medroxyprogesterone
Regulatory sources consulted
Approved indications
- Prevention of pregnancy in females of reproductive potential.
Contraindications
Absolute
- Known or suspected pregnancy.
- Active thrombophlebitis, history of thromboembolic disorder, or cerebrovascular disease.
- Known or suspected breast cancer, significant liver disease, undiagnosed vaginal bleeding, or hypersensitivity.
Clinical warnings
- Boxed warning · Boxed warning: it may cause substantial bone mineral density loss, greater with duration and not always reversible. Use beyond 2 years is not recommended unless other options are inadequate. — DailyMed, medroxyprogesterone acetate injectable suspension, set ID 987496bf-b4b0-409b-b745-f52ed0871f4e
- Major warning · Discontinue if thrombosis or liver dysfunction occurs. Consider ectopic pregnancy if pregnancy or severe abdominal pain occurs; return to fertility may be delayed. — DailyMed, medroxyprogesterone acetate injectable suspension, set ID 987496bf-b4b0-409b-b745-f52ed0871f4e
Drug interactions
- HighEnzyme inducers, including CYP3A4 inducers and St John’s wort
Mechanism: They may reduce progestin exposure and contraceptive effectiveness.
Recommendation: Use additional contraception or an alternative method.
DailyMed, medroxyprogesterone acetate injectable suspension, set ID 987496bf-b4b0-409b-b745-f52ed0871f4ehttps://dailymed.nlm.nih.gov/dailymed/drugInfo.cfm?setid=987496bf-b4b0-409b-b745-f52ed0871f4e
Adverse events
Common (≥1%)
Menstrual irregularity, bleeding, or spotting · Headache · Abdominal pain or discomfort · Weight gain · Dizziness or nervousness · Decreased libido
Rare but serious
Thromboembolism · Anaphylaxis · Substantial bone mineral density loss
Pregnancy and lactation
Do not administer during pregnancy. Detectable amounts occur in human milk; the breastfeeding decision should consider the benefit of breastfeeding and the clinical need for treatment.
Recent literature (PubMed)
Menopause, due to loss of ovarian follicular activity without another pathological or physiological cause, typically occurs between the ages of 45 years and 56 years. During the menopausal transition, approximately 50% to 75% of women have hot flashes, night sweats, or both (vasomotor symptoms) and more than 50% have genitourinary symptoms (genitourinary syndrome of menopause [GSM]). Vasomotor symptoms typically last more than 7 years and GSM is often chronic. Efficacious treatments for women with bothersome vasomotor symptoms or GSM symptoms include hormonal and nonhormonal options. Systemic estrogen alone or combined with a progestogen reduces the frequency of vasomotor symptoms by approximately 75%. Oral and transdermal estrogen have similar efficacy. Conjugated equine estrogens (CEE) with or without medroxyprogesterone acetate (MPA) were the only hormonal treatments for which clinical trials were designed to examine cardiovascular events, venous thromboembolism, and breast cancer risk. Compared with placebo, the increased risk of stroke and venous thromboembolism associated with CEE (with or without MPA) and breast cancer (with use of CEE plus MPA) is approximately 1 excess event/1000 person-years. Low-dose CEE plus bazedoxifene is not associated with increased risk of breast cancer (0.25%/year vs 0.23%/year with placebo). Bioidentical estrogens approved by the US Food and Drug Administration (with identical chemical structure to naturally produced estrogens, and often administered transdermally) also are available to treat vasomotor symptoms. For women who are not candidates for hormonal treatments, nonhormonal approaches such as citalopram, desvenlafaxine, escitalopram, gabapentin, paroxetine, and venlafaxine are available and are associated with a reduction in frequency of vasomotor symptoms by approximately 40% to 65%. Low-dose vaginal estrogen is associated with subjective improvement in GSM symptom severity by approximately 60% to 80%, with improvement in
Enthusiasm for the use of hormones to ameliorate symptoms of perimenopause and menopause has waxed and waned over the years. Both treatment for symptoms and training of women's health care practitioners in the management of menopause have sharply declined since publication of the Women's Health Initiative initial results in 2002. Findings from that trial, which treated a population of older, asymptomatic patients, have been extrapolated over the past 21 years to all estrogen products, all menopausal women, and all delivery mechanisms. Our patients deserve a more nuanced, individualized approach. Conjugated equine estrogens and medroxyprogesterone acetate are no longer the predominant medications or medications of choice available for management of menopausal symptoms. All hormones are not equivalent any more than all antiseizure medications or all antihypertensives are equivalent; they have different pharmacodynamics, duration of action, and affinity for receptors, among other things, all of which translate to different risks and benefits. Consideration of treatment with the right formulation, at the right dose and time, and for the right patient will allow us to recommend safe, effective, and appropriate treatment for people with menopausal symptoms.
Hormonal contraceptive therapy (estrogens and/or progestogens) includes different formulations associated with varying venous thromboembolism (VTE) risks. The thrombogenicity of combined hormonal contraceptives (CHCs) is due at least in part to multiple changes in clotting factors and the vasculature and is dependent on both estrogen dose and type of progestin. Transdermal patch and vaginal ring users have similar or higher VTE risk as combined oral contraceptive users. Progestin-only agents have varying VTE risk. While depot medroxyprogesterone acetate appears to increase VTE risk, the levonorgestrel-based intrauterine system and low-dose progestin-only pills have no additional VTE risk. There are less data for the subdermal progestin-only implant. This article reviews contraceptive-related VTE risk by agent and by clinical scenario, including in patients with inherited thrombophilia, systemic lupus erythematosus with or without antiphospholipid antibodies or antiphospholipid syndrome, and sickle cell disease. Relevant clinical practice guidelines are reviewed. A multidisciplinary approach to counseling is needed for patient-focused decision-making.
Approximately 55 million people in the US and approximately 1.1 billion people worldwide are postmenopausal women. To inform clinical practice about the health effects of menopausal hormone therapy, calcium plus vitamin D supplementation, and a low-fat dietary pattern, the Women's Health Initiative (WHI) enrolled 161 808 postmenopausal US women (N = 68 132 in the clinical trials) aged 50 to 79 years at baseline from 1993 to 1998, and followed them up for up to 20 years. The WHI clinical trial results do not support hormone therapy with oral conjugated equine estrogens plus medroxyprogesterone acetate for postmenopausal women or conjugated equine estrogens alone for those with prior hysterectomy to prevent cardiovascular disease, dementia, or other chronic diseases. However, hormone therapy is effective for treating moderate to severe vasomotor and other menopausal symptoms. These benefits of hormone therapy in early menopause, combined with lower rates of adverse effects of hormone therapy in early compared with later menopause, support initiation of hormone therapy before age 60 years for women without contraindications to hormone therapy who have bothersome menopausal symptoms. The WHI results do not support routinely recommending calcium plus vitamin D supplementation for fracture prevention in all postmenopausal women. However, calcium and vitamin D are appropriate for women who do not meet national guidelines for recommended intakes of these nutrients through diet. A low-fat dietary pattern with increased fruit, vegetable, and grain consumption did not prevent the primary outcomes of breast or colorectal cancer but was associated with lower rates of the secondary outcome of breast cancer mortality during long-term follow-up. For postmenopausal women, the WHI randomized clinical trials do not support menopausal hormone therapy to prevent cardiovascular disease or other chronic diseases. Menopausal hormone therapy is appropriate to treat bothersome vasomotor symp
In the past, the primary approach for the treatment of endometriosis was represented by surgery; however, after the introduction of non-invasive diagnosis of endometriosis with the development of imaging technologies, medical treatment became the preferred approach, particularly in young patients. Hormonal drugs, by blocking menstruation, are the most effective for the treatment of endometriosis-related pain, independently of phenotype (ovarian, deep, or superficial endometriosis). Gonadotropin-releasing hormone analogs and oral antagonists act on hypothalamus-pituitary-ovary axis inducing iatrogenic menopause, thus reducing dysmenorrhea and all pain symptoms. The side effects, such as hot flushes and bone loss, may be reduced by an add-back therapy. However, the cost in terms of women's health remains high in view of a long-term treatment. Progestins are considered the first-line treatment, highly effective, and with reduced side effects. In addition to the well-known and largely used Norethisterone acetate and Medroxyprogesterone acetate, recently Dienogest has become one of the most used drugs in all endometriosis phenotypes for long-term treatment. Besides, Intrauterine levornogestrel or subcutaneous etonogestrel are valid alternative for long-term treatment.