To assess pairwise differences between placebo, unopposed estrogen, and each of three estrogen/progestin regimens on selected heart disease risk factors in healthy postmenopausal women.
Design
A 3-year, multicenter, randomized, double-blind, placebo-controlled trial.
Participants
A total of 875 healthy postmenopausal women aged 45 to 64 years who had no known contraindication to hormone therapy.
Intervention
Participants were randomly assigned in equal numbers to the following groups: (1) placebo; (2) conjugated equine estrogen (CEE), 0.625 mg/d; (3) CEE, 0.625 mg/d plus cyclic medroxyprogesterone acetate (MPA), 10 mg/d for 12 d/mo; (4) CEE, 0.625 mg/d plus consecutive MPA, 2.5 mg/d; or (5) CEE, 0.625 mg/d plus cyclic micronized progesterone (MP), 200 mg/d for 12 d/mo. Primary Endpoints: Four endpoints were chosen to represent four biological systems related to the risk of cardiovascular disease: (1) high-density lipoprotein cholesterol (HDL-C), (2) systolic blood pressure, (3) serum insulin, and (4) fibrinogen. Analysis: Analyses presented are by intention to treat. P values for primary endpoints are adjusted for multiple comparisons; 95% confidence intervals around estimated effects were calculated without this adjustment.
Results
Mean changes in HDL-C segregated treatment regimens into three statistically distinct groups: (1) placebo (decrease of 0.03 mmol/L [1.2 mg/dL]); (2) MPA regimens (increases of 0.03 to 0.04 mmol/L [1.2 to 1.6 mg/dL]); and (3) CEE with cyclic MP (increase of 0.11 mmol/L [4.1 mg/dL]) and CEE alone (increase of 0.14 mmol/L [5.6 mg/dL]). Active treatments decreased mean low-density lipoprotein cholesterol (0.37 to 0.46 mmol/L [14.5 to 17.7 mg/dL]) and increased mean triglyceride (0.13 to 0.15 mmol/L [11.4 to 13.7 mg/dL]) compared with placebo. Placebo was associated with a significantly greater increase in mean fibrinogen than any active treatment (0.10 g/L compared with -0.02 to 0.06 g/L); differences among active treatments were not significant. Systolic blood pressure increased and postchallenge insulin levels decreased during the trial, but neither varied significantly by treatment assignment. Compared with other active treatments, unopposed estrogen was associated with a significantly increased risk of adenomatous or atypical hyperplasia (34% vs 1%) and of hysterectomy (6% vs 1%). No other adverse effect differed by treatment assignment or hysterectomy status.
Conclusions
Estrogen alone or in combination with a progestin improves lipoproteins and lowers fibrinogen levels without detectable effects on postchallenge insulin or blood pressure. Unopposed estrogen is the optimal regimen for elevation of HDL-C, but the high rate of endometrial hyperplasia restricts use to women without a uterus. In women with a uterus, CEE with cyclic MP has the most favorable effect on HDL-C and no excess risk of endometrial hyperplasia.
PMID 7807658 7807658 DOI 10.1001/jama.1995.03520270033028 10.1001/jama.1995.03520270033028 Miller et al. 1995, Miller 1995
Cite this article
Miller, V. T., LaRosa, J., & Barnabei, V. (1995). Effects of Estrogen or Estrogen/Progestin Regimens on Heart Disease Risk Factors in Postmenopausal Women. JAMA, 273(3), 199-208. https://doi.org/10.1001/jama.1995.03520270033028
Miller VT, LaRosa J, Barnabei V. Effects of Estrogen or Estrogen/Progestin Regimens on Heart Disease Risk Factors in Postmenopausal Women. JAMA. 1995;273(3):199-208. doi:10.1001/jama.1995.03520270033028
Miller, Vincent T., et al. "Effects of estrogen or estrogen/progestin regimens on heart disease risk factors in postmenopausal women. The Postmenopausal Estrogen/Progestin Interventions (PEPI) Trial. The Writing Group for the PEPI Trial." JAMA, vol. 273, no. 3, 1995, pp. 199-208.
Observational studies have found lower rates of coronary heart disease (CHD) in postmenopausal women who take estrogen than in women who do not, but this potential benefit has not been confirmed in clinical trials. To determine if estrogen plus progestin therapy alters the risk for CHD events in postmenopausal women with established coronary disease. Randomized, blinded, placebo-controlled secondary prevention trial. Outpatient and community settings at 20 US clinical centers. A total of 2763 women with coronary disease, younger than 80 years, and postmenopausal with an intact uterus. Mean age was 66.7 years. Either 0.625 mg of conjugated equine estrogens plus 2.5 mg of medroxyprogesterone acetate in 1 tablet daily (n = 1380) or a placebo of identical appearance (n = 1383). Follow-up averaged 4.1 years; 82% of those assigned to hormone treatment were taking it at the end of 1 year, and 75% at the end of 3 years. The primary outcome was the occurrence of nonfatal myocardial infarction (MI) or CHD death. Secondary cardiovascular outcomes included coronary revascularization, unstable angina, congestive heart failure, resuscitated cardiac arrest, stroke or transient ischemic attack, and peripheral arterial disease. All-cause mortality was also considered. Overall, there were no significant differences between groups in the primary outcome or in any of the secondary cardiovascular outcomes: 172 women in the hormone group and 176 women in the placebo group had MI or CHD death (relative hazard [RH], 0.99; 95% confidence interval [CI], 0.80-1.22). The lack of an overall effect occurred despite a net 11% lower low-density lipoprotein cholesterol level and 10% higher high-density lipoprotein cholesterol level in the hormone group compared with the placebo group (each P<.001). Within the overall null effect, there was a statistically significant time trend, with more CHD events in the hormone group than in the placebo group in year 1 and fewer in years 4 and 5. More women in the hormone group than in the placebo group experienced venous thromboembolic events (34 vs 12; RH, 2.89; 95% CI, 1.50-5.58) and gallbladder disease (84 vs 62; RH, 1.38; 95% CI, 1.00-1.92). There were no significant differences in several other end points for which power was limited, including fracture, cancer, and total mortality (131 vs 123 deaths; RH, 1.08; 95% CI, 0.84-1.38). During an average follow-up of 4.1 years, treatment with oral conjugated equine estrogen plus medroxyprogesterone acetate did not reduce the overall rate of CHD events in postmenopausal women with established coronary disease. The treatment did increase the rate of thromboembolic events and gallbladder disease. Based on the finding of no overall cardiovascular benefit and a pattern of early increase in risk of CHD events, we do not recommend starting this treatment for the purpose of secondary prevention of CHD. However, given the favorable pattern of CHD events after several years of therapy, it could be appropriate for women already receiving this treatment to continue.
Estriol was administered for a six-month period as estrogen replacement therapy to 52 symptomatic postmenopausal women. Assays of serum follicle-stimulating hormone (FSH), luteinizing hormone (LH), estrone, and estradiol were performed before and during therapy. During this period of administration, vaginal cytology, cervical mucus, and endometrial studies were performed. Clinical effectiveness was directly related to dosage (2 to 8 mg/day). Estriol (8 mg/day) failed to induce endometrial proliferation and proved a poor suppressor of FSH and LH. This agent's capacity to relieve vasomotor instability and improve vaginal maturation without notable side effects is sufficient reason to include this drug in the management of the postmenopausal syndrome.
The study aims to assess the use of menopausal hormone therapy beyond age 65 years and its health implications by types of estrogen/progestogen, routes of administration, and dose strengths. Using prescription drug and encounter records of 10 million senior Medicare women from 2007-2020 and Cox regression analyses adjusted for time-varying characteristics of the women, we examined the effects of different preparations of menopausal hormone therapy on all-cause mortality, five cancers, six cardiovascular diseases, and dementia. Compared with never use or discontinuation of menopausal hormone therapy after age 65 years, the use of estrogen monotherapy beyond age 65 years was associated with significant risk reductions in mortality (19% or adjusted hazards ratio, 0.81; 95% CI, 0.79-0.82), breast cancer (16%), lung cancer (13%), colorectal cancer (12%), congestive heart failure (CHF) (5%), venous thromboembolism (3%), atrial fibrillation (4%), acute myocardial infarction (11%), and dementia (2%). For the use of estrogen and progestogen combo-therapy, both E+ progestin and E+ progesterone were associated with increased risk of breast cancer by 10%-19%, but such risk can be mitigated using low dose of transdermal or vaginal E+ progestin. Moreover, E+ progestin exhibited significant risk reductions in endometrial cancer (45% or adjusted hazards ratio, 0.55; 95% CI, 0.50-0.60), ovarian cancer (21%), ischemic heart disease (5%), CHF (5%), and venous thromboembolism (5%), whereas E+ progesterone exhibited risk reduction only in CHF (4%). Among senior Medicare women, the implications of menopausal hormone therapy use beyond age 65 years vary by types, routes, and strengths. In general, risk reductions appear to be greater with low rather than medium or high doses, vaginal or transdermal rather than oral preparations, and with E2 rather than conjugated estrogen.
Tan-Kim J et al., 2023·American journal of obstetrics and gynecology
Vaginal estrogen is considered to be the standard of care for recurrent urinary tract infection prevention in women with hypoestrogenism. However, literature supporting its use is limited to small clinical trials with narrow generalizability. This study aimed to assess the association between vaginal estrogen prescription and the frequency of urinary tract infections over the following year in a diverse population of women with hypoestrogenism. Secondary objectives included evaluation of medication adherence and predictors of postprescription urinary tract infection. This multicenter retrospective review included women who were prescribed vaginal estrogen for the indication of recurrent urinary tract infection from January 2009 through December 2019. Recurrent urinary tract infection was defined as having ≥3 positive urine cultures (separated by at least 14 days) in the 12 months preceding the index vaginal estrogen prescription. Patients were asked to fill their prescriptions and continue care within Kaiser Permanente Southern California system for at least 1 year. Exclusion criteria included anatomic abnormalities, malignancy, or mesh erosion of the genitourinary tract. Data on demographics, medical comorbidities, and surgical history were collected. Adherence was captured through refill data after the index prescription. Low adherence was defined as no refills; moderate adherence was defined as 1 refill; high adherence was defined as ≥2 refills. Data were abstracted from the electronic medical record system using the pharmacy database and diagnosis codes. A paired t test was used to compare pre- and postprescription urinary tract infections over the year preceding and following the vaginal estrogen prescription. A multivariate negative binomial regression was used to evaluate predictors of postprescription urinary tract infection. The cohort included 5638 women with a mean (±standard deviation) age of 70.4 (±11.9) years, body mass index of 28.5 (±6.3) kg/m2, and baseline urinary tract infection frequency of 3.9 (±1.3). Most of the participants were White (59.9%) or Hispanic (29.7%) and postmenopausal (93.4%). The mean urinary tract infection frequency in the year following the index prescription decreased to 1.8 (P<.001) from 3.9 in the year preceding the prescription, which is a 51.9% reduction. During the 12 months after the index prescription, 55.3% of patients experienced ≤1 urinary tract infections, and 31.4% experienced no urinary tract infections. Significant predictors of postprescription urinary tract infection included age of 75 to 84 years (incident rate ratio, 1.24; 95% confidence interval, 1.05-1.46) and >85 years (1.41; 1.17-1.68), increased baseline urinary tract infection frequency (1.22; 1.19-1.24), urinary incontinence (1.14; 1.07-1.21), urinary retention (1.21; 1.10-1.33), diabetes mellitus (1.14; 1.07-1.21), and moderate (1.32; 1.23-1.42) or high medication adherence (1.33; 1.24-1.42). Patients with high medication adherence demonstrated more frequent postprescription urinary tract infections than patients with low adherence (2.2 vs 1.6; P<.0001). In this retrospective review of 5600 women with hypoestrogenism who were prescribed vaginal estrogen for the prevention of recurrent urinary tract infections, the frequency of urinary tract infection decreased by more than 50% in the following year. Baseline urinary tract infection frequency, increasing age, urinary incontinence or retention, and diabetes were associated with an increased risk of postprescription urinary tract infection. The paradoxical finding that women with moderate and high medication adherence experienced the lowest-magnitude reduction in urinary tract infection frequency may represent unobserved selection or unmeasured confounding.