr. Roy Hertz of the ], said that anyone who takes this should know of "our knowledge and ignorance in these matters" and that all women should be made aware of this so they can decide to take the pill or not.<ref name="UPI"/> | |||
The ] at the time, ], announced the federal government had accepted a compromise warning statement which would accompany all sales of birth control pills.<ref name="UPI"/> | |||
==Result on popular culture== | |||
The introduction of the birth control pill in 1960 allowed more women to find employment opportunities and further their education. As a result of women getting more jobs and an education, their husbands had to start taking over household tasks like cooking.<ref>{{cite journal| vauthors = Winnick C |date=1968|title=The Beige Epoch: Depolarization of Sex Roles in America|jstor=1037799|journal=The Annals of the American Academy of Political and Social Science|volume=376|pages=18–24|doi=10.1177/000271626837600103 |s2cid=145158114 }}</ref> Wanting to stop the change that was occurring in terms of gender norms in an American household, many films, television shows, and other popular culture items portrayed what an ideal American family should be. Below are listed some examples: | |||
===Poem=== | |||
* '']'' is the title poem of a 1968 collection by ].<ref>{{cite journal|url=http://www.brautigan.net/pill.html|first=Richard|last=Brautigan|title=The Pill versus The Springhill Mine Disaster|website=Brautigan|date=2007 |access-date=1 December 2017|doi=10.7273/nvgh-ca61|archive-date=14 January 2009|archive-url=https://web.archive.org/web/20090114231634/http://www.brautigan.net/pill.html|url-status=dead}}</ref> | |||
===Music=== | |||
* Singer ] commented on how women no longer had to choose between a relationship and a career in her 1974 album with a song entitled "]", which told the story of a married woman's use of the drug to liberate herself from her traditional role as wife and mother.<ref>{{cite web|url=http://gender.stanford.edu/news/2011/pill-and-marriage-revolution|title=The pill and the marriage revolution |website=The Clayman Institute for Gender Research |access-date=1 December 2017|archive-url=https://web.archive.org/web/20171212220618/http://gender.stanford.edu/news/2011/pill-and-marriage-revolution|archive-date=12 December 2017|url-status=dead}}</ref> | |||
==Environmental impact== | |||
A woman using combined oral contraceptive pills excretes in her ] and ] natural ]s, ] (E1) and ] (E2), and synthetic estrogen ] (EE2).<ref name="williams">{{cite journal | vauthors = Williams RJ, Johnson AC, Smith JJ, Kanda R | title = Steroid estrogens profiles along river stretches arising from sewage treatment works discharges | journal = Environmental Science & Technology | volume = 37 | issue = 9 | pages = 1744–50 | date = May 2003 | pmid = 12775044 | doi = 10.1021/es0202107 | bibcode = 2003EnST...37.1744W }}</ref> | |||
These hormones can pass through ] plants and into rivers.<ref>{{cite journal |title=Not Quite Worry-Free |journal=Environment |volume=45 |issue=1 |pages=6–7 |date=Jan–Feb 2003|doi=10.1080/00139150309604545|s2cid=218496430 }}</ref> Other forms of contraception, such as the ], use the same synthetic estrogen (EE2) that is found in combined oral contraceptive pills, and can add to the hormonal concentration in the water when flushed down the toilet.<ref>{{cite journal | vauthors = Batt S |title=Pouring Drugs Down the Drain |journal=Herizons |volume=18 |issue=4 |pages=12–3 |date=Spring 2005 |url=http://www.macalester.edu/environmentalstudies/students/projects/endocrinedisrupterswebsite/articles/16183034.pdf |access-date=4 December 2011 |archive-url=https://web.archive.org/web/20120315121943/http://www.macalester.edu/environmentalstudies/students/projects/endocrinedisrupterswebsite/articles/16183034.pdf |archive-date=15 March 2012 |url-status=dead }}</ref> This ] is shown to play a role in causing ], which affects the sexual development and reproduction of wild ] populations in segments of streams contaminated by treated sewage effluents.<ref name=williams/><ref name="zeilinger">{{cite journal | vauthors = Zeilinger J, Steger-Hartmann T, Maser E, Goller S, Vonk R, Länge R | title = Effects of synthetic gestagens on fish reproduction | journal = Environmental Toxicology and Chemistry | volume = 28 | issue = 12 | pages = 2663–70 | date = December 2009 | pmid = 19469587 | doi = 10.1897/08-485.1 | doi-access = free | title-link = doi }}</ref> | |||
A study done in British rivers supported the hypothesis that the incidence and the severity of intersex wild fish populations were significantly correlated with the concentrations of the E1, E2, and EE2 in the rivers.<ref name=williams/> | |||
A review of ] performance found estrogen removal rates varied considerably but averaged 78% for estrone, 91% for estradiol, and 76% for ethinylestradiol (] effluent concentrations are between those of estrone and estradiol, but estriol is a much less potent ] to fish).<ref>{{cite journal | vauthors = Johnson AC, Williams RJ, Simpson P, Kanda R | title = What difference might sewage treatment performance make to endocrine disruption in rivers? | journal = Environmental Pollution | volume = 147 | issue = 1 | pages = 194–202 | date = May 2007 | pmid = 17030080 | doi = 10.1016/j.envpol.2006.08.032 | bibcode = 2007EPoll.147..194J }}</ref> | |||
Several studies have suggested that reducing human population growth through increased access to ], including birth control pills, can be an effective strategy for ] as well as ].<ref name=Potts>{{cite news| vauthors = Potts M, Marsh L |title=THE POPULATION FACTOR: How does it relate to climate change?|url=http://ourplanet.com/climate-adaptation/Potts_and_Marsh.pdf|access-date=22 June 2015|agency=OurPlanet.com |date=February 2010 |archive-url= https://web.archive.org/web/20160304065641/http://ourplanet.com/climate-adaptation/Potts_and_Marsh.pdf|archive-date=4 March 2016|url-status=dead|author1-link=Malcolm Potts}}</ref><ref>{{cite web|vauthors=Cafaro P|title=Alternative Climate Wedges – Population Wedge|url=http://www.philipcafaro.com/alternative-climate-wedges/population-wedge|website=Philip Cafaro|access-date=22 June 2015|archive-date=22 June 2015|archive-url=https://web.archive.org/web/20150622072109/http://www.philipcafaro.com/alternative-climate-wedges/population-wedge|url-status=live}}</ref> According to Thomas Wire, contraception is the 'greenest technology' because of its cost-effectiveness in combating ] — each $7 spent on contraceptives would reduce global carbon emissions by 1 tonne over four decades, while achieving the same result with low-carbon technologies would require $32.<ref>{{cite news|vauthors=Wire T|title=Contraception is 'greenest' technology|url=http://www.lse.ac.uk/newsAndMedia/news/archives/2009/09/Contraception.aspx|access-date=22 June 2015|publisher=]|date=10 September 2009|archive-date=22 June 2015|archive-url=https://web.archive.org/web/20150622070553/http://www.lse.ac.uk/newsAndMedia/news/archives/2009/09/Contraception.aspx|url-status=live}}</ref> | |||
The ] approved it for clinical use on ], ]. It took various high-profile court cases, such as '']'' and '']'', to make it available to all women of reproductive age. | |||
== |
== See also == | ||
* ] | |||
The pill was rendered legal in 1967 after the introduction of the ]. | |||
* ] (HRT) | |||
* ] | |||
* ] | |||
* ] | |||
== |
== References == | ||
{{Reflist}} | |||
In ], continual debates over safety and ] risks (raised over concerns that oral contraceptive use will diminish condom use) have led to the pill being banned for nearly 40 years, and its recent introduction has seen very few women take it up{{ref|4}}. | |||
== Further reading == | |||
==References== | |||
* {{cite journal | vauthors = Black A, Guilbert E, Costescu D, Dunn S, Fisher W, Kives S, Mirosh M, Norman WV, Pymar H, Reid R, Roy G, Varto H, Waddington A, Wagner MS, Whelan AM | title = No. 329-Canadian Contraception Consensus Part 4 of 4 Chapter 9: Combined Hormonal Contraception | journal = Journal of Obstetrics and Gynaecology Canada | volume = 39 | issue = 4 | pages = 229–268.e5 | date = April 2017 | pmid = 28413042 | doi = 10.1016/j.jogc.2016.10.005 }} | |||
# {{note|1}} Pearl R. Factors in human fertility and their statistical evaluation. Lancet 1933;2:607-611. | |||
# {{note|2}} Data based on article: Audet MC, Moreau M, Koltun WD, Waldbaum AS, Shangold G, Fisher AC, Creasy GW. Evaluation of contraceptive efficacy and cycle control of a transdermal contraceptive patch vs an oral contraceptive: a randomized controlled trial. JAMA. 2001;285(18):2347-2354. (http://www.contraceptiononline.org/slides/slide01.cfm?q=pearl+index&dpg=6) | |||
# {{note|3}} Alan Guttmacher Institute, Facts in Brief, First Year Contraceptive Failure Rates (http://www.agi-usa.org/pubs/fb_contr_use.html). Retrieved May 10, 2005. | |||
# {{note|4}} Hormonal contraceptive use in Japan, 2004 news article. (http://www.cbsnews.com/stories/2004/08/20/health/main637523.shtml) | |||
# {{note|5}} Reduction in ovarian & endometrial cancer study. http://content.nejm.org/cgi/content/abstract/316/11/650 | |||
== |
== External links == | ||
* —CBC Digital Archives | |||
* ] | |||
* —slide show by '']'' magazine | |||
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{{Sexual revolution}} | |||
{{Portal bar | Medicine}} | |||
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Latest revision as of 05:01, 28 December 2024
Birth control method which is taken orally "The pill" redirects here. For other uses, see Pill (disambiguation). This article is about daily use of COC. For occasional use, see Emergency contraception.
Combined oral contraceptive pill | |
---|---|
Background | |
Type | Hormonal |
First use | 1960; 65 years ago (1960) (United States) |
Failure rates (first year) | |
Perfect use | 0.3% |
Typical use | 9% |
Usage | |
Duration effect | 1–4 days |
Reversibility | Yes |
User reminders | Taken within same 24-hour window each day |
Clinic review | 6 months |
Advantages and disadvantages | |
STI protection | No |
Periods | Regulated, and often lighter and less painful |
Weight | No proven effect |
Benefits | Evidence for reduced mortality risk and reduced death rates in all cancers. Possible reduced ovarian and endometrial cancer risks. May treat acne, PCOS, PMDD, endometriosis |
Risks | Possible small increase in some cancers. Small reversible increase in DVTs; stroke, cardiovascular disease |
Medical notes | |
Affected by the antibiotic rifampicin, the herb Hypericum (St. Johns Wort) and some anti-epileptics, also vomiting or diarrhea. Caution if history of migraines. |
The combined oral contraceptive pill (COCP), often referred to as the birth control pill or colloquially as "the pill", is a type of birth control that is designed to be taken orally by women. It is the oral form of combined hormonal contraception. The pill contains two important hormones: a progestin (a synthetic form of the hormone progestogen / progesterone) and estrogen (usually ethinylestradiol or 17β estradiol). When taken correctly, it alters the menstrual cycle to eliminate ovulation and prevent pregnancy.
Combined oral contraceptive pills were first approved for contraceptive use in the United States in 1960, and remain a very popular form of birth control. They are used by more than 100 million women worldwide including about 9 million women in the United States. From 2015 to 2017, 12.6% of women aged 15–49 in the US reported using combined oral contraceptive pills, making it the second most common method of contraception in this age range (female sterilization is the most common method). Use of combined oral contraceptive pills, however, varies widely by country, age, education, and marital status. For example, one third of women aged 16–49 in the United Kingdom use either the combined pill or progestogen-only pill (POP), compared with less than 3% of women in Japan (as of 1950–2014).
Combined oral contraceptives are on the World Health Organization's List of Essential Medicines. The pill was a catalyst for the sexual revolution.
Background
Oral contraceptives
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Hormonal oral contraceptives are preventive medications taken orally by females to avoid pregnancy by manipulating their sex hormones. The first oral contraceptive was approved by the US Food and Drug Administration (FDA) and sold to the market in 1960. There are two types of hormonal oral contraceptives, namely Combined Oral Contraceptives and Progesterone Only Pills. Oral contraceptives, be it combined or progesterone-only, can effectively prevent pregnancy by regulating hormonal changes in the menstrual cycle, inhibiting ovulation, and altering cervical mucus to impede sperm mobility; combined pills have extra effects in menstrual cycle regulation and menstrual pain relief. Common off-label uses include menstrual suppression and acne relief, with Combined Oral Contraceptives having additional benefits in relieving menstrual migraine.
Variants
Progesterone-only pills (POPs) utilise progestin, the synthetic form of progesterone, as the only active pharmaceutical ingredient in the formulation. In the US, drospirenone and norethindrone are the most commonly used compounds in formulations.
Combined oral contraceptives (COCs) are commonly classified into generations, referring to their order of development in history. This discussion may also help identify some key features in a variety of products. According to EMA, the first generation of combined oral contraceptives, which made use of a high concentration of oestrogen only, were those invented in the 1960s. In the second generation of products, progestogens were introduced into the formulation while the concentration of oestrogen was reduced. Starting from the 1990s, the progression in the development of combined oral contraceptives has been directed towards varying the type of progestogen incorporated. These products are referred as the third and fourth generation.
Oestrogen ingredients: estradiol, ethinylestradiol, estetrol.
1st generation progestin: norethindrone acetate, ethynodiol diacetate, lynestrenol, norethynodrel.
2nd generation progestin: levonorgestrel, dl-norgestrel.
3rd generation progestin: norgestimate, gestodene, desogestrel.
The menstrual cycle
Hormonal oral contraceptives (HOCs) interact with hormonal changes in the menstrual cycle in females to prevent ovulation, and hence achieve contraception. In a 28-day menstrual cycle, there are the proliferative phase, ovulation, and then the secretory phase.
Menstruation marks the beginning of proliferative phase in day 1-14. In this period, the pituitary gland located near the brain secretes follicle-stimulating hormone (FSH) into the bloodstream to signal the development of follicle in ovary in the female reproductive system. While follicle serves as the chamber of ovum development, it secretes Oestrogen, a hormone that not only triggers the thickening of uterine lining in preparation for implantation, but also inhibits the secretion of FSH in pituitary via a negative feedback mechanism.
Specifically in ovulation, transient positive feedback by Oestrogen on FSH and Luteinising Hormone (LH) secretion from pituitary is permitted so that the release of mature ovum from follicle is triggered.
In secretory phase on day 14-28, this follicle then transforms into corpus luteum and continues releasing Oestrogen with Progesterone into bloodstream. While Oestrogen and Progesterone primarily aid the maintenance of thickness in uterine lining, the negative feedback in pituitary allows them to inhibit FSH and LH secretion. In the absence of LH, corpus luteum degenerates and ultimately causes blood Oestrogen and Progesterone levels to decline. Without these thickness maintaining agents, uterine lining breaks down and hence the presentation of menstruation.
Mechanism of action
Progesterone and Oestrogen, either in combination or with Progesterone-only, are the active pharmaceutical ingredients found in a hormonal oral contraceptive formulation. These medications are orally administered for systemic absorption to exert their effects. An artificially enhanced level of Progesterone throughout the menstrual cycle inhibits the pituitary secretion of FSH and LH such that their actions in stimulating follicular development and ovulation are prevented. Similarly, a boosted Oestrogen level activates the negative feedback mechanism in reducing FSH secretion from pituitary and therefore prevents follicular development. In the absence of a developed follicle, ovulation cannot occur so that fertilisation is made impossible and contraception is achieved. In comparison, Progesterone is more efficacious than Oestrogen not only because of its additional action in impeding LH, but also its ability to modulate the cervical mucus into sperm-repellent.
Combined oral contraceptive pills were developed to prevent ovulation by suppressing the release of gonadotropins. Combined hormonal contraceptives, including combined oral contraceptive pills, inhibit follicular development and prevent ovulation as a primary mechanism of action.
Under normal circumstances, luteinizing hormone (LH) stimulates the theca cells of the ovarian follicle to produce androstenedione. The granulosa cells of the ovarian follicle then convert this androstenedione to estradiol. This conversion process is catalyzed by aromatase, an enzyme produced as a result of follicle-stimulating hormone (FSH) stimulation. In individuals using oral contraceptives, progestogen negative feedback decreases the pulse frequency of gonadotropin-releasing hormone (GnRH) release by the hypothalamus, which decreases the secretion of FSH and greatly decreases the secretion of LH by the anterior pituitary. Decreased levels of FSH inhibit follicular development, preventing an increase in estradiol levels. Progestogen negative feedback and the lack of estrogen positive feedback on LH secretion prevent a mid-cycle LH surge. Inhibition of follicular development and the absence of an LH surge prevent ovulation.
Estrogen was originally included in oral contraceptives for better cycle control (to stabilize the endometrium and thereby reduce the incidence of breakthrough bleeding), but was also found to inhibit follicular development and help prevent ovulation. Estrogen negative feedback on the anterior pituitary greatly decreases the secretion of FSH, which inhibits follicular development and helps prevent ovulation.
Another primary mechanism of action of all progestogen-containing contraceptives is inhibition of sperm penetration through the cervix into the upper genital tract (uterus and fallopian tubes) by decreasing the water content and increasing the viscosity of the cervical mucus.
The estrogen and progestogen in combined oral contraceptive pills have other effects on the reproductive system, but these have not been shown to contribute to their contraceptive efficacy:
- Slowing tubal motility and ova transport, which may interfere with fertilization.
- Endometrial atrophy and alteration of metalloproteinase content, which may impede sperm motility and viability, or theoretically inhibit implantation.
- Endometrial edema, which may affect implantation.
Insufficient evidence exists on whether changes in the endometrium could actually prevent implantation. The primary mechanisms of action are so effective that the possibility of fertilization during combined oral contraceptive pill use is very small. Since pregnancy occurs despite endometrial changes when the primary mechanisms of action fail, endometrial changes are unlikely to play a significant role, if any, in the observed effectiveness of combined oral contraceptive pills.
Formulations
Main article: Oral contraceptive formulationsOral contraceptives come in a variety of formulations, some containing both estrogen and progestins, and some only containing progestin. Doses of component hormones also vary among products, and some pills are monophasic (delivering the same dose of hormones each day) while others are multiphasic (doses vary each day). combined oral contraceptive pills can also be divided into two groups, those with progestins that possess androgen activity (norethisterone acetate, etynodiol diacetate, levonorgestrel, norgestrel, norgestimate, desogestrel, gestodene) or antiandrogen activity (cyproterone acetate, chlormadinone acetate, drospirenone, dienogest, nomegestrol acetate).
Combined oral contraceptive pills have been somewhat inconsistently grouped into "generations" in the medical literature based on when they were introduced.
- First generation combined oral contraceptive pills are sometimes defined as those containing the progestins noretynodrel, norethisterone, norethisterone acetate, or etynodiol acetate; and sometimes defined as all combined oral contraceptive pills containing ≥ 50 μg ethinylestradiol.
- Second generation combined oral contraceptive pills are sometimes defined as those containing the progestins norgestrel or levonorgestrel; and sometimes defined as those containing the progestins norethisterone, norethisterone acetate, etynodiol acetate, norgestrel, levonorgestrel, or norgestimate and < 50 μg ethinylestradiol.
- Third generation combined oral contraceptive pills are sometimes defined as those containing the progestins desogestrel or gestodene; and sometimes defined as those containing desogestrel, gestodene, or norgestimate.
- Fourth generation combined oral contraceptive pills are sometimes defined as those containing the progestin drospirenone; and sometimes defined as those containing drospirenone, dienogest, or nomegestrol acetate.
Medical use
Contraceptive use
Combined oral contraceptive pills are a type of oral medication that were originally designed to be taken every day at the same time of day in order to prevent pregnancy. There are many different formulations or brands, but the average pack is designed to be taken over a 28-day period (also known as a cycle). For the first 21 days of the cycle, users take a daily pill that contains two hormones, estrogen and progestogen. During the last 7 days of the cycle, users take daily placebo (biologically inactive) pills and these days are considered hormone-free days. Although these are hormone-free days, users are still protected from pregnancy during this time.
Some combined oral contraceptive pill packs only contain 21 pills and users are advised to take no pills for the last 7 days of the cycle. Other combined oral contraceptive pill formulations contain 91 pills, consisting of 84 days of active hormones followed by 7 days of placebo (Seasonale). Combined oral contraceptive pill formulations can contain 24 days of active hormone pills followed by 4 days of placebo pills (e.g. Yaz 28 and Loestrin 24 Fe) as a means to decrease the severity of placebo effects. These combined oral contraceptive pills containing active hormones and a placebo/hormone-free period are called cyclic combined oral contraceptive pills. Once a pack of cyclical combined oral contraceptive pill treatment is completed, users start a new pack and new cycle.
Most monophasic combined oral contraceptive pills can be used continuously such that patients can skip placebo days and continuously take hormone active pills from a combined oral contraceptive pill pack. One of the most common reasons users do this is to avoid or diminish withdrawal bleeding. The majority of women on cyclic combined oral contraceptive pills have regularly scheduled withdrawal bleeding, which is vaginal bleeding mimicking users' menstrual cycles with the exception of lighter menstrual bleeding compared to bleeding patterns prior to combined oral contraceptive pill commencement. As such, a study reported that out of 1003 women taking combined oral contraceptive pills approximately 90% reported regularly scheduled withdrawal bleeds over a 90-day standard reference period. Withdrawal bleeding usually occurs during the placebo, hormone-free days. Therefore, avoiding placebo days can diminish withdrawal bleeding among other placebo effects.
Regimen
This section demonstrates the overall rationalisation of dosing route and intervals of hormonal oral contraceptives, please seek advice and follow instructions from healthcare professionals in administering specific hormonal oral contraceptives. Considering the menstrual cycle as a 28-day cycle, hormonal oral contraceptives are available in packages of 21, 28, or 91 tablets. These pills have typically undergone unit dose optimisation so that they follow the administration pattern of once daily, every day or almost every day on a regular basis. Since they are formulated into daily doses, it is recommended that the medication should be taken at the same time every day to maximise efficacy.
For 21-tablet packs, the general instruction is to take one tablet daily for 21 days, followed by a 7-day blank interval without taking hormonal oral contraceptives before initiating another 21-tablet pack. For 28-tablet packs, the 1st tablet from a new pack should be taken on the next day when the 28th tablet from an old pack was finished. While the 7-day blank period does not apply to 28-tablet packs, they will likely include tablets in distinctive colours indicating that they have an alternate amount of active ingredients, otherwise inactive ingredient or folate supplement only. The instruction for 91-tablet pack follows that of 28-tablet packs with some colour-distinguishable tablets which contain different amounts of medicine or supplement.
To acquire immediate contraceptive effects, the initiation of hormonal oral contraceptive dosing is recommended within the 1st-5th day from menstruation in order to discard other means of contraception. Specific to Progesterone only pills, even if dosing is initiated within five days, backup contraception is suggested in the first 48 hours since the first pill. In the case of dosing initiated after the 5th day from menstruation, effects usually take place after seven days and other contraceptive methods should remain in place until then.
Effectiveness
If used exactly as instructed, the estimated risk of getting pregnant is 0.3% which means that about 3 in 1000 women on combined oral contraceptive pills will become pregnant within one year. However, typical use of combined oral contraceptive pills by users often consists of timing errors, forgotten pills, or unwanted side effects. With typical use, the estimated risk of getting pregnant is about 9% which means that about 9 in 100 women on combined oral contraceptive pills will become pregnant in one year. The perfect use failure rate is based on a review of pregnancy rates in clinical trials, and the typical use failure rate is based on a weighted average of estimates from the 1995 and 2002 US National Surveys of Family Growth (NSFG), corrected for underreporting of abortions.
Several factors account for typical use effectiveness being lower than perfect use effectiveness:
- Mistakes on part of those providing instructions on how to use the method
- Mistakes on part of the user
- Conscious user non-compliance with instructions
For instance, someone using combined oral contraceptive pills might have received incorrect information by a health care provider about medication frequency, forgotten to take the pill one day or not gone to the pharmacy in time to renew a combined oral contraceptive pill prescription.
Combined oral contraceptive pills provide effective contraception from the very first pill if started within five days of the beginning of the menstrual cycle (within five days of the first day of menstruation). If started at any other time in the menstrual cycle, combined oral contraceptive pills provide effective contraception only after 7 consecutive days of use of active pills, so a backup method of contraception (e.g. condoms) must be used in the interim.
The effectiveness of combined oral contraceptive pills appears to be similar whether the active pills are taken continuously or if they are taken cyclically. Contraceptive efficacy, however, could be impaired by numerous means. Factors that may contribute to a decrease in effectiveness:
- Missing more than one active pill in a packet,
- Delay in starting the next packet of active pills (i.e., extending the pill-free, inactive pill or placebo pill period beyond 7 days),
- Intestinal malabsorption of active pills due to vomiting or diarrhea,
- Drug-drug interactions among combined oral contraceptive pills and other medications of the user that decrease contraceptive estrogen and/or progestogen levels.
In any of these instances, a backup contraceptive method should be used until hormone active pills have been consistently taken for 7 consecutive days or drug-drug interactions or underlying illnesses have been discontinued or resolved. According to the US Centers for Disease Control and Prevention (CDC) guidelines, a pill is considered "late" if a user takes the pill after the user's normal medication time, but no longer than 24 hours after this normal time. If 24 hours or more have passed since the time the user was supposed to take the pill, then the pill is considered "missed". CDC guidelines discuss potential next steps for users who missed their pill or took it late.
Role of placebo pills
The role of the placebo pills is two-fold: to allow the user to continue the routine of taking a pill every day and to simulate the average menstrual cycle. By continuing to take a pill every day, users remain in the daily habit even during the week without hormones. Failure to take pills during the placebo week does not impact the effectiveness of the pill, provided that daily ingestion of active pills is resumed at the end of the week.
The placebo, or hormone-free, week in the 28-day pill package simulates an average menstrual cycle, though the hormonal events during a pill cycle are significantly different from those of a normal ovulatory menstrual cycle. Because the pill suppresses ovulation (to be discussed more in the Mechanism of action section), birth control users do not have true menstrual periods. Instead, it is the lack of hormones for a week that causes a withdrawal bleed. The withdrawal bleeding that occurs during the break from active pills has been thought to be reassuring, a physical confirmation of not being pregnant. The withdrawal bleeding is also predictable. Unexpected breakthrough bleeding can be a possible side effect of longer term active regimens.
Since it is not uncommon for menstruating women to become anemic, some placebo pills may contain an iron supplement. This replenishes iron stores that may become depleted during menstruation. As well, birth control pills, such as combined oral contraceptive pills, are sometimes fortified with folic acid as it is recommended to take folic acid supplementation in the months prior to pregnancy to decrease the likelihood of neural tube defect in infants.
No or less frequent placebos
Main article: Extended cycle combined oral contraceptive pillIf the pill formulation is monophasic, meaning each hormonal pill contains a fixed dose of hormones, it is possible to skip withdrawal bleeding and still remain protected against conception by skipping the placebo pills altogether and starting directly with the next packet. Attempting this with bi- or tri-phasic pill formulations carries an increased risk of breakthrough bleeding and may be undesirable. It will not, however, increase the risk of getting pregnant.
Starting in 2003, women have also been able to use a three-month version of the pill. Similar to the effect of using a constant-dosage formulation and skipping the placebo weeks for three months, Seasonale gives the benefit of less frequent periods, at the potential drawback of breakthrough bleeding. Seasonique is another version in which the placebo week every three months is replaced with a week of low-dose estrogen.
A version of the combined pill has also been packaged to eliminate placebo pills and withdrawal bleeds. Marketed as Anya or Lybrel, studies have shown that after seven months, 71% of users no longer had any breakthrough bleeding, the most common side effect of going longer periods of time without breaks from active pills.
While more research needs to be done to assess the long term safety of using combined oral contraceptive pills continuously, studies have shown there may be no difference in short term adverse effects when comparing continuous use versus cyclic use of birth control pills.
Non-contraceptive use
The hormones in the pill have also been used to treat other medical conditions, such as polycystic ovary syndrome (PCOS), endometriosis, adenomyosis, acne, hirsutism, amenorrhea, menstrual cramps, menstrual migraines, menorrhagia (excessive menstrual bleeding), menstruation-related or fibroid-related anemia and dysmenorrhea (painful menstruation). Besides acne, no oral contraceptives have been approved by the US FDA for the previously mentioned uses despite extensive use for these conditions.
PCOS
The cause of PCOS, or polycystic ovary syndrome, is multifactorial and not well-understood. Women with PCOS often have higher than normal levels of luteinizing hormone (LH) and androgens that impact the normal function of the ovaries. While multiple small follicles develop in the ovary, none are able to grow in size enough to become the dominant follicle and trigger ovulation. This leads to an imbalance of LH, follicle stimulating hormone, estrogen, and progesterone. Without ovulation, unopposed estrogen can lead to endometrial hyperplasia, or overgrowth of tissue in the uterus. This endometrial overgrowth is more likely to become cancerous than normal endometrial tissue. Thus, although the data varies, it is generally agreed upon by most gynecological societies that due to the unopposed estrogen, women with PCOS are at higher risk for endometrial cancer.
To reduce the risk of endometrial cancer, it is often recommended that women with PCOS who do not desire pregnancy take hormonal contraceptives to prevent the effects of unopposed estrogen. Both combined oral contraceptive pills and progestin-only methods are recommended. It is the progestin component of combined oral contraceptive pills that protects the endometrium from hyperplasia, and thus reduces a woman with PCOS's endometrial cancer risk. Combined oral contraceptive pills are preferred to progestin-only methods in women who also have uncontrolled acne, symptoms of hirsutism, and androgenic alopecia, because combined oral contraceptive pills can help treat these symptoms.
Acne and hirsutism
Combined oral contraceptive pills are sometimes prescribed to treat symptoms of androgenization, including acne and hirsutism. The estrogen component of combined oral contraceptive pills appears to suppress androgen production in the ovaries. Estrogen also leads to increased synthesis of sex hormone binding globulin, which causes a decrease in the levels of free testosterone.
Ultimately, the drop in the level of free androgens leads to a decrease in the production of sebum, which is a major contributor to development of acne. Four different oral contraceptives have been approved by the US FDA to treat moderate acne if the patient is at least 14 or 15 years old, has already begun menstruating, and needs contraception. These include Ortho Tri-Cyclen, Estrostep, Beyaz, and YAZ.
Hirsutism is the growth of coarse, dark hair where women typically grow only fine hair or no hair at all. This hair growth on the face, chest, and abdomen is also mediated by higher levels or action of androgens. Therefore, combined oral contraceptive pills also work to treat these symptoms by lowering the levels of free circulating androgens.
Studies have shown that combined oral contraceptives are effective in reducing both inflammatory and non-inflammatory facial acne lesions. However, comparisons between different combined oral contraceptives have not been studied to understand if any brand is superior than the others. Oestrogen decreases sebum production by shrinking the sebaceous gland, increasing Sex hormone-binding globulin (SHBG) production to reduce unbound testosterone, and regulating LH and FSH levels. Studies have not shown that POPs are effective against acne lesions.
Endometriosis
For pelvic pain associated with endometriosis, combined oral contraceptive pills are considered a first-line medical treatment, along with NSAIDs, GnRH agonists, and aromatase inhibitors. Combined oral contraceptive pills work to suppress the growth of the extra-uterine endometrial tissue. This works to lessen its inflammatory effects. Combined oral contraceptive pills, along with the other medical treatments listed above, do not eliminate the extra-uterine tissue growth, they just reduce the symptoms. Surgery is the only definitive treatment. Studies looking at rates of pelvic pain recurrence after surgery have shown that continuous use of combined oral contraceptive pills is more effective at reducing the recurrence of pain than cyclic use.
Adenomyosis
Similar to endometriosis, adenomyosis is often treated with combined oral contraceptive pills to suppress the growth the endometrial tissue that has grown into the myometrium. Unlike endometriosis however, levonorgestrel containing IUDs are more effective at reducing pelvic pain in adenomyosis than combined oral contraceptive pills.
Menorrhagia
In the average menstrual cycle, a woman typically loses 35 to 40 milliliters of blood. However, up to 20% of women experience much heavier bleeding, or menorrhagia. This excess blood loss can lead to anemia, with symptoms of fatigue and weakness, as well as disruption in their normal life activities. Combined oral contraceptive pills contain progestin, which causes the lining of the uterus to be thinner, resulting in lighter bleeding episodes for those with heavy menstrual bleeding.
Amenorrhea
Although the pill is sometimes prescribed to induce menstruation on a regular schedule for women bothered by irregular menstrual cycles, it actually suppresses the normal menstrual cycle and then mimics a regular 28-day monthly cycle.
Women who are experiencing menstrual dysfunction due to female athlete triad are sometimes prescribed oral contraceptives as pills that can create menstrual bleeding cycles. However, the condition's underlying cause is energy deficiency and should be treated by correcting the imbalance between calories eaten and calories burned by exercise. Oral contraceptives should not be used as an initial treatment for female athlete triad.
Menstrual suppression
Menstrual bleeding is not necessary in women who do not wish to conceive, therefore menstrual suppression may be implemented in women who do not want to have menstrual bleeding for convenience, gynecologic disorders, bleeding disorders or other medical conditions.
In the two types of hormonal oral contraceptives, only combined oral contraceptives can achieve amenorrhea, while POPs can only reduce the amount of blood. The method of using combined oral contraceptives for menstrual suppression is to skip the 7 placebo pills and continue taking active pills after the 21 active pills. This can be used in extended method or continuous method. For extended method, patients who take active pills for 3, 4, or 6 months and then take placebo pills for a period of time will more likely experience withdrawal bleeding. The interval can be decided by the patients according to their own preferences. For continuous method, people can take combined oral contraceptives for a year continuously without any placebo pills. In the first few months of extended or continuous use of combined oral contraceptives, unscheduled bleeding or spotting may occur. However, the bleeding or spotting is expected to resolve after a few months of use.
Menstrual suppression is commonly used for convenience especially when women go on vacation. It is also used for gynecologic disorders such as dysmenorrhea (commonly known as menstrual pain), symptoms related to premenstrual hormone change and excessive bleeding related to uterine fibroids. Patients can also benefit from menstrual suppression for bleeding disorders or chronic anemia.
Menstrual migraine
Patients with menstrual Oestrogen-related migraine, but without aura and additional risk factors to stroke, can be benefited from combined oral contraceptives. However, older women and those with a strong family history of problematic headaches may find that using hormonal oral contraceptives worsens their headache.
Benefits
The distinctive feature of hormonal oral contraceptives when compared to other contraceptive methods is that they are less invasive and do not interfere with sex. Conclusive data suggest that the failure rate of contraception in using hormonal oral contraceptives for the first year is 9% in typical use which allows missed doses, and <1% in perfect use. The efficacy of hormonal oral contraceptives in preventing pregnancy is high overall. Furthermore, the regular use of hormonal oral contraceptive tends to not only ease premenstrual syndrome, but also allow lighter and less painful menstruation. In addition, the association between a suppressed risk of developing ovarian cancer and hormonal oral contraceptive use is proven.
Contraindications
While combined oral contraceptives are generally considered to be a relatively safe medication, they are contraindicated for those with certain medical conditions. The World Health Organization and the US Centers for Disease Control and Prevention publish guidance, called medical eligibility criteria, on the safety of birth control in the context of medical conditions.
In terms of protection in sexual intercourse, a sole reliance on hormonal oral contraceptives does not defend one from sexually transmitted infections such as HPV. Additionally, breakthrough bleeding and spotting are exceptionally prevalent in the early stage of using hormonal oral contraceptives. Although most reported side effects including nausea, headache, or mood swings will disappear as the therapy progresses or upon switching formulation, elevated blood pressure or blood clots in patients with cardiovascular conditions are documented side effects that requires medical attention if not termination of hormonal oral contraceptives. It is because combined oral contraceptives uses have been found to be related to an increased risk of ischemic stroke or myocardial infarction, especially in combined oral contraceptives with >50 μg Oestrogen. Besides, some ongoing studies giving evidence on the association between hormonal oral contraceptive use and escalated breast cancer risks cannot be neglected.
According to WHO Medical Eligibility Criteria for Contraceptive Use 2015, Category 3 implies that the use of such contraception is usually not recommended, unless other more appropriate methods are neither available nor acceptable and with good resources of clinical judgment; Category 4 implies that the contraceptive method should not be used even with good resources of clinical judgment. Both categories suggest that the contraceptive method should not be used with limited resources for clinical judgment. The tables below summarise conditions of category 3 and 4 from World Health Organization Medical Eligibility Criteria for Contraceptive Use 2015.
Precautions and contraindications for combined oral contraceptives
Condition | Category |
---|---|
Breastfeeding | |
for < 6 weeks postpartum | 4 |
for ≥ 6 weeks to < 6 months postpartum | 3 |
Postpartum (non-breastfeeding) | |
< 21 days postpartum without other risk factors for VTE | 3 |
< 21 days postpartum with other risk factors for VTE | 4 |
≥ 21 days to 42 days postpartum with other risk factors for VTE | 3 |
Smoking | |
age ≥ 35 years and smoking < 15 cigarettes/day | 3 |
age ≥ 35 years and smoking ≥ 15 cigarettes/day | 4 |
Multiple risk factors for arterial cardiovascular disease | 3/4* |
Hypertension | |
history of hypertension, where blood pressure CANNOT be evaluated | 3 |
adequately controlled hypertension, where blood pressure CAN be evaluated | 3 |
elevated blood pressure levels (properly taken measurements)
with systolic 140–159 or diastolic 90–99 mm Hg |
3 |
elevated blood pressure levels (properly taken measurements)
with systolic ≥ 160 or diastolic ≥ 100 mm Hg |
4 |
elevated blood pressure levels (properly taken measurements) with Vascular disease | 4 |
Deep vein thrombosis (DVT) / Pulmonary embolism (PE) | |
with History of DVT/PE | 4 |
with acute DVT/PE | 4 |
with DVT/PE and established on anticoagulant therapy | 4 |
with Major surgery with prolonged immobilization | 4 |
Known thrombogenic mutations | 4 |
Current and history of ischemic heart disease | 4 |
Stroke (history of cerebrovascular accident) | 4 |
Complicated valvular heart disease | 4 |
Positive (or unknown) antiphospholipid antibodies Systemic Lupus Erythematous | 4 |
Headache | |
migraine without aura of age ≥ 35 years (for initiation of combined oral contraceptives) | 3 |
migraine without aura of age < 35 years (for continuation of combined oral contraceptives) | 3 |
migraine without aura of age ≥ 35 years (for continuation of combined oral contraceptives) | 4 |
migraine with aura, at any age (for initiation and continuation of combined oral contraceptives) | 4 |
Breast cancer | |
current Breast cancer | 4 |
past Breast Cancer and no evidence of current disease for 5 years | 3 |
Nephropathy/retinopathy/neuropathy | 3/4* |
Other vascular disease or diabetes of > 20 years’ duration | 3/4* |
Medically treated symptomatic gall bladder disease | 3 |
Current symptomatic gall bladder disease | 3 |
Past-combined oral contraceptive related history of Cholestasis | 3 |
Acute or flare viral hepatitis (for initiation of combined oral contraceptives) | 3/4* |
Severe cirrhosis (decompensated) | 4 |
Liver tumors | |
hepatocellular adenoma | 4 |
malignant (hepatoma) | 4 |
On anticonvulsant therapy | |
with phenytoin, carbamazepine, barbiturates, primidone, topiramate, oxcarbazepine | 3 |
with Lamotrigine | 3 |
On antimicrobial therapy with Rifampicin or rifabutin therapy |
*The category should be assessed according to the severity of the condition.
Hypercoagulability
Estrogen in high doses can increase risk of blood clots. All combined oral contraceptive pill users have a small increase in the risk of venous thromboembolism compared with non-users; this risk is greatest within the first year of combined oral contraceptive pill use. Individuals with any pre-existing medical condition that also increases their risk for blood clots have a more significant increase in risk of thrombotic events with combined oral contraceptive pill use. These conditions include but are not limited to high blood pressure, pre-existing cardiovascular disease (such as valvular heart disease or ischemic heart disease), history of thromboembolism or pulmonary embolism, cerebrovascular accident, and a familial tendency to form blood clots (such as familial factor V Leiden). There are conditions that, when associated with combined oral contraceptive pill use, increase risk of adverse effects other than thrombosis. For example, women with a history of migraine with aura have an increased risk of stroke when using combined oral contraceptive pills, and women who smoke over age 35 and use combined oral contraceptive pills are at higher risk of myocardial infarction.
Pregnancy and postpartum
Women who are known to be pregnant should not take combined oral contraceptive pills. Those in the postpartum period who are breastfeeding are also advised not to start combined oral contraceptive pills until 4 weeks after birth due to increased risk of blood clots. While studies have demonstrated conflicting results about the effects of combined oral contraceptive pills on lactation duration and milk volume, there exist concerns about the transient risk of combined oral contraceptive pills on breast milk production when breastfeeding is being established early postpartum. Due to the stated risks and additional concerns on lactation, women who are breastfeeding are not advised to start combined oral contraceptive pills until at least six weeks postpartum, while women who are not breastfeeding and have no other risks factors for blood clots may start combined oral contraceptive pills after 21 days postpartum.
Breast cancer
The World Health Organization (WHO) does not recommend the use of combined oral contraceptive pills in women with breast cancer. Since combined oral contraceptive pills contain both estrogen and progestin, they are not recommended to be used in those with hormonally-sensitive cancers, including some types of breast cancer. Non-hormonal contraceptive methods, such as the Copper IUD or condoms, should be the first-line contraceptive choice for these patients instead of combined oral contraceptive pills.
Other
Women with known or suspected endometrial cancer or unexplained uterine bleeding should also not take combined oral contraceptive pills to avoid health risks. Combined oral contraceptive pills are also contraindicated for people with advanced diabetes, liver tumors, hepatic adenoma or severe cirrhosis of the liver. Combined oral contraceptive pills are metabolized in the liver and thus liver disease can lead to reduced elimination of the medication. Additionally, severe hypercholesterolemia and hypertriglyceridemia are also contraindications, but the evidence showing that combined oral contraceptive pills lead to worse outcomes in this population is weak. Obesity is not considered to be a contraindication to taking combined oral contraceptive pills.
Side effects
It is generally accepted that the health risks of oral contraceptives are lower than those from pregnancy and birth, and "the health benefits of any method of contraception are far greater than any risks from the method". Some organizations have argued that comparing a contraceptive method to no method (pregnancy) is not relevant—instead, the comparison of safety should be among available methods of contraception.
Common
Different sources note different incidence of side effects. The most common side effect is breakthrough bleeding. Combined oral contraceptive pills can improve conditions such as dysmenorrhea, premenstrual syndrome, and acne, reduce symptoms of endometriosis and polycystic ovary syndrome, and decrease the risk of anemia. Use of oral contraceptives also reduces lifetime risk of ovarian and endometrial cancer.
Nausea, vomiting, headache, bloating, breast tenderness, swelling of the ankles/feet (fluid retention), or weight change may occur. Vaginal bleeding between periods (spotting) or missed/irregular periods may occur, especially during the first few months of use.
Heart and blood vessels
Combined oral contraceptives are associated with an increased risk of venous thromboembolism, including deep vein thrombosis (DVT) and pulmonary embolism (PE).
While lower doses of estrogen in combined oral contraceptive pills may have a lower risk of stroke and myocardial infarction compared to higher estrogen dose pills (50 μg/day), users of low estrogen dose combined oral contraceptive pills still have an increased risk compared to non-users. These risks are greatest in women with additional risk factors, such as smoking (which increases risk substantially) and long-continued use of the pill, especially in women over 35 years of age.
The overall absolute risk of venous thrombosis per 100,000 woman-years in current use of combined oral contraceptives is approximately 60, compared with 30 in non-users. The risk of thromboembolism varies with different types of birth control pills; compared with combined oral contraceptives containing levonorgestrel (LNG), and with the same dose of estrogen and duration of use, the rate ratio of deep venous thrombosis for combined oral contraceptives with norethisterone is 0.98, with norgestimate 1.19, with desogestrel (DSG) 1.82, with gestodene 1.86, with drospirenone (DRSP) 1.64, and with cyproterone acetate 1.88. In comparison, venous thromboembolism occurs in 100–200 per 100.000 pregnant women every year.
One study showed more than a 600% increased risk of blood clots for women taking combined oral contraceptive pills with drospirenone compared with non-users, compared with 360% higher for women taking birth control pills containing levonorgestrel. The US Food and Drug Administration (FDA) initiated studies evaluating the health of more than 800,000 women taking combined oral contraceptive pills and found that the risk of VTE was 93% higher for women who had been taking drospirenone combined oral contraceptive pills for 3 months or less and 290% higher for women taking drospirenone combined oral contraceptive pills for 7–12 months, compared with women taking other types of oral contraceptives.
Based on these studies, in 2012, the FDA updated the label for drospirenone combined oral contraceptive pills to include a warning that contraceptives with drospirenone may have a higher risk of dangerous blood clots.
A 2015 systematic review and meta-analysis found that combined birth control pills were associated with 7.6-fold higher risk of cerebral venous sinus thrombosis, a rare form of stroke in which blood clotting occurs in the cerebral venous sinuses.
Type | Route | Medications | Odds ratio (95% CITooltip confidence interval) |
---|---|---|---|
Menopausal hormone therapy | Oral | Estradiol alone ≤1 mg/day >1 mg/day |
1.27 (1.16–1.39)* 1.22 (1.09–1.37)* 1.35 (1.18–1.55)* |
Conjugated estrogens alone ≤0.625 mg/day >0.625 mg/day |
1.49 (1.39–1.60)* 1.40 (1.28–1.53)* 1.71 (1.51–1.93)* | ||
Estradiol/medroxyprogesterone acetate | 1.44 (1.09–1.89)* | ||
Estradiol/dydrogesterone ≤1 mg/day E2 >1 mg/day E2 |
1.18 (0.98–1.42) 1.12 (0.90–1.40) 1.34 (0.94–1.90) | ||
Estradiol/norethisterone ≤1 mg/day E2 >1 mg/day E2 |
1.68 (1.57–1.80)* 1.38 (1.23–1.56)* 1.84 (1.69–2.00)* | ||
Estradiol/norgestrel or estradiol/drospirenone | 1.42 (1.00–2.03) | ||
Conjugated estrogens/medroxyprogesterone acetate | 2.10 (1.92–2.31)* | ||
Conjugated estrogens/norgestrel ≤0.625 mg/day CEEs >0.625 mg/day CEEs |
1.73 (1.57–1.91)* 1.53 (1.36–1.72)* 2.38 (1.99–2.85)* | ||
Tibolone alone | 1.02 (0.90–1.15) | ||
Raloxifene alone | 1.49 (1.24–1.79)* | ||
Transdermal | Estradiol alone ≤50 μg/day >50 μg/day |
0.96 (0.88–1.04) 0.94 (0.85–1.03) 1.05 (0.88–1.24) | |
Estradiol/progestogen | 0.88 (0.73–1.01) | ||
Vaginal | Estradiol alone | 0.84 (0.73–0.97) | |
Conjugated estrogens alone | 1.04 (0.76–1.43) | ||
Combined birth control | Oral | Ethinylestradiol/norethisterone | 2.56 (2.15–3.06)* |
Ethinylestradiol/levonorgestrel | 2.38 (2.18–2.59)* | ||
Ethinylestradiol/norgestimate | 2.53 (2.17–2.96)* | ||
Ethinylestradiol/desogestrel | 4.28 (3.66–5.01)* | ||
Ethinylestradiol/gestodene | 3.64 (3.00–4.43)* | ||
Ethinylestradiol/drospirenone | 4.12 (3.43–4.96)* | ||
Ethinylestradiol/cyproterone acetate | 4.27 (3.57–5.11)* | ||
Notes: (1) Nested case–control studies (2015, 2019) based on data from the QResearch and Clinical Practice Research Datalink (CPRD) databases. (2) Bioidentical progesterone was not included, but is known to be associated with no additional risk relative to estrogen alone. Footnotes: * = Statistically significant (p < 0.01). Sources: See template. |
Cancer
Decreased risk of ovarian, endometrial, and colorectal cancers
Usage of combined oral concetraption decreased the risk of ovarian cancer, endometrial cancer, and colorectal cancer. Two large cohort studies published in 2010 both found a significant reduction in adjusted relative risk of ovarian and endometrial cancer mortality in ever-users of OCs compared with never-users. The use of oral contraceptives (birth control pills) for five years or more decreases the risk of ovarian cancer in later life by 50%. Combined oral contraceptive use reduces the risk of ovarian cancer by 40% and the risk of endometrial cancer by 50% compared with never users. The risk reduction increases with duration of use, with an 80% reduction in risk for both ovarian and endometrial cancer with use for more than 10 years. The risk reduction for both ovarian and endometrial cancer persists for at least 20 years.
Increased risk of breast, cervical, and liver cancers
A report by a 2005 International Agency for Research on Cancer (IARC) working group found that combined oral contraceptives increase the risk of cancers of the breast, cervix and liver. A systematic review in 2010 did not support an increased overall cancer risk in users of combined oral contraceptive pills, but did find a slight increase in breast cancer risk among current users, which disappears 5–10 years after use has stopped; the study also found an increased risk of cervical and liver cancers. A 2013 meta-analysis concluded that every use of birth control pills is associated with a modest increase in the risk of breast cancer (relative risk 1.08) and a reduced risk of colorectal cancer (relative risk 0.86) and endometrial cancer (relative risk 0.57). Cervical cancer risk in those infected with HPV is increased. A similar small increase in breast cancer risk was observed in other meta analyses. A study of 1.8 million Danish women of reproductive age followed for 11 years found that the risk of breast cancer was 20% higher among those who currently or recently used hormonal contraceptives than among women who had never used hormonal contraceptives. This risk increased with duration of use, with a 38% increase in risk after more than 10 years of use.
Weight
A 2016 systematic review found low quality evidence that studies of combination hormonal contraceptives showed no large difference in weight when compared with placebo or no intervention groups. The evidence was not strong enough to be certain that contraceptive methods do not cause some weight change, but no major effect was found. This review also found "that women did not stop using the pill or patch because of weight change".
Sexual function and risk aversion
Sexual desire
Main article: Effects of hormones on sexual motivation See also: Gene-centered view of evolution, Automatic and controlled processes, and Sexual arousalSome researchers question a causal link between combined oral contraceptive pill use and decreased libido; a 2007 study of 1700 women found combined oral contraceptive pill users experienced no change in sexual satisfaction. A 2005 laboratory study of genital arousal tested fourteen women before and after they began taking combined oral contraceptive pills. The study found that women experienced a significantly wider range of arousal responses after beginning pill use; decreases and increases in measures of arousal were equally common.
In 2012, The Journal of Sexual Medicine published a review of research studying the effects of hormonal contraceptives on female sexual function that concluded that the sexual side effects of hormonal contraceptives are not well-studied and especially in regards to impacts on libido, with research establishing only mixed effects where only small percentages of women report experiencing an increase or decrease and majorities report being unaffected. In 2013, The European Journal of Contraception & Reproductive Health Care published a review of 36 studies including 8,422 female subjects in total taking combined oral contraceptive pills that found that 5,358 subjects (or 63.6 percent) reported no change in libido, 1,826 subjects (or 21.7 percent) reported an increase, and 1,238 subjects (or 14.7 percent) reported a decrease. In 2019, Neuroscience & Biobehavioral Reviews published a meta-analysis of 22 published and 4 unpublished studies (with 7,529 female subjects in total) that evaluated whether women expose themselves to greater health risks at different points in the menstrual cycle including by sexual activity with partners and found that subjects in the last third of the follicular phase and at ovulation (when levels of endogenous estradiol and luteinizing hormones are heightened) experienced increased sexual activity with partners as compared with the luteal phase and during menstruation.
A 2006 study of 124 premenopausal women measured sex hormone-binding globulin (SHBG), including before and after discontinuation of the oral contraceptive pill. Women continuing use of oral contraceptives had SHBG levels four times higher than those who never used it, and levels remained elevated even in the group that had discontinued its use. Theoretically, an increase in SHBG may be a physiologic response to increased hormone levels, but may decrease the free levels of other hormones, such as androgens, because of the unspecificity of its sex hormone binding. In 2020, The Lancet Diabetes & Endocrinology published a cross-sectional study of 588 premenopausal female subjects aged 18 to 39 years from the Australian states of Queensland, New South Wales, and Victoria with regular menstrual cycles whose SHBG levels were measured by immunoassay that found that after controlling for age, body mass index, cycle stage, smoking, parity, partner status, and psychoactive medication, SHBG was inversely correlated with sexual desire.
Sexual attractiveness and function
See also: Sexual attraction, Concealed ovulation, Estrous cycle, and Menstruation (mammal)Combined oral contraceptive pills may increase natural vaginal lubrication, while some women experience decreased lubrication.
In 2004, the Proceedings of the Royal Society B: Biological Sciences published a study where pairs of digital photographs of the faces of 48 women at Newcastle University and Charles University between the ages 19 and 33 who were not taking hormonal contraceptives during the study were photographed in the late follicular and early mid-luteal phases of their menstrual cycles and the photographs were then rated by 261 blinded subjects (130 male and 131 female) at their respective universities who compared the facial attractiveness of each photographed woman in their photograph pairs, and found that the subjects perceived the late follicular phase images of the photographed women as being more attractive than the luteal phase images by more than expected by random chance.
In 2007, Evolution and Human Behavior published a study where 18 professional lap dancers recorded their menstrual cycles, work shifts, and tip earnings at gentlemen's clubs for 60 days that found by a mixed model analysis of 296 work shifts (or approximately 5,300 lap dances) that the 11 dancers with normal menstrual cycles earned US$335 per 5-hour shift during the late follicular phase and at ovulation, US$260 per shift during the luteal phase, and US$185 per shift during menstruation, while the 7 dancers using hormonal contraceptives showed no earnings peak during the late follicular phase and at ovulation. In 2008, Evolution and Human Behavior published a study where the voices of 51 female students at the State University of New York at Albany were recorded with the women counting from 1 to 10 at four different points in their menstrual cycles were rated by blinded subjects who listened to the recordings to be more attractive at the points of the menstrual cycle with higher probabilities of conception, while the ratings of the voices of the women who were taking hormonal contraceptives showed no variation over the menstrual cycle in attractiveness.
Risk-taking behaviour
See also: Behavioral modernity, Evolutionary mismatch, and Human factorsIn 1998, Evolution and Human Behavior published a study of 300 female undergraduate students at the State University of New York at Albany between the ages of 18 and 54 (with a mean age of 21.9 years) that surveyed the subjects engagement in 18 different behaviors over the 24 hours prior to filling out the study's questionnaire that varied in their risk of potential rape or sexual assault and the first day of their last menstruations, and found that subjects at ovulation showed statistically significant decreased engagement in behaviors that risked rape and sexual assault while subjects taking birth control pills showed no variation over their menstrual cycles in the same behaviors (suggesting a psychologically adaptive function of the hormonal fluctuations during the menstrual cycle in causing avoidance of behaviors that risk rape and sexual assault). In 2003, Evolution and Human Behavior published a conceptual replication study of the 1998 survey that confirmed its findings.
In 2006, a study presented at the annual conference of the Cognitive Science Society surveyed 176 female undergraduate students at Michigan State University (with a mean age of 19.9 years) in a decision-making experiment where the subjects chose between an option with a guaranteed outcome or an option involving risk and indicated the first day of their last menstruations, and found that the subjects risk aversion preferences varied over the menstrual cycle (with none of the subjects at ovulation preferring the risky option) and only subjects not taking hormonal contraceptives showed the menstrual cycle effect on risk aversion. In the 2019 Neuroscience & Biobehavioral Reviews meta-analysis, the research reviewed also evaluated whether the 7,529 female subjects across the 26 studies showed greater risk recognition and avoidance of potentially threatening people and dangerous situations at different phases of the menstrual cycle and found that the subjects displayed better risk accuracy recognition during the late follicular phase and at ovulation as compared to the luteal phase.
Depression
Low levels of serotonin, a neurotransmitter in the brain, have been linked to depression. High levels of estrogen, as in first-generation combined oral contraceptive pills, and progestin, as in some progestin-only contraceptives, have been shown to lower the brain serotonin levels by increasing the concentration of a brain enzyme that reduces serotonin.
Current medical reference textbooks on contraception and major organizations such as the American ACOG, the WHO, and the United Kingdom's RCOG agree that current evidence indicates low-dose combined oral contraceptives are unlikely to increase the risk of depression, and unlikely to worsen the condition in women that are depressed.
Hypertension
Bradykinin lowers blood pressure by causing blood vessel dilation. Certain enzymes are capable of breaking down bradykinin (Angiotensin Converting Enzyme, Aminopeptidase P). Progesterone can increase the levels of Aminopeptidase P (AP-P), thereby increasing the breakdown of bradykinin, which increases the risk of developing hypertension.
Thyroid
Estrogen in oral contraceptives may increase thyroid binding globulin and decrease free T4. Thus, longer history of oral contraceptives use may be strongly associated with hypothyroidism, especially for more than 10 years. Also, a higher dose of thyroxine may be needed with oral contraceptives.
Other effects
Other side effects associated with low-dose combined oral contraceptive pills are leukorrhea (increased vaginal secretions), reductions in menstrual flow, mastalgia (breast tenderness), and decrease in acne. Side effects associated with older high-dose combined oral contraceptive pills include nausea, vomiting, increases in blood pressure, and melasma (facial skin discoloration); these effects are not strongly associated with low-dose formulations.
Excess estrogen, such as from birth control pills, appears to increase cholesterol levels in bile and decrease gallbladder movement, which can lead to gallstones. Progestins found in certain formulations of oral contraceptive pills can limit the effectiveness of weight training to increase muscle mass. This effect is caused by the ability of some progestins to inhibit androgen receptors. One study claims that the pill may affect what male body odors a woman prefers, which may in turn influence her selection of partner. Use of combined oral contraceptives is associated with a reduced risk of endometriosis, giving a relative risk of endometriosis of 0.63 during active use, yet with limited quality of evidence according to a systematic review.
Combined oral contraception decreases total testosterone levels by approximately 0.5 nmol/L, free testosterone by approximately 60%, and increases the amount of sex hormone binding globulin (SHBG) by approximately 100 nmol/L. Contraceptives containing second generation progestins and/or estrogen doses of around 20 –25 mg EE were found to have less impact on SHBG concentrations. Combined oral contraception may also reduce bone density.
Drug interactions
Some drugs reduce the effect of the pill and can cause breakthrough bleeding, or increased chance of pregnancy. These include drugs such as rifampicin, barbiturates, phenytoin and carbamazepine. In addition cautions are given about broad spectrum antibiotics, such as ampicillin and doxycycline, which may cause problems "by impairing the bacterial flora responsible for recycling ethinylestradiol from the large bowel" (BNF 2003).
The traditional medicinal herb St John's Wort has also been implicated due to its upregulation of the P450 system in the liver which could increase the metabolism of ethinyl estradiol and progestin components of some combined oral contraception.
Accessibility
The availability of pharmaceutical products to the public is determined by the local governing body. In the US, the responsible organisation is the Food and Drug Administration (FDA). According to a press announcement in July 2023, a daily hormonal oral contraceptive was first made accessible to the public without a prescription. Although this drug class was approved for prescription use as early as in 1973, it took an additional 50 years to de-escalate its legal status. Such allowance is made plausible thanks to the demonstration of its safe and effective use by the general public, not needing any guidance from healthcare professionals. Ultimately, the governing body should act accordingly to applicants' evidence and update the local legislation.
History
By the 1930s, scientists had isolated and determined the structure of the steroid hormones and found that high doses of androgens, estrogens or progesterone inhibited ovulation, but obtaining these hormones, which were produced from animal extracts, from European pharmaceutical companies was extraordinarily expensive.
In 1939, Russell Marker, a professor of organic chemistry at Pennsylvania State University, developed a method of synthesizing progesterone from plant steroid sapogenins, initially using sarsapogenin from sarsaparilla, which proved too expensive. After three years of extensive botanical research, he discovered a much better starting material, the saponin from inedible Mexican yams (Dioscorea mexicana and Dioscorea composita) found in the rain forests of Veracruz near Orizaba. The saponin could be converted in the lab to its aglycone moiety diosgenin. Unable to interest his research sponsor Parke-Davis in the commercial potential of synthesizing progesterone from Mexican yams, Marker left Penn State and in 1944 co-founded Syntex with two partners in Mexico City. When he left Syntex a year later the trade of the barbasco yam had started and the period of the heyday of the Mexican steroid industry had been started. Syntex broke the monopoly of European pharmaceutical companies on steroid hormones, reducing the price of progesterone almost 200-fold over the next eight years.
Midway through the 20th century, the stage was set for the development of a hormonal contraceptive, but pharmaceutical companies, universities and governments showed no interest in pursuing research.
Progesterone to prevent ovulation
Progesterone, given by injections, was first shown to inhibit ovulation in animals in 1937 by Makepeace and colleagues.
In 1951, reproductive physiologist Gregory Pincus, a leader in hormone research and co-founder of the Worcester Foundation for Experimental Biology (WFEB) in Shrewsbury, Massachusetts, first met American birth control movement founder Margaret Sanger at a Manhattan dinner hosted by Abraham Stone, medical director and vice president of Planned Parenthood (PPFA), who helped Pincus obtain a small grant from PPFA to begin hormonal contraceptive research. Research started in April 1951, with reproductive physiologist Min Chueh Chang repeating and extending the 1937 experiments of Makepeace et al. that was published in 1953 and showed that injections of progesterone suppressed ovulation in rabbits. In October 1951, G. D. Searle & Company refused Pincus' request to fund his hormonal contraceptive research, but retained him as a consultant and continued to provide chemical compounds to evaluate.
In March 1952, Sanger wrote a brief note mentioning Pincus' research to her longtime friend and supporter, suffragist and philanthropist Katharine Dexter McCormick, who visited the WFEB and its co-founder and old friend Hudson Hoagland in June 1952 to learn about contraceptive research there. Frustrated when research stalled from PPFA's lack of interest and meager funding, McCormick arranged a meeting at the WFEB in June 1953, with Sanger and Hoagland, where she first met Pincus who committed to dramatically expand and accelerate research with McCormick providing fifty times PPFA's previous funding.
Pincus and McCormick enlisted Harvard clinical professor of gynecology John Rock, chief of gynecology at the Free Hospital for Women and an expert in the treatment of infertility, to lead clinical research with women. At a scientific conference in 1952, Pincus and Rock, who had known each other for many years, discovered they were using similar approaches to achieve opposite goals. In 1952, Rock induced a three-month anovulatory "pseudopregnancy" state in eighty of his infertility patients with continuous gradually increasing oral doses of an estrogen (5 to 30 mg/day diethylstilbestrol) and progesterone (50 to 300 mg/day), and within the following four months 15% of the women became pregnant.
In 1953, at Pincus' suggestion, Rock induced a three-month anovulatory "pseudopregnancy" state in twenty-seven of his infertility patients with an oral 300 mg/day progesterone-only regimen for 20 days from cycle days 5–24 followed by pill-free days to produce withdrawal bleeding. This produced the same 15% pregnancy rate during the following four months without the amenorrhea of the previous continuous estrogen and progesterone regimen. But 20% of the women experienced breakthrough bleeding and in the first cycle ovulation was suppressed in only 85% of the women, indicating that even higher and more expensive oral doses of progesterone would be needed to initially consistently suppress ovulation. Similarly, Ishikawa and colleagues found that ovulation inhibition occurred in only a "proportion" of cases with 300 mg/day oral progesterone. Despite the incomplete inhibition of ovulation by oral progesterone, no pregnancies occurred in the two studies, although this could have simply been due to chance. However, Ishikawa et al. reported that the cervical mucus in women taking oral progesterone became impenetrable to sperm, and this may have accounted for the absence of pregnancies.
Progesterone was abandoned as an oral ovulation inhibitor following these clinical studies due to the high and expensive doses required, incomplete inhibition of ovulation, and the frequent incidence of breakthrough bleeding. Instead, researchers would turn to much more potent synthetic progestogens for use in oral contraception in the future.
Progestins to prevent ovulation
In October 1951, Chemist Luis Miramontes, working under the supervision of Carl Djerassi, and the direction of George Rosenkranz at Syntex in Mexico City, synthesized the first oral contraceptive, which was based on highly active progestin norethisterone. Frank B. Colton at Searle in Skokie, Illinois synthesized the orally highly active progestins noretynodrel (an isomer of norethisterone) in 1952 and norethandrolone in 1953.
Pincus asked his contacts at pharmaceutical companies to send him chemical compounds with progestogenic activity. Chang screened nearly 200 chemical compounds in animals and found the three most promising were Syntex's norethisterone and Searle's noretynodrel and norethandrolone.
In December 1954, Rock began the first studies of the ovulation-suppressing potential of 5–50 mg doses of the three oral progestins for three months (for 21 days per cycle—days 5–25 followed by pill-free days to produce withdrawal bleeding) in fifty of his patients with infertility in Brookline, Massachusetts. Norethisterone or noretynodrel 5 mg doses and all doses of norethandrolone suppressed ovulation but caused breakthrough bleeding, but 10 mg and higher doses of norethisterone or noretynodrel suppressed ovulation without breakthrough bleeding and led to a 14% pregnancy rate in the following five months. Pincus and Rock selected Searle's noretynodrel for the first contraceptive trials in women, citing its total lack of androgenicity versus Syntex's norethisterone very slight androgenicity in animal tests.
Combined oral contraceptive
Noretynodrel (and norethisterone) were subsequently discovered to be contaminated with a small percentage of the estrogen mestranol (an intermediate in their synthesis), with the noretynodrel in Rock's 1954–5 study containing 4–7% mestranol. When further purifying noretynodrel to contain less than 1% mestranol led to breakthrough bleeding, it was decided to intentionally incorporate 2.2% mestranol, a percentage that was not associated with breakthrough bleeding, in the first contraceptive trials in women in 1954. The noretynodrel and mestranol combination was given the proprietary name Enovid.
The first contraceptive trial of Enovid led by Celso-Ramón García and Edris Rice-Wray began in April 1956 in Río Piedras, Puerto Rico. A second contraceptive trial of Enovid (and norethisterone) led by Edward T. Tyler began in June 1956 in Los Angeles. In January 1957, Searle held a symposium reviewing gynecologic and contraceptive research on Enovid through 1956 and concluded Enovid's estrogen content could be reduced by 33% to lower the incidence of estrogenic gastrointestinal side effects without significantly increasing the incidence of breakthrough bleeding.
While these large-scale trials contributed to the initial understanding of the pill formulation's clinical effects, the ethical implications of the trials generated significant controversy. Of note is the apparent lack of both autonomy and informed consent among participants in the Puerto Rican cohort prior to the trials. Many of these participants hailed from impoverished, working-class backgrounds.
Public availability
As of 2013, less than a third of countries worldwide required a prescription for oral contraceptives.
United States
In June 1957, the Food and Drug Administration (FDA) approved Enovid 10 mg (9.85 mg noretynodrel and 150 μg mestranol) for menstrual disorders, based on data from its use by more than 600 women. Numerous additional contraceptive trials showed Enovid at 10, 5, and 2.5 mg doses to be highly effective. In July 1959, Searle filed a supplemental application to add contraception as an approved indication for 10, 5, and 2.5 mg doses of Enovid. The FDA refused to consider the application until Searle agreed to withdraw the lower dosage forms from the application. In May 1960, the FDA announced it would approve Enovid 10 mg for contraceptive use, and did so in June 1960. At that point, Enovid 10 mg had been in general use for three years and, by conservative estimate, at least half a million women had used it.
Although FDA-approved for contraceptive use, Searle never marketed Enovid 10 mg as a contraceptive. Eight months later, in February 1961, the FDA approved Enovid 5 mg for contraceptive use. In July 1961, Searle finally began marketing Enovid 5 mg (5 mg noretynodrel and 75 μg mestranol) to physicians as a contraceptive.
Although the FDA approved the first oral contraceptive in 1960, contraceptives were not available to married women in all states until Griswold v. Connecticut in 1965, and were not available to unmarried women in all states until Eisenstadt v. Baird in 1972.
The first published case report of a blood clot and pulmonary embolism in a woman using Enavid (Enovid 10 mg in the US) at a dose of 20 mg/day did not appear until November 1961, four years after its approval, by which time it had been used by over one million women. It would take almost a decade of epidemiological studies to conclusively establish an increased risk of venous thrombosis in oral contraceptive users and an increased risk of stroke and myocardial infarction in oral contraceptive users who smoke or have high blood pressure or other cardiovascular or cerebrovascular risk factors. These risks of oral contraceptives were dramatized in the 1969 book The Doctors' Case Against the Pill by feminist journalist Barbara Seaman who helped arrange the 1970 Nelson Pill Hearings called by Senator Gaylord Nelson. The hearings were conducted by senators who were all men and the witnesses in the first round of hearings were all men, leading Alice Wolfson and other feminists to protest the hearings and generate media attention. Their work led to mandating the inclusion of patient package inserts with oral contraceptives to explain their possible side effects and risks to help facilitate informed consent. Today's standard dose oral contraceptives contain an estrogen dose that is one third lower than the first marketed oral contraceptive and contain lower doses of different, more potent progestins in a variety of formulations.
Beginning in 2015, certain states passed legislation allowing pharmacists to prescribe oral contraceptives. Such legislation was considered to address physician shortages and decrease barriers to birth control for women. Pharmacists in Oregon, California, Colorado, Hawaii, Maryland, and New Mexico have authority to prescribe birth control after receiving specialized training and certification from their respective state Board of Pharmacy. As of January 2024, pharmacists in 29 states can prescribe oral contraceptives.
A progestin-based birth control pill (Opill) was approved by the FDA in 2023 and is available over the counter. Estrogen-based pills still require prescriptions as of 2024.
Australia
The first oral contraceptive introduced outside the United States was Schering's Anovlar (norethisterone acetate 4 mg + ethinylestradiol 50 μg) in January 1961, in Australia.
Germany
The first oral contraceptive introduced in Europe was Schering's Anovlar in June 1961, in West Germany. The lower hormonal dose, still in use, was studied by the Belgian Gynaecologist Ferdinand Peeters.
United Kingdom
Before the mid-1960s, the United Kingdom did not require pre-marketing approval of drugs. The British Family Planning Association (FPA) through its clinics was then the primary provider of family planning services in the UK and provided only contraceptives that were on its Approved List of Contraceptives (established in 1934). In 1957, Searle began marketing Enavid (Enovid 10 mg in the US) for menstrual disorders. Also in 1957, the FPA established a Council for the Investigation of Fertility Control (CIFC) to test and monitor oral contraceptives which began animal testing of oral contraceptives and in 1960 and 1961 began three large clinical trials in Birmingham, Slough, and London.
In March 1960, the Birmingham FPA began trials of noretynodrel 2.5 mg + mestranol 50 μg, but a high pregnancy rate initially occurred when the pills accidentally contained only 36 μg of mestranol—the trials were continued with noretynodrel 5 mg + mestranol 75 μg (Conovid in the UK, Enovid 5 mg in the US). In August 1960, the Slough FPA began trials of noretynodrel 2.5 mg + mestranol 100 μg (Conovid-E in the UK, Enovid-E in the US). In May 1961, the London FPA began trials of Schering's Anovlar.
In October 1961, at the recommendation of the Medical Advisory Council of its CIFC, the FPA added Searle's Conovid to its Approved List of Contraceptives. In December 1961, Enoch Powell, then Minister of Health, announced that the oral contraceptive pill Conovid could be prescribed through the NHS at a subsidized price of 2s per month. In 1962, Schering's Anovlar and Searle's Conovid-E were added to the FPA's Approved List of Contraceptives.
France
In December 1967, the Neuwirth Law legalized contraception in France, including the pill. The pill is the most popular form of contraception in France, especially among young women. It accounts for 60% of the birth control used in France. The abortion rate has remained stable since the introduction of the pill.
Japan
In Japan, lobbying from the Japan Medical Association prevented the pill from being approved for general use for nearly 40 years. The higher dose "second generation" pill was approved for use in cases of gynecological problems, but not for birth control. Two main objections raised by the association were safety concerns over long-term use of the pill, and concerns that pill use would lead to decreased use of condoms and thereby potentially increase sexually transmitted infection (STI) rates.
However, when the Ministry of Health and Welfare approved Viagra's use in Japan after only six months of the application's submission, while still claiming that the pill required more data before approval, women's groups cried foul. The pill was subsequently approved for use in June 1999, when Japan became the last UN member country to do so. However, the pill has not become popular in Japan. According to estimates, only 1.3 percent of 28 million Japanese females of childbearing age use the pill, compared with 15.6 percent in the United States. The pill prescription guidelines the government has endorsed require pill users to visit a doctor every three months for pelvic examinations and undergo tests for sexually transmitted diseases and uterine cancer. In the United States and Europe, in contrast, an annual or bi-annual clinic visit is standard for pill users. However, beginning as far back as 2007, many Japanese OBGYNs have required only a yearly visit for pill users, with multiple checks a year recommended only for those who are older or at increased risk of side effects. As of 2004, condoms accounted for 80% of birth control use in Japan, and this may explain Japan's comparatively low rates of AIDS.
Society and culture
The pill was approved by the US FDA in the early 1960s; its use spread rapidly in the late part of that decade, generating an enormous social impact. Time magazine placed the pill on its cover in April 1967. In the first place, it was more effective than most previous reversible methods of birth control, giving women unprecedented control over their fertility. Its use was separate from intercourse, requiring no special preparations at the time of sexual activity that might interfere with spontaneity or sensation, and the choice to take the pill was a private one. This combination of factors served to make the pill immensely popular within a few years of its introduction.
Claudia Goldin, among others, argue that this new contraceptive technology was a key player in forming women's modern economic role, in that it prolonged the age at which women first married allowing them to invest in education and other forms of human capital as well as generally become more career-oriented. Soon after the birth control pill was legalized, there was a sharp increase in college attendance and graduation rates for women. From an economic point of view, the birth control pill reduced the cost of staying in school. The ability to control fertility without sacrificing sexual relationships allowed women to make long term educational and career plans.
Because the pill was so effective, and soon so widespread, it also heightened the debate about the moral and health consequences of pre-marital sex and promiscuity. Never before had sexual activity been so divorced from reproduction. For a couple using the pill, intercourse became purely an expression of love, or a means of physical pleasure, or both; but it was no longer a means of reproduction. While this was true of previous contraceptives, their relatively high failure rates and their less widespread use failed to emphasize this distinction as clearly as did the pill. The spread of oral contraceptive use thus led many religious figures and institutions to debate the proper role of sexuality and its relationship to procreation. The Roman Catholic Church in particular, after studying the phenomenon of oral contraceptives, re-emphasized the stated teaching on birth control in the 1968 papal encyclical Humanae vitae. The encyclical reiterated the established Catholic teaching that artificial contraception distorts the nature and purpose of sex. On the other side Anglican and other Protestant churches, such as the Protestant Church in Germany (EKD), accepted the combined oral contraceptive pill.
The United States Senate began hearings on the pill in 1970 and where different viewpoints were heard from medical professionals. Dr. Michael Newton, President of the College of Obstetricians and Gynecologists said:
The evidence is not yet clear that these still do in fact cause cancer or related to it. The FDA Advisory Committee made comments about this, that if there wasn't enough evidence to indicate whether or not these pills were related to the development of cancer, and I think that's still thin; you have to be cautious about them, but I don't think there is clear evidence, either one way or the other, that they do or don't cause cancer.
Another physician, Dr. Roy Hertz of the Population Council, said that anyone who takes this should know of "our knowledge and ignorance in these matters" and that all women should be made aware of this so they can decide to take the pill or not.
The Secretary of Health, Education, and Welfare at the time, Robert Finch, announced the federal government had accepted a compromise warning statement which would accompany all sales of birth control pills.
Result on popular culture
The introduction of the birth control pill in 1960 allowed more women to find employment opportunities and further their education. As a result of women getting more jobs and an education, their husbands had to start taking over household tasks like cooking. Wanting to stop the change that was occurring in terms of gender norms in an American household, many films, television shows, and other popular culture items portrayed what an ideal American family should be. Below are listed some examples:
Poem
- The Pill Versus the Springhill Mine Disaster is the title poem of a 1968 collection by Richard Brautigan.
Music
- Singer Loretta Lynn commented on how women no longer had to choose between a relationship and a career in her 1974 album with a song entitled "The Pill", which told the story of a married woman's use of the drug to liberate herself from her traditional role as wife and mother.
Environmental impact
A woman using combined oral contraceptive pills excretes in her urine and feces natural estrogens, estrone (E1) and estradiol (E2), and synthetic estrogen ethinylestradiol (EE2). These hormones can pass through water treatment plants and into rivers. Other forms of contraception, such as the contraceptive patch, use the same synthetic estrogen (EE2) that is found in combined oral contraceptive pills, and can add to the hormonal concentration in the water when flushed down the toilet. This excretion is shown to play a role in causing endocrine disruption, which affects the sexual development and reproduction of wild fish populations in segments of streams contaminated by treated sewage effluents. A study done in British rivers supported the hypothesis that the incidence and the severity of intersex wild fish populations were significantly correlated with the concentrations of the E1, E2, and EE2 in the rivers.
A review of activated sludge plant performance found estrogen removal rates varied considerably but averaged 78% for estrone, 91% for estradiol, and 76% for ethinylestradiol (estriol effluent concentrations are between those of estrone and estradiol, but estriol is a much less potent endocrine disruptor to fish).
Several studies have suggested that reducing human population growth through increased access to contraception, including birth control pills, can be an effective strategy for climate change mitigation as well as adaptation. According to Thomas Wire, contraception is the 'greenest technology' because of its cost-effectiveness in combating global warming — each $7 spent on contraceptives would reduce global carbon emissions by 1 tonne over four decades, while achieving the same result with low-carbon technologies would require $32.
See also
- Estradiol-containing oral contraceptive
- Hormone replacement therapy (HRT)
- List of estrogens available in the United States
- List of progestogens available in the United States
- Progestogen-only injectable contraceptive
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Mechanism of action
Combined oral contraceptive pills prevent fertilization and, therefore, qualify as contraceptives. There is no significant evidence that they work after fertilization. The progestins in all combined oral contraceptives provide most of the contraceptive effect by suppressing ovulation and thickening cervical mucus, although the estrogens also make a small contribution to ovulation suppression. Cycle control is enhanced by the estrogen.
Because combined oral contraceptives so effectively suppress ovulation and block ascent of sperm into the upper genital tract, the potential impact on endometrial receptivity to implantation is almost academic. When the two primary mechanisms fail, the fact that pregnancy occurs despite the endometrial changes demonstrates that those endometrial changes do not significantly contribute to the pill's mechanism of action. - ^ Speroff L, Darney PD (2011). "Oral contraception". A clinical guide for contraception (5th ed.). Philadelphia: Lippincott Williams & Wilkins. pp. 19–152. ISBN 978-1-60831-610-6.
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Ten different progestins have been used in the combined oral contraceptives that have been sold in the United States. Several different classification systems for the progestins exist, but the one most commonly used system recapitulates the history of the pill in the United States by categorizing the progestins into the so-called "generations of progestins". The first three generations of progestins are derived from 19-nortestosterone. The fourth generation is drospirenone. Newer progestins are hybrids.
First-generation progestins. First-generation progestins include noretynodrel, norethisterone, norethisterone acetate, and etynodiol diacetate... These compounds have the lowest potency and relatively short half-lives. The short half-life did not matter in the early, high-dose pills but as doses of progestin were decreased in the more modern pills, problems with unscheduled spotting and bleeding became more common.
Second-generation progestins. To solve the problem of unscheduled bleeding and spotting, the second generation progestins (norgestrol and levonorgestrel) were designed to be significantly more potent and to have longer half-lives than norethisterone-related progestins ... The second-generation progestins have been associated with more androgen-related side-effects such as adverse effect on lipids, oily skin, acne, and facial hair growth.
Third-generation progestins. Third-generation progestins (desogestrel, norgestimate and elsewhere, gestodene) were introduced to maintain the potent progestational activity of second-generation progestins, but to reduce androgeneic side effects. Reduction in androgen impacts allows a fuller expression of the pill's estrogen impacts. This has some clinical benefits... On the other hand, concern arose that the increased expression of estrogen might increase the risk of venous thromboembolism (VTE). This concern introduced a pill scare in Europe until international studies were completed and correctly interpreted.
Fourth-generation progestins. Drospirenone is an analogue of spironolactone, a potassium-sparing diuretic used to treat hypertension. Drospirenone possesses anti-mineralocorticoid and anti-androgenic properties. These properties have led to new contraceptive applications, such as treatment of premenstrual dysphoric disorder and acne... In the wake of concerns around possible increased VTE risk with less androgenic third-generation formulations, those issues were anticipated with drospirenone. They were clearly answered by large international studies.
Next-generation progestins. Progestins have been developed with properties that are shared with different generations of progestins. They have more profound, diverse, and discrete effects on the endometrium than prior progestins. This class would include dienogest (United States) and nomegestrol (Europe). - ^ Speroff L, Darney PD (2011). "Oral contraception". A clinical guide for contraception (5th ed.). Philadelphia: Lippincott Williams & Wilkins. p. 40. ISBN 978-1-60831-610-6.
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The original observation of Makepeace et al. (1937) that progesterone inhibited ovulation in the rabbit was substantiated by Pincus and Chang (1953). In women, 300 mg of progesterone per day taken orally resulted in ovulation inhibition in 80% of cases (Pincus, 1956). The high dosage and frequent incidence of breakthrough bleeding limited the practical application of the method. Subsequently, the utilization of potent 19-norsteroids, which could be given orally, opened the field to practical oral contraception.
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Ishikawa et al. (1957) employing the same regime of progesterone administration also observed suppression of ovulation in a proportion of the cases taken to laparotomy. Although sexual intercourse was practised freely by the subjects of our experiments and those of Ishikawa el al., no pregnancies occurred. Since ovulation presumably took place in a proportion of cycles, the lack of any pregnancies may be due to chance, but Ishikawa et al. (1957) have presented data indicating that in women receiving oral progesterone the cervical mucus becomes impenetrable to sperm.
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At the Fifth International Conference on Planned Parenthood in Tokyo, Pincus (1955) reported an ovulation inhibition by progesterone or norethynodrel1 taken orally by women. This report indicated the beginning of a new era in the history of contraception. ... That the cervical mucus might be one of the principal sites of action was suggested by the first studies of Pincus (1956, 1959) and of Ishikawa et al. (1957). These investigators found that no pregnancies occurred in women treated orally with large doses of progesterone, though ovulation was inhibited only in some 70% of the cases studied. ... The mechanism of protection in this method—and probably in that of Pincus (1956) and of Ishikawa et al. (1957)—must involve an effect on the cervical mucus and/or endometrium and Fallopian tubes.
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Still, neither of the two researchers was completely satisfied with the results. Progesterone tended to cause "premature menses", or breakthrough bleeding, in approximately 20 percent of the cycles, an occurrence that disturbed the patients and worried Rock.17 In addition, Pincus was concerned about the failure to inhibit ovulation in all the cases. Only large doses of orally administered progesterone could insure the suppression of ovulation, and these doses were expensive. The mass use of this regimen as a birth control method was thus seriously imperiled.
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Further reading
- Black A, Guilbert E, Costescu D, Dunn S, Fisher W, Kives S, et al. (April 2017). "No. 329-Canadian Contraception Consensus Part 4 of 4 Chapter 9: Combined Hormonal Contraception". Journal of Obstetrics and Gynaecology Canada. 39 (4): 229–268.e5. doi:10.1016/j.jogc.2016.10.005. PMID 28413042.
External links
- The Birth Control Pill—CBC Digital Archives
- The Birth of the Pill—slide show by Life magazine
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