Premarin Drug Information
Generic name: ESTROGENS, CONJUGATED
Estrogen [EPC]
Uses of Premarin
Treatment of Moderate to Severe Vasomotor
Symptoms due to Menopause
Treatment of Moderate to Severe Symptoms of Vulvar and Vaginal Atrophy due to Menopause Limitations of Use When prescribing solely for the treatment of moderate to severe symptoms of vulvar and vaginal atrophy due to menopause, topical vaginal products should be considered.
Treatment of Hypoestrogenism due to Hypogonadism, Castration or Primary Ovarian Failure
Treatment of Breast Cancer (for Palliation Only) in Appropriately Selected Women and Men with Metastatic Disease
Treatment of Advanced Androgen-Dependent Carcinoma of the Prostate (for Palliation Only)
Prevention of Postmenopausal Osteoporosis Limitations of Use
When prescribing solely for the prevention of postmenopausal osteoporosis, therapy should only be considered for women at significant risk of osteoporosis and non-estrogen medication should be carefully considered.
Dosage & Administration of Premarin
Treatment of Moderate to Severe Symptoms of Vulvar and Vaginal Atrophy due to Menopause Patients should be treated with the lowest effective dose. Generally, women should be started at 0.3 mg PREMARIN daily. Subsequent dosage adjustment may be made based upon the individual patient response.
This dose should be periodically reassessed by the healthcare provider. PREMARIN therapy may be given continuously, with no interruption in therapy, or in cyclical regimens (regimens such as 25 days on drug followed by 5 days off drug), as is medically appropriate on an individual basis.
Treatment of Hypoestrogenism due to Hypogonadism, Castration, or Primary Ovarian Failure PREMARIN therapy should be initiated and maintained with the lowest effective dose to achieve clinical goals. Female hypogonadism: 0.3 mg or 0.625 mg daily, administered cyclically (e.g., three weeks on and one week off). Doses are adjusted depending on the severity of symptoms and responsiveness of the endometrium.
Female castration or primary ovarian failure: 1.25 mg daily, cyclically. Adjust dosage, upward or downward, according to severity of symptoms and response of the patient. For maintenance, adjust dosage to lowest level that will provide effective control.
Treatment of Breast Cancer (for Palliation Only) in Appropriately Selected Women and Men with Metastatic Disease Suggested dosage is 10 mg three times daily, for a period of at least three months.
Treatment of Advanced Androgen-Dependent Carcinoma of the Prostate (for Palliation Only) 1.25 mg to 2 × 1.25 mg three times daily. The effectiveness of therapy can be judged by phosphatase determinations as well as by symptomatic improvement of the patient.
Prevention of Postmenopausal Osteoporosis
Subsequent dosage adjustment may be made based upon the individual clinical and bone mineral density responses.
Side Effects of Premarin
Clinical Study Experience
Because clinical trials are conducted under widely varying conditions, adverse reaction rates observed in the clinical trials of a drug cannot be directly compared to rates in the clinical trials of another drug and may not reflect the rates observed in clinical practice. Table 1 summarizes treatment-related adverse reactions that occurred at a rate of ≥1% in any treatment group. Table 1: Treatment-Related Adverse Reactions at a Frequency Postmarketing Experience The following additional adverse reactions have been identified during post-approval use of PREMARIN.
Because these reactions are reported voluntarily from a population of uncertain size, it is not possible always to reliably estimate their frequency or establish a causal relationship to drug exposure. Genitourinary system Abnormal uterine bleeding; dysmenorrheal or pelvic pain, increase in size of uterine leiomyomata, vaginitis, including vaginal candidiasis, change in cervical secretion, ovarian cancer, endometrial hyperplasia, endometrial cancer, leukorrhea. Breasts Tenderness, enlargement, pain, discharge, galactorrhea, fibrocystic breast changes, breast cancer, gynecomastia in males.
Cardiovascular Deep and superficial venous thrombosis, pulmonary embolism, thrombophlebitis, myocardial infarction, stroke, increase in blood pressure. Gastrointestinal Nausea, vomiting, abdominal pain, bloating, cholestatic jaundice, increased incidence of gallbladder disease, pancreatitis, enlargement of hepatic hemangiomas, ischemic colitis. Skin Chloasma or melasma that may persist when drug is discontinued, erythema multiforme, erythema nodosum, loss of scalp hair, hirsutism, pruritus, rash.
Eyes Retinal vascular thrombosis, intolerance to contact lenses. Central nervous system Headache, migraine, dizziness, mental depression, nervousness, mood disturbances, irritability, exacerbation of epilepsy, dementia, possible growth potentiation of benign meningioma. Miscellaneous Increase or decrease in weight, glucose intolerance, aggravation of porphyria, edema, arthralgias, leg cramps, changes in libido, urticaria, exacerbation of asthma, increased triglycerides, hypersensitivity.
| PREMARIN 0.625 mg (n=348) | PREMARIN 0.45 mg (n=338) | PREMARIN 0.3 mg (n=326) | Placebo (n=332) | |
|---|---|---|---|---|
| Body as a whole | ||||
| Abdominal pain | 38 (11) | 28 (8) | 30 (9) | 21 (6) |
| Asthenia | 16 (5) | 8 (2) | 14 (4) | 3 (1) |
| Back pain | 18 (5) | 11 (3) | 13 (4) | 4 (1) |
| Chest pain | 2 (1) | 3 (1) | 4 (1) | 2 (1) |
| Generalized edema | 7 (2) | 6 (2) | 4 (1) | 8 (2) |
| Headache | 45 (13) | 47 (14) | 44 (13) | 46 (14) |
| Moniliasis | 5 (1) | 4 (1) | 4 (1) | 1 (0) |
| Pain | 17 (5) | 10 (3) | 12 (4) | 14 (4) |
| Pelvic pain | 10 (3) | 9 (3) | 8 (2) | 4 (1) |
| Cardiovascular system | ||||
| Hypertension | 4 (1) | 4 (1) | 7 (2) | 5 (2) |
| Migraine | 7 (2) | 1 (0) | 0 | 3 (1) |
| Palpitation | 3 (1) | 3 (1) | 3 (1) | 4 (1) |
| Vasodilatation | 2 (1) | 2 (1) | 3 (1) | 5 (2) |
| Digestive system | ||||
| Constipation | 7 (2) | 6 (2) | 4 (1) | 3 (1) |
| Diarrhea | 4 (1) | 5 (1) | 5 (2) | 8 (2) |
| Dyspepsia | 7 (2) | 5 (1) | 6 (2) | 14 (4) |
| Eructation | 1 (0) | 1 (0) | 4 (1) | 1 (0) |
| Flatulence | 22 (6) | 18 (5) | 13 (4) | 8 (2) |
| Increased appetite | 4 (1) | 1 (0) | 1 (0) | 2 (1) |
| Nausea | 16 (5) | 10 (3) | 15 (5) | 16 (5) |
| Metabolic and nutritional | ||||
| Hyperlipidemia | 2 (1) | 4 (1) | 3 (1) | 2 (1) |
| Peripheral edema | 5 (1) | 2 (1) | 4 (1) | 3 (1) |
| Weight gain | 11 (3) | 10 (3) | 8 (2) | 14 (4) |
| Musculoskeletal system | ||||
| Arthralgia | 6 (2) | 3 (1) | 2 (1) | 5 (2) |
| Leg cramps | 10 (3) | 5 (1) | 9 (3) | 4 (1) |
| Myalgia | 2 (1) | 1 (0) | 4 (1) | 1 (0) |
| Nervous system | ||||
| Anxiety | 6 (2) | 4 (1) | 2 (1) | 4 (1) |
| Depression | 17 (5) | 15 (4) | 10 (3) | 17 (5) |
| Dizziness | 9 (3) | 7 (2) | 4 (1) | 5 (2) |
| Emotional lability | 3 (1) | 4 (1) | 5 (2) | 8 (2) |
| Hypertonia | 1 (0) | 1 (0) | 5 (2) | 3 (1) |
| Insomnia | 16 (5) | 10 (3) | 13 (4) | 14 (4) |
| Nervousness | 9 (3) | 12 (4) | 2 (1) | 6 (2) |
| Skin and appendages | ||||
| Acne | 3 (1) | 1 (0) | 8 (2) | 3 (1) |
| Alopecia | 6 (2) | 6 (2) | 5 (2) | 2 (1) |
| Hirsutism | 4 (1) | 2 (1) | 1 (0) | 0 |
| Pruritus | 11 (3) | 11 (3) | 10 (3) | 3 (1) |
| Rash | 6 (2) | 3 (1) | 1 (0) | 2 (1) |
| Skin discoloration | 4 (1) | 2 (1) | 0 | 1 (0) |
| Sweating | 4 (1) | 1 (0) | 3 (1) | 4 (1) |
| Urogenital system | ||||
| Breast disorder | 6 (2) | 3 (1) | 3 (1) | 6 (2) |
| Breast enlargement | 3 (1) | 4 (1) | 7 (2) | 3 (1) |
| Breast neoplasm | 4 (1) | 4 (1) | 7 (2) | 7 (2) |
| Breast pain | 37 (11) | 39 (12) | 24 (7) | 26 (8) |
| Cervix disorder | 8 (2) | 4 (1) | 5 (2) | 0 |
| Dysmenorrhea | 12 (3) | 10 (3) | 4 (1) | 2 (1) |
| Endometrial disorder | 4 (1) | 2 (1) | 2 (1) | 0 |
| Endometrial hyperplasia | 16 (5) | 8 (2) | 1 (0) | 0 |
| Leukorrhea | 17 (5) | 17 (5) | 12 (4) | 6 (2) |
| Metrorrhagia | 11 (3) | 4 (1) | 3 (1) | 1 (0) |
| Urinary tract infection | 1 (0) | 2 (1) | 1 (0) | 4 (1) |
| Uterine fibroids enlarged | 6 (2) | 1 (0) | 2 (1) | 2 (1) |
| Uterine spasm | 11 (3) | 5 (1) | 3 (1) | 2 (1) |
| Vaginal dryness | 1 (0) | 2 (1) | 1 (0) | 6 (2) |
| Vaginal hemorrhage | 46 (13) | 13 (4) | 6 (2) | 0 |
| Vaginal moniliasis | 14 (4) | 10 (3) | 12 (4) | 5 (2) |
| Vaginitis | 18 (5) | 7 (2) | 9 (3) | 1 (0) |
Warnings & Cautions for Premarin
Cardiovascular Disorders
An increased risk of stroke and DVT has been reported with estrogen-alone therapy. Should any of these events occur or be suspected, estrogen with or without progestin therapy should be discontinued immediately. Risk factors for arterial vascular disease (for example, hypertension, diabetes mellitus, tobacco use, hypercholesterolemia, and obesity) and/or venous thromboembolism (VTE) (for example, personal or family history of VTE, obesity, and systemic lupus erythematosus) should be managed appropriately.
The increase in risk was demonstrated in Year 1 and persisted. Should a stroke occur or be suspected, estrogen-alone therapy should be discontinued immediately. Coronary Heart Disease In the WHI estrogen-alone substudy, no overall effect on coronary heart disease (CHD) events (defined as nonfatal MI, silent MI, or CHD death) was reported in women receiving estrogen-alone compared to placebo 2.
In postmenopausal women with documented heart disease (n = 2,763, average 66.7 years of age), in a controlled clinical trial of secondary prevention of cardiovascular disease (Heart and Estrogen/Progestin Replacement Study; HERS), treatment with daily CE (0.625 mg) plus MPA (2.5 mg) demonstrated no cardiovascular benefit. During an average follow-up of 4.1 years, treatment with CE plus MPA did not reduce the overall rate of CHD events in postmenopausal women with established CHD. There were more CHD events in the CE plus MPA‑treated group than in the placebo group in Year 1, but not during the subsequent years.
Two thousand, three hundred and twenty-one women from the original HERS trial agreed to participate in an open label extension of HERS, HERS II. Average follow-up in HERS II was an additional 2.7 years, for a total of 6.8 years overall. Rates of CHD events were comparable among women in the CE (0.625 mg) plus MPA (2.5 mg) group and the placebo group in HERS, HERS II, and overall.
The increase in VTE risk was demonstrated during the first 2 years 3. Should a VTE occur or be suspected, estrogen plus progestin therapy should be discontinued immediately. If feasible, estrogens should be discontinued at least 4 to 6 weeks before surgery of the type associated with an increased risk of thromboembolism, or during periods of prolonged immobilization.
Malignant Neoplasms Endometrial Cancer
An increased risk of endometrial cancer has been reported with the use of unopposed estrogen therapy in a woman with a uterus. The reported endometrial cancer risk among unopposed estrogen users is about 2 to 12 times greater than in non-users, and appears dependent on duration of treatment and on estrogen dose. Most studies show no significant increased risk associated with use of estrogens for less than 1 year.
The greatest risk appears to be associated with prolonged use, with increased risks of 15- to 24-fold for 5 to 10 years or more, and this risk has been shown to persist for at least 8 to 15 years after estrogen therapy is discontinued. Clinical surveillance of all women using estrogen-alone or estrogen plus progestin therapy is important. Adequate diagnostic measures, including directed or random endometrial sampling when indicated, should be undertaken to rule out malignancy in postmenopausal women with undiagnosed persistent or recurring abnormal genital bleeding.
There is no evidence that the use of natural estrogens results in a different endometrial risk profile than synthetic estrogens of equivalent estrogen dose. Adding a progestin to postmenopausal estrogen therapy has been shown to reduce the risk of endometrial hyperplasia, which may be a precursor to endometrial cancer. Breast Cancer The WHI substudy of daily CE (0.625 mg)-alone provided information about breast cancer in estrogen-alone users.
In the WHI estrogen-alone substudy, after an average follow-up of 7.1 years, daily CE (0.625 mg)-alone was not associated with an increased risk of invasive breast cancer 5. After a mean follow-up of 5.6 years, the estrogen plus progestin substudy reported an increased risk of invasive breast cancer in women who took daily CE plus MPA. In this substudy, prior use of estrogen-alone or estrogen plus progestin therapy was reported by 26% of the women.
Among women who reported no prior use of hormone therapy, the relative risk of invasive breast cancer was 1.09, and the absolute risk was 40 versus 36 cases per 10,000 women-years for CE plus MPA compared with placebo. In the same substudy, invasive breast cancers were larger, were more likely to be node positive, and were diagnosed at a more advanced stage in the CE (0.625 mg) plus MPA (2.5 mg) group compared with the placebo group. Metastatic disease was rare, with no apparent difference between the two groups.
Other prognostic factors, such as histologic subtype, grade and hormone receptor status did not differ between the groups. Consistent with the WHI clinical trials, observational studies have also reported an increased risk of breast cancer for estrogen plus progestin therapy, and a smaller increased risk for estrogen-alone therapy, after several years of use. One large meta-analysis of prospective cohort studies reported increased risks that were dependent upon duration of use and could last up to >10 years after discontinuation of estrogen plus progestin therapy and estrogen‑alone therapy.
Extension of the WHI trials also demonstrated increased breast cancer risk associated with estrogen plus progestin therapy. Observational studies also suggest that the risk of breast cancer was greater, and became apparent earlier, with estrogen plus progestin therapy as compared to estrogen-alone therapy. However, these studies have not found significant variation in the risk of breast cancer among different estrogen plus progestin combinations, doses, or routes of administration.
The use of estrogen-alone and estrogen plus progestin has been reported to result in an increase in abnormal mammograms, requiring further evaluation. All women should receive yearly breast examinations by a healthcare provider and perform monthly breast self‑examinations. In addition, mammography examinations should be scheduled based on patient age, risk factors, and prior mammogram results.
Ovarian Cancer The WHI estrogen plus progestin substudy reported a statistically non-significant increased risk of ovarian cancer. The primary analysis, using case-control comparisons, included 12,110 cancer cases from the 17 prospective studies. The relative risks associated with current use of hormonal therapy was there was no difference in the risk estimates by duration of the exposure (less than 5 years vs. greater than 5 years of use before the cancer diagnosis).
The relative risk associated with combined current and recent use (discontinued use within 5 years before cancer diagnosis) was 1.37 (95% CI 1.27–1.48), and the elevated risk was significant for both estrogen-alone and estrogen plus progestin products. The exact duration of hormone therapy use associated with an increased risk of ovarian cancer, however, is unknown.
Probable Dementia In the WHIMS estrogen-alone ancillary study of WHI, a population of 2,947 hysterectomized women 65 to 79 years of age was randomized to daily CE (0.625 mg)-alone or placebo. After an average follow-up of 5.2 years, 28 women in the estrogen-alone group and 19 women in the placebo group were diagnosed with probable dementia. The relative risk of probable dementia for CE-alone versus placebo was 1.49 (95% CI 0.83–2.66).
After an average follow-up of 4 years, 40 women in the CE plus MPA group and 21 women in the placebo group were diagnosed with probable dementia. The relative risk of probable dementia for CE plus MPA versus placebo was 2.05 (95% CI 1.21–3.48). When data from the two populations in the WHIMS estrogen-alone and estrogen plus progestin ancillary studies were pooled as planned in the WHIMS protocol, the reported overall relative risk for probable dementia was 1.76 (95% CI 1.19–2.60).
Since both substudies were conducted in women 65 to 79 years of age, it is unknown whether these findings apply to younger postmenopausal women 8.
Gallbladder Disease A 2- to 4-fold increase in the risk of gallbladder disease requiring surgery in postmenopausal women receiving estrogens has been reported.
Hypercalcemia
Estrogen administration may lead to severe hypercalcemia in patients with breast cancer and bone metastases. If hypercalcemia occurs, use of the drug should be stopped and appropriate measures taken to reduce the serum calcium level.
Visual Abnormalities
Retinal vascular thrombosis has been reported in patients receiving estrogens. Discontinue medication pending examination if there is sudden partial or complete loss of vision, or a sudden onset of proptosis, diplopia, or migraine. If examination reveals papilledema or retinal vascular lesions, estrogens should be permanently discontinued.
Anaphylactic Reaction and Angioedema Cases of anaphylaxis, which developed within minutes to hours after taking PREMARIN and require emergency medical management, have been reported in the postmarketing setting. Skin (hives, pruritis, swollen lips-tongue-face) and either respiratory tract (respiratory compromise) or gastrointestinal tract (abdominal pain, vomiting) involvement has been noted. Angioedema involving the tongue, larynx, face, hands, and feet requiring medical intervention has occurred postmarketing in patients taking PREMARIN.
If angioedema involves the tongue, glottis, or larynx, airway obstruction may occur. Patients who develop an anaphylactic reaction with or without angioedema after treatment with PREMARIN should not receive PREMARIN again.
Addition of a Progestin When a Woman Has Not Had a Hysterectomy Studies of the addition of a progestin for 10 or more days of a cycle of estrogen administration or daily with estrogen in a continuous regimen, have reported a lowered incidence of endometrial hyperplasia than would be induced by estrogen treatment alone. There are, however, possible risks that may be associated with the use of progestins with estrogens compared to estrogen-alone regimens. These include an increased risk of breast cancer.
Elevated Blood Pressure In a small number of case reports, substantial increases in blood pressure have been attributed to idiosyncratic reactions to estrogens. In a large, randomized, placebo-controlled clinical trial, a generalized effect of estrogen therapy on blood pressure was not seen.
Exacerbation of Hypertriglyceridemia
In women with pre-existing hypertriglyceridemia, estrogen therapy may be associated with elevations of plasma triglycerides leading to pancreatitis. Consider discontinuation of treatment if pancreatitis occurs.
Hepatic
Impairment and/or Past History of Cholestatic Jaundice Estrogens may be poorly metabolized in patients with impaired liver function. For women with a history of cholestatic jaundice associated with past estrogen use or with pregnancy, caution should be exercised, and in the case of recurrence, medication should be discontinued.
Exacerbation of Hypothyroidism
Estrogen administration leads to increased thyroid-binding globulin (TBG) levels. Women with normal thyroid function can compensate for the increased TBG by making more thyroid hormone, thus maintaining free T 4 and T 3 serum concentrations in the normal range. Women dependent on thyroid hormone replacement therapy who are also receiving estrogens may require increased doses of their thyroid replacement therapy.
These women should have their thyroid function monitored in order to maintain their free thyroid hormone levels in an acceptable range.
Fluid Retention Estrogens may cause some degree of fluid retention. Women with conditions that might be influenced by this factor, such as a cardiac or renal dysfunction, warrant careful observation when estrogens are prescribed.
Hypocalcemia
Estrogen therapy should be used with caution in all patients with hypoparathyroidism as estrogen-induced hypocalcemia may occur.
Hereditary Angioedema
Exogenous estrogens may exacerbate symptoms of angioedema in women with hereditary angioedema.
Exacerbation of Endometriosis
A few cases of malignant transformation of residual endometrial implants have been reported in women treated post-hysterectomy with estrogen-alone therapy. For women known to have residual endometriosis post-hysterectomy, the addition of progestin should be considered.
Exacerbation of Other Conditions
Estrogen therapy may cause an exacerbation of asthma, diabetes mellitus, epilepsy, migraine, porphyria, systemic lupus erythematosus, and hepatic hemangiomas and should be used with caution in women with these conditions.
Laboratory Tests
Serum follicle stimulating hormone (FSH) and estradiol levels have not been shown to be useful in the management of moderate to severe vasomotor symptoms and moderate to severe symptoms of vulvar and vaginal atrophy. Laboratory parameters may be useful in guiding dosage for the treatment of hypoestrogenism due to hypogonadism, castration and primary ovarian failure.
Drug-Laboratory Test Interactions •
Accelerated prothrombin time, partial thromboplastin time, and platelet aggregation time; increased platelet count; increased factors II, VII antigen, VIII antigen, VIII coagulant activity, IX, X, XII, VII‑X complex, II-VII-X complex, and beta-thromboglobulin; decreased levels of anti-factor Xa and antithrombin III, decreased antithrombin III activity; increased levels of fibrinogen and fibrinogen activity; increased plasminogen antigen and activity. • Increased thyroid-binding globulin (TBG) levels leading to increased circulating total thyroid hormone levels as measured by protein-bound iodine (PBI), T 4 levels (by column or by radioimmunoassay) or T 3 levels by radioimmunoassay. T 3 resin uptake is decreased, reflecting the elevated TBG. Free T 4 and free T 3 concentrations are unaltered.
Patients on thyroid replacement therapy may require higher doses of thyroid hormone. • Other binding proteins may be elevated in serum, for example, corticosteroid binding globulin (CBG), sex hormone-binding globulin (SHBG), leading to increased total circulating corticosteroids and sex steroids, respectively. Free hormone concentrations, such as testosterone and estradiol, may be decreased. Other plasma proteins may be increased (angiotensinogen/renin substrate, alpha‑1‑antitrypsin, ceruloplasmin). • Increased plasma high-density lipoprotein (HDL) and HDL 2 cholesterol subfraction, reduced low‑density lipoprotein (LDL) cholesterol, increased triglyceride levels. • Impaired glucose tolerance.
Drug Interactions with Premarin
Metabolic Interactions
In vitro and in vivo studies have shown that estrogens are metabolized partially by cytochrome P450 3A4 (CYP3A4). Therefore, inducers or inhibitors of CYP3A4 may affect estrogen drug metabolism. Inducers of CYP3A4, such as St.
John's Wort ( Hypericum perforatum ) preparations, phenobarbital, carbamazepine, and rifampin, may reduce plasma concentrations of estrogens, possibly resulting in a decrease in therapeutic effects and/or changes in the uterine bleeding profile. Inhibitors of CYP3A4, such as erythromycin, clarithromycin, ketoconazole, itraconazole, ritonavir and grapefruit juice, may increase plasma concentrations of estrogens and may result in side effects.
Pregnancy Safety for Premarin
Pregnancy Risk Summary PREMARIN is not indicated for use during pregnancy. There are no data with the use of PREMARIN tablet in pregnant women; however, epidemiologic studies and meta-analyses have not found an increased risk of genital or nongenital birth defects (including cardiac anomalies and limb-reduction defects) following exposure to combined hormonal contraceptives (estrogen and progestins) before conception or during early pregnancy. In the U.S. general population, the estimated background risk of major birth defects and miscarriage in clinically recognized pregnancies is respectively.
Pediatric Use of Premarin
Pediatric Use Estrogen therapy has been used for the induction of puberty in adolescents with some forms of pubertal delay. Safety and effectiveness in pediatric patients have not otherwise been established. Large and repeated doses of estrogen over an extended time period have been shown to accelerate epiphyseal closure, which could result in short stature if treatment is initiated before the completion of physiologic puberty in normally developing children.
If estrogen is administered to patients whose bone growth is not complete, periodic monitoring of bone maturation and effects on epiphyseal centers is recommended during estrogen administration. Estrogen treatment of prepubertal girls also induces premature breast development and vaginal cornification, and may induce vaginal bleeding. In boys, estrogen treatment may modify the normal pubertal process and induce gynecomastia.
Contraindications for Premarin
- PREMARIN therapy is contraindicated in individuals with any of the following conditions:
- Undiagnosed abnormal genital bleeding
- Breast cancer or a history of breast cancer except in appropriately selected patients being treated for metastatic disease
- Estrogen-dependent neoplasia
- Active DVT, PE, or a history of these conditions
- Active arterial thromboembolic disease (for example stroke and MI), or a history of these conditions
- Known anaphylactic reaction or angioedema with PREMARIN
- Hepatic impairment or disease
- Protein C, protein S or antithrombin deficiency, or other known thrombophilic disorders.
- Undiagnosed abnormal genital bleeding
- Estrogen-dependent neoplasia
- Hepatic impairment or disease
Overdosage Information for Premarin
Overdosage of estrogen may cause nausea, vomiting, breast tenderness, abdominal pain, drowsiness and fatigue, and withdrawal bleeding may occur in women. Treatment of overdose consists of discontinuation of PREMARIN therapy with institution of appropriate symptomatic care.
Clinical Studies of Premarin
Effects on Vasomotor Symptoms In the first year of the Health and Osteoporosis, Progestin and Estrogen (HOPE) Study, a total of 2,805 postmenopausal women (average age 53.3 ± 4.9 years) were randomly assigned to one of eight treatment groups of either placebo or CE, with or without MPA. Efficacy for vasomotor symptoms was assessed during the first 12 weeks of treatment in a subset of symptomatic women (n = 241) who had at least seven moderate to severe hot flushes daily, or at least 50 moderate to severe hot flushes during the week before randomization. Table 3: Summary Tabulation of the Number of Hot Flushes Per Day – Mean Values and Comparisons Between the Active Treatment Groups and the Placebo Group: Patients with at Least 7 Moderate to Severe Flushes Per Day or at Least 50 Per Week at Baseline, Last Observation Carried Forward (LOCF).2 Effects on Vulvar and Vaginal Atrophy Results of vaginal maturation indexes at cycles 6 and 13 showed that the differences from placebo were statistically significant (p < 0.001) for all treatment groups. (CE alone and CE/MPA treatment groups).
Effects on Bone Mineral Density Health and Osteoporosis, Progestin and Estrogen (HOPE) Study The HOPE study was a double-blind, randomized, placebo/active-drug-controlled, multicenter study of healthy postmenopausal women with an intact uterus. Subjects were not given Vitamin D supplements. They were treated with PREMARIN 0.625 mg, 0.45 mg, 0.3 mg, or placebo.
Prevention of bone loss was assessed by measurement of bone mineral density (BMD), primarily at the anteroposterior lumbar spine (L 2 to L 4 ). Secondarily, BMD measurements of the total body, femoral neck, and trochanter were also analyzed. Serum osteocalcin, urinary calcium, and N-telopeptide were used as bone turnover markers (BTM) at cycles Intent-to-treat subjects All active treatment groups showed significant differences from placebo in each of the four BMD endpoints at cycles The mean percent increases in the primary efficacy measure (L 2 to L 4 BMD) at the final on-therapy evaluation (cycle 26 for those who completed and the last available evaluation for those who discontinued early) were mg, and 1.13% with 0.3 mg.
The placebo group showed a mean percent decrease from baseline at the final evaluation of 2.45%. These results show that the lower dosages of PREMARIN were effective in increasing L 2 to L 4 BMD compared with placebo, and therefore support the efficacy of the lower doses. The analysis for the other three BMD endpoints yielded mean percent changes from baseline in femoral trochanter that were generally larger than those seen for L 2 to L 4, and changes in femoral neck and total body that were generally smaller than those seen for L 2 to L 4.
Significant differences between groups indicated that each of the PREMARIN treatments was more effective than placebo for all three of these additional BMD endpoints. With regard to femoral neck and total body, the active treatment groups all showed mean percent increases in BMD, while placebo treatment was accompanied by mean percent decreases. For femoral trochanter, each of the PREMARIN dose groups showed a mean percent increase that was significantly greater than the small increase seen in the placebo group.
The percent changes from baseline to final evaluation are shown in Table 4. Table 4: Percent Change in Bone Mineral Density: Comparison Between Active and Placebo Groups in the Intent-to-Treat Population, LOCF Figure 1 shows the cumulative percentage of subjects with changes from baseline equal to or greater than the value shown on the x-axis. Figure 1.
Cumulative Percent of Subjects With Changes From Baseline in Spine BMD of Given Magnitude or Greater in PREMARIN ® and Placebo Groups The mean percent changes from baseline in L 2 to L 4 BMD for women who completed the bone density study are shown with standard error bars by treatment group in Figure 2. Significant differences between each of the PREMARIN dosage groups and placebo were found at cycles Figure 2. Adjusted Mean (SE) Percent Change From Baseline at Each Cycle in Spine BMD: Subjects Completing in PREMARIN Groups and Placebo The bone turnover markers, serum osteocalcin and urinary N-telopeptide, significantly decreased (p < 0.001) in all active-treatment groups at cycles compared with the placebo group.
Larger mean decreases from baseline were seen with the active groups than with the placebo group. Significant differences from placebo were seen less frequently in urine calcium. The dosage may be gradually titrated upward at 6-to 12 month intervals as needed to achieve appropriate bone age advancement and eventual epiphyseal closure.
Available data suggest that chronic dosing with 0.625 mg is sufficient to induce artificial cyclic menses with sequential progestin treatment and to maintain bone mineral density after skeletal maturity is achieved.
Women's Health Initiative Studies The WHI enrolled approximately 27,000 predominantly healthy postmenopausal women in two substudies to assess the risks and benefits of daily oral CE (0.625 mg)-alone or in combination with MPA (2.5 mg) compared to placebo in the prevention of certain chronic diseases. The primary endpoint was the incidence of CHD (defined as nonfatal MI, silent MI and CHD death), with invasive breast cancer as the primary adverse outcome. A "global index" included the earliest occurrence of CHD, invasive breast cancer, stroke, PE, endometrial cancer (only in the CE plus MPA substudy), colorectal cancer, hip fracture, or death due to other causes.
These substudies did not evaluate the effects of CE-alone or CE plus MPA on menopausal symptoms. WHI Estrogen-Alone Substudy The WHI estrogen-alone substudy was stopped early because an increased risk of stroke was observed, and it was deemed that no further information would be obtained regarding the risks and benefits of estrogen alone in predetermined primary endpoints. Table 5: Relative and Absolute Risk Seen in the Estrogen Alone Substudy of WHI Adapted from numerous WHI publications.
WHI publications can be viewed at www.nhlbi.nih.gov/whi. For those outcomes included in the WHI "global index" that reached statistical significance, the absolute excess risk per 10,000 women-years in the group treated with CE-alone was 12 more strokes while the absolute risk reduction per 10,000 women-years was 7 fewer hip fractures. 9 The absolute excess risk of events included in the "global index" was a non-significant 5 events per 10,000 women-years. There was no difference between the groups in terms of all-cause mortality.
No overall difference for primary CHD events (nonfatal MI, silent MI and CHD death) and invasive breast cancer incidence in women receiving CE-alone compared with placebo was reported in final centrally adjudicated results from the estrogen-alone substudy, after an average follow up of 7.1 years. See Table 5. Centrally adjudicated results for stroke events from the estrogen-alone substudy, after an average follow-up of 7.1 years, reported no significant difference in distribution of stroke subtype or severity, including fatal strokes, in women receiving CE-alone compared to placebo.
Estrogen-alone increased the risk for ischemic stroke, and this excess risk was present in all subgroups of women examined. 10 Timing of the initiation of estrogen-alone therapy relative to the start of menopause may affect the overall risk benefit profile. The WHI estrogen-alone substudy stratified by age showed in women 50–59 years of age, a non-significant trend toward reduced risk for CHD and overall mortality. WHI Estrogen Plus Progestin Substudy The WHI estrogen plus progestin substudy was stopped early.
According to the predefined stopping rule, after an average follow-up of 5.6 years of treatment, the increased risk of invasive breast cancer and cardiovascular events exceeded the specified benefits included in the "global index." The absolute excess risk of events included in the "global index" was 19 per 10,000 women-years. These results reflect centrally adjudicated data after an average follow-up of 5.6 years. The absolute risk of probable dementia for CE-alone versus placebo was 37 versus 25 cases per 10,000 women-years.
Probable dementia as defined in this study included Alzheimer's disease (AD), vascular dementia (VaD) and mixed types (having features of both AD and VaD). The most common classification of probable dementia in the treatment group and the placebo groups was AD. Since the ancillary study was conducted in women 65 to 79 years of age, it is unknown whether these findings apply to younger postmenopausal women.
When data from the two populations were pooled as planned in the WHIMS protocol, the reported overall relative risk for probable dementia was 1.76 (95% CI 1.19–2.60). Differences between groups became apparent in the first year of treatment.
| Treatment (No. of Patients) | ---------------No. of Hot Flushes/Day--------------- | |||
| Time Period (week) | Baseline Mean ± SD | Observed Mean ± SD | Mean Change ± SD | p-Values vs Placebo Based on analysis of covariance with treatment as factor and baseline as covariate. |
| 0.625 mg CE (n = 27) | ||||
| 4 | 12.29 ± 3.89 | 1.95 ± 2.77 | -10.34 ± 4.73 | <0.001 |
| 12 | 12.29 ± 3.89 | 0.75 ± 1.82 | -11.54 ± 4.62 | <0.001 |
| 0.45 mg CE (n = 32) | ||||
| 4 | 12.25 ± 5.04 | 5.04 ± 5.31 | -7.21 ± 4.75 | <0.001 |
| 12 | 12.25 ± 5.04 | 2.32 ± 3.32 | -9.93 ± 4.64 | <0.001 |
| 0.3 mg CE (n = 30) | ||||
| 4 | 13.77 ± 4.78 | 4.65 ± 3.71 | -9.12 ± 4.71 | <0.001 |
| 12 | 13.77 ± 4.78 | 2.52 ± 3.23 | -11.25 ± 4.60 | <0.001 |
| Placebo (n = 28) | ||||
| 4 | 11.69 ± 3.87 | 7.89 ± 5.28 | -3.80 ± 4.71 | - |
| 12 | 11.69 ± 3.87 | 5.71 ± 5.22 | -5.98 ± 4.60 | - |
| Region Evaluated Treatment Group Identified by dosage (mg) of PREMARIN or placebo. | No. of Subjects | Baseline (g/cm 2 ) Mean ± SD | Change from Baseline (%) Adjusted Mean ± SE | p-Value vs. Placebo |
| L 2 to L 4 BMD | ||||
| 0.625 | 83 | 1.17 ± 0.15 | 2.46 ± 0.37 | <0.001 |
| 0.45 | 91 | 1.13 ± 0.15 | 2.26 ± 0.35 | <0.001 |
| 0.3 | 87 | 1.14 ± 0.15 | 1.13 ± 0.36 | <0.001 |
| Placebo | 85 | 1.14 ± 0.14 | -2.45 ± 0.36 | |
| Total Body BMD | ||||
| 0.625 | 84 | 1.15 ± 0.08 | 0.68 ± 0.17 | <0.001 |
| 0.45 | 91 | 1.14 ± 0.08 | 0.74 ± 0.16 | <0.001 |
| 0.3 | 87 | 1.14 ± 0.07 | 0.40 ± 0.17 | <0.001 |
| Placebo | 85 | 1.13 ± 0.08 | -1.50 ± 0.17 | |
| Femoral Neck BMD | ||||
| 0.625 | 84 | 0.91 ± 0.14 | 1.82 ± 0.45 | <0.001 |
| 0.45 | 91 | 0.89 ± 0.13 | 1.84 ± 0.44 | <0.001 |
| 0.3 | 87 | 0.86 ± 0.11 | 0.62 ± 0.45 | <0.001 |
| Placebo | 85 | 0.88 ± 0.14 | -1.72 ± 0.45 | |
| Femoral Trochanter BMD | ||||
| 0.625 | 84 | 0.78 ± 0.13 | 3.82 ± 0.58 | <0.001 |
| 0.45 | 91 | 0.76 ± 0.12 | 3.16 ± 0.56 | 0.003 |
| 0.3 | 87 | 0.75 ± 0.10 | 3.05 ± 0.57 | 0.005 |
| Placebo | 85 | 0.75 ± 0.12 | 0.81 ± 0.58 |
| Event | Relative Risk CE vs. Placebo | CE n = 5,310 | Placebo n = 5,429 |
| (95% nCI Nominal confidence intervals unadjusted for multiple looks and multiple comparisons. ) | Absolute Risk per 10,000 Women-Years | ||
| CHD events Results are based on centrally adjudicated data for an average follow-up of 7.1 years. | 0.95 (0.78–1.16) | 54 | 57 |
| Non-fatal MI | 0.91 (0.73 – 1.14) | 40 | 43 |
| CHD death | 1.01 (0.71 – 1.43) | 16 | 16 |
| All Stroke | 1.33 (1.05–1.68) | 45 | 33 |
| Ischemic stroke | 1.55 (1.19–2.01) | 38 | 25 |
| Deep vein thrombosis, Not included in "global index." | 1.47 (1.06–2.06) | 23 | 15 |
| Pulmonary embolism | 1.37 (0.90–2.07) | 14 | 10 |
| Invasive breast cancer | 0.80 (0.62–1.04) | 28 | 34 |
| Colorectal cancer Results are based on an average follow-up of 6.8 years. | 1.08 (0.75–1.55) | 17 | 16 |
| Hip fracture | 0.65 (0.45–0.94) | 12 | 19 |
| Vertebral fractures, | 0.64 (0.44–0.93) | 11 | 18 |
| Lower arm/wrist fractures, | 0.58 (0.47–0.72) | 35 | 59 |
| Total fractures, | 0.71 (0.64–0.80) | 144 | 197 |
| Death due to other causes, All deaths, except from breast or colorectal cancer, definite/probable CHD, PE or cerebrovascular disease. | 1.08 (0.88–1.32) | 53 | 50 |
| Overall mortality, | 1.04 (0.88–1.22) | 79 | 75 |
| Global Index A subset of the events was combined in a "global index" defined as the earliest occurrence of CHD events, invasive breast cancer, stroke, pulmonary embolism, colorectal cancer, hip fracture, or death due to other causes. | 1.02 (0.92–1.13) | 206 | 201 |
| Relative Risk CE/MPA vs. Placebo | CE/MPA n = 8,506 | Placebo n = 8,102 | |
| Event | (95% nCI Nominal confidence intervals unadjusted for multiple looks and multiple comparisons. ) | Absolute Risk per 10,000 Women-Years | |
| CHD events | 1.23 (0.99–1.53) | 41 | 34 |
| Non-fatal MI | 1.28 (1.00–1.63) | 31 | 25 |
| CHD death | 1.10 (0.70–1.75) | 8 | 8 |
| All Strokes | 1.31 (1.03–1.68) | 33 | 25 |
| Ischemic stroke | 1.44 (1.09–1.90) | 26 | 18 |
| Deep vein thrombosis Not included in "global index." | 1.95 (1.43–2.67) | 26 | 13 |
| Pulmonary embolism | 2.13 (1.45–3.11) | 18 | 8 |
| Invasive breast cancer Includes metastatic and non-metastatic breast cancer, with the exception of in situ cancer. | 1.24 (1.01–1.54) | 41 | 33 |
| Colorectal cancer | 0.61 (0.42–0.87) | 10 | 16 |
| Endometrial cancer | 0.81 (0.48–1.36) | 6 | 7 |
| Cervical cancer | 1.44 (0.47–4.42) | 2 | 1 |
| Hip fracture | 0.67 (0.47–0.96) | 11 | 16 |
| Vertebral fractures | 0.65 (0.46–0.92) | 11 | 17 |
| Lower arm/wrist fractures | 0.71 (0.59–0.85) | 44 | 62 |
| Total fractures | 0.76 (0.69–0.83) | 152 | 199 |
| Overall Mortality All deaths, except from breast or colorectal cancer, definite or probable CHD, PE or cerebrovascular disease. | 1.00 (0.83–1.19) | 52 | 52 |
| Global Index A subset of the events was combined in a "global index" defined as the earliest occurrence of CHD events, invasive breast cancer, stroke, pulmonary embolism, colorectal cancer, hip fracture, or death due to other causes. | 1.13 (1.02–1.25) | 184 | 165 |
Drug information sourced from the FDA. This content is for informational purposes only and does not constitute medical advice. Consult a healthcare professional before making any medication decisions.
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