Effect Of Hormone Replacement Therapy On Disease Activity, Menopausal Symptoms And Bone Mineral Density In Peri/Postmenopausal Women With Systemic Lupus Erythematosus.Randomized Clinical Trial
试验速览
- 阶段
- 4 期
- 状态
- 已完成
- 发起方
- 入组人数
- 108
- 试验地点
- 2
- 主要终点
- Global disease activity throughout the follow-up period, estimated as the area under the SLEDAI-curve
研究概览
简要总结
Hypothesis, HRT does not increase the risk of lupus activity exacerbation, it is effective for the relief of menopausal symptoms and improves bone mineral density.
Double-blind, randomized, placebo controlled clinical trial.
Objectives
- Determine the effect of HRT on disease activity, menopausal symptoms, bone mineral density, lipid profile, and mammographic parenchymal density in menopausal women with SLE.
- Determine the incidence rate of major side effects of HRT in menopausal women with SLE.
Outcome Measures
- Primary outcome will be global disease activity throughout the follow-up period.
- Incidence of lupus flares, time to the first flare, changes in SLEDAI values from baseline at each follow-up visit, maximum disease activity, lupus treatment, hospitalizations, thromboses, and deaths.
Menopausal symptoms and depression will be assessed utilizing the Greene Climacteric Scale questionnaire and the Beck Depression Inventory.
Bone mineral density of lumbar spine and hip will be performed with dual energy x-ray absorptiometry. In addition, blood and urine samples to measure biochemical markers of bone turnover.
Estradiol levels, lipid profile,coagulation tests, cervical cytology examinations, mammography.
Inclusion Criteria: (Any two of the following criteria)
- Amenorrhea of 6 months or more
- Serum FSH level of 30 IU/L or more
- Menopausal symptoms
- Age 48 years or older.
Exclusion Criteria:
- Women older than 65 years
- Severe lupus activity at baseline
- Use of estrogens within 3 months of the screening visit
- Serum creatinine of 2.0 mg/dL or more
- Hypertriglyceridemia 500 mg/dL or more
- Metabolic bone diseases
- Liver disease
- Untreated hyperthyroidism
- Recent thrombosis
- Malignancy
- Endometrial hyperplasia
- Undiagnosed uterine bleeding
- Cervical dysplasia.
Subject allocation Random assign, using a computer-generated randomization list to: Conjugated equine estrogens 0.625 mg/day plus 5 mg/day of medroxyprogesterone acetate p.o. for the first 10 days per-month, or biologically inert placebo.All women will receive 1200 mg of calcium carbonate and 800 IU of vitamin D, daily.
Follow-up procedure All patients will be evaluated by a rheumatologist and a reproductive health specialist at baseline,1,2,3,6,9,12,15,18,21, and 24 months.
Rheumatic evaluation:
- General information (baseline).
- Lupus activity (every visit).
- Medications: (every visit)
Gynecological evaluation:
Onset of symptoms since the previous visit using a standardized questionnaire. In addition, a gynecological examination will be performed.
Criteria for early termination of the study:
A patient will be discontinued from the study whenever any of the following criteria would be present:
- Development of severe lupus activity (SLEDAI > 30).
- Development of any putative complication to hormone therapy.
- Development of any other severe complications due neither to SLE nor hormone therapy.
- Need prolonged immobilization.
Statistical analysis:
Between-group comparisons of lupus activity, maximum SLEDAI, and change in SLEDAI score from baseline at each follow-up visit. Incidence-density rates of flares with relative risk and 95 percent confidence intervals.Probability of flares throughout the study using life-table analyses and log-rank test.
Climacteric symptoms as the mean value of the Green's scale score at baseline and at each follow-up visit, between-group and intra-group. Bone mineral density as the mean value at baseline, 12 and 24 months, between and intra-group.
The proportion of patients in each group who develop secondary effects, as well as the number who quit the study during the follow-up period.
Continuous variables will be compared using Student's t-test, and categorical variables using chi-square or Fisher's exact test. Within-group comparisons will be done using the Wilcoxon signed-rank test. P values will be two-sided. Analyses will be conducted by the intention-to-treat method.
详细描述
Background Systemic Lupus Erythematosus (SLE) is an autoimmune disease of unknown cause. Risk factors proposed as important in the pathogenesis of SLE include genetic, environmental, and hormonal factors (1). Strong evidence implicates sex steroid hormones in the pathogenesis of SLE and other autoimmune diseases in human beings. Female gender is considered the strongest risk factor for the development of SLE (2), which incidence is 8 times higher in females than in males during the reproductive years. This difference in the susceptibility for developing SLE strongly suggests the influence of sex hormones. We have shown a significantly increased risk to develop SLE among postmenopausal women under estrogen replacement therapy compared with postmenopausal women who did not take such hormones; this increased risk was directly related with the length of use of such therapy (3). Lupus flares have been reported during periods of major sex hormone changes such as puberty, menses, pregnancy and postpartum (4-7). Abnormal metabolism of estrogens yields an excess production of 16-alpha-hydroxyestrone in patients with SLE of both sexes (8), and low plasma androgens levels have been reported in women with active and quiescent disease (9,10). An association between SLE and Klinefelter's syndrome has been proposed (11). Estrogen receptors have been found on OKT8-positive lymphocytes (12).
Studies in animal models of SLE have also shown the relevance of sex hormones for the development and course of SLE. Studies in the NZB/W F1 hybrid mouse support the role for female hormones in the modulation of autoantibody production, development of renal disease, and death (13). Female NZB/W F1 mice have higher autoantibodies titers and die several months earlier than males. Treatment with androgens improves the survival and reduces immune-complex deposits and development of renal disease in NZB/W F1 females (14). Prepubertal castration of NZB/W F1 males plus administration of exogenous estrogen causes a female pattern of lupus (15).
In general, these studies consistently suggest an interaction between sex hormones and the immune system.
In our Institute more than 1900 SLE patients are followed-up regularly; 95 percent are female, and around 20 percent of them are postmenopausal. These figures reflect the increasing number of women with lupus who reach the postmenopausal stage due to their susceptibility for developing either early or premature menopause, along with the extraordinary improvement in their prognosis and survival rate. (16,2).
Menopause entails the risk of developing vasomotor and other symptoms, as well as chronic conditions, e.g. osteoporosis. Hormone therapy, with estrogens alone or in combination with progestins, constitutes the most effective treatment for vasomotor and urogenital symptoms. Current guidelines recommend hormone therapy, at the lowest effective dose and the shortest time necessary (17).
研究设计
- 研究类型
- Interventional
- 分配方式
- Randomized
- 干预模型
- Parallel
- 主要目的
- Treatment
- 盲法
- Double
入排标准
- 年龄范围
- 18 Years 至 65 Years(Adult, Older Adult)
- 性别
- Female
- 接受健康志愿者
- 否
入选标准
- •Eligible women will be those having any two of the following criteria
- •Amenorrhea of 6 months or more.
- •Serum follicle-stimulating hormone level of 30 IU/L or more.
- •Menopausal symptoms.
- •Age 48 years or older.
排除标准
- •Women older than 65 years.
- •Severe lupus activity at baseline (SLEDAI score, more than 30).
- •Use of estrogens within 3 months of the screening visit.
- •Serum creatinine of 2.0 mg/dL or more.
- •Hypertriglyceridemia 500 mg/dL or more.
- •Metabolic bone diseases.
- •Liver disease.
- •Untreated hyperthyroidism.
- •Recent thrombosis.
- •Malignancy.
- •Endometrial hyperplasia.
- •Undiagnosed uterine bleeding or cervical dysplasia
结局指标
主要结局
Global disease activity throughout the follow-up period, estimated as the area under the SLEDAI-curve
次要结局
- Incidence of lupus flares
- Maximum disease activity
- Change in mammographic breast density
- Changes in SLEDAI values from baseline at each follow-up visit
- Improvement in bone mineral density
- Changes in lipid profile
- Time to the first flare
- Improvement of menopause symptoms
