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M Gambacciani

Publications and source records attributed to M Gambacciani.

At least 37 records · Page 2Linked to original sources

Prospective evaluation of body weight and body fat distribution in early postmenopausal women with and without hormonal replacement therapy.

AIMS: In order to assess the effects of menopause and hormonal replacement therapy (HRT) on body weight and body fat distribution (determined by dual energy X-ray), early postmenopausal women were given either oral calcium (500 mg/day, control group, n=13) or HRT, a combination of estradiol valerate (EV, 2 mg/day for 21 days) with cyproterone acetate (CPA, 1 mg/day in the last 10 days of the treatment cycle, n=18; Climen, Schering). RESULTS: There were no differences in basal body weight and body fat distribution in the two groups before the study. In control group, a significant (P<0.05) increase in body weight (from 63.5+/-2.0 to 68.7+/-2.0 kg after 36 months) paralleled a shift to a prevalent central, android fat distribution with a slight but significant (P<0.05) increase in total body fat mass (from 23.4+/-2.1 to 29.1+/-2.1 kg), an increase in trunk (from 10.1+/-0.4 to 12.7+/-0.4 kg, P<0.05), arms (from 2.4+/-0.2 to 2.9+/-0.2 kg, P<0.05) and legs (from 6.5+/-0.4 to 7.8+/-0.4 kg, P<0.05) fat. In the HRT group total body bone mineral showed a significant increase (from 1086+/-21 to 1128+/-19 mg/cm(2), P<0.05) increase after 36 months, with no significant increase in body weight (from 62.6+/-1.8 to 65.0+/-1.9 kg), and no modifications in trunk (from 10.0+/-0.2 to 10.1+/-0.2 kg) and arms (from 2.4+/-0.1 to 2.6+/-0.1 kg) fat, but a significant increase in legs fat (from 6.9+/-0.3 to 9.9+/-0.4 kg, P<0.05). CONCLUSION: Present results demonstrate that menopause is associated with an accelerated increase in body weight and body fat, with a prevalent central, android fat distribution, that can be counteracted at least in part by oral HRT.

Absorptiometry, Photon↗

Effects of low-dose continuous combined conjugated estrogens and medroxyprogesterone acetate on menopausal symptoms, body weight, bone density, and metabolism in postmenopausal women.

OBJECTIVE: The purpose of this study was to determine the effects of a low dose of conjugated equine estrogens and medroxyprogesterone acetate plus calcium supplementation on bone density, metabolism, body weight, and symptoms in young postmenopausal women. STUDY DESIGN: Sixty postmenopausal women, aged 45 to 56 years, were randomized in an open-label, 2-year trial that compared treatment with low-dose continuous combined hormone replacement therapy that contained 0.3 mg of conjugated equine estrogens and 2.5 mg of medroxyprogesterone acetate plus 1000 mg of calcium per day or treatment with 1000 mg of calcium per day alone. Menopausal symptoms were evaluated for the first 12 weeks of the study; bleeding profiles, bone mineral density, bone turnover, and body weight were assessed for 24 months. RESULTS: After 24 months, we evaluated 15 subjects in the control group (with a 50% drop-out rate) and 23 patients (with a 23% drop-out rate) in the low-dose continuous combined hormone replacement therapy group. Low-dose continuous combined hormone replacement therapy was effective in reducing menopausal clinical symptoms and provided a favorable bleeding profile and minimal side effects. In comparison with basal values, bone mineral density significantly (P <.05) increased by 2.72% +/- 0.3% in the low-dose continuous combined hormone replacement therapy group and decreased by 7.9% +/- 0.8% (P <.05) in the control group after 24 months, with parallel changes in bone metabolism marker action. In the control group, body mass index significantly (P <.05) increased from baseline value with a weight gain of 3%; in the low-dose continuous combined hormone replacement therapy group, the body mass index did not change after 24 months of treatment, and the 1.3% gain in body weight was not significant. CONCLUSION: Low-dose continuous combined hormone replacement therapy can alleviate subjective symptoms and minimize body transformations that are associated with early menopause and provide an effective protection against the activation of bone turnover and osteoporosis.

Body Weight↗

Controversial issues in climacteric medicine II. Hormone replacement therapy and cancer. International Menopause Society Expert Workshop. 9-12 June 2001, Opera del Duomo, Pisa, Italy.

Sex steroids are not known to damage DNA directly. They can stimulate or inhibit cell proliferation, and thus can modulate tumor developmental progression. Sex steroid-related tumors in women are represented by breast cancer and endometrial cancer, and a possible relationship exists between sex steroids and both ovarian and colon cancer. Among current ERT users or those who stopped use 1-4 years previously, the relative risk of having breast cancer diagnosed increases by a factor of 1.023 for each year of hormone use. This increase is comparable with the effect on breast cancer of delaying menopause, and seems to be largely limited to lean women. The breast cancers diagnosed during ERT are more likely to contain ER and are less aggressive. Some reports indicate no increase in breast cancer mortality in HRT users. Recent data suggest that an estrogen-progestin regimen may increase breast cancer risk beyond that associated with estrogen alone. However, the effect of progestogens on the breast awaits further clarification. ERT/HRT is generally considered to be contraindicated in breast cancer patients, as no firm data are yet available from randomized clinical trials. Despite the potential risks, ERT/HRT could be considered for breast cancer patients suffering from menopausal symptoms resistant to alternative treatments, after completely informed consent is given, particularly in women with ER--(hormone-resistant) cancers. Unopposed estrogen therapy is known to increase endometrial cancer risk, and is appropriate only for hysterectomized women. To negate the excess risk of endometrial hyperstimulation, an adequate progestin dose must be given in a continuous combined regimen or for an appropriate number of days in sequential regimens (10 days or more for some progestogens or 12 days or more for other progestogens). An appropriate combination of estrogen and progestin does not appear to increase, and may even decrease, the risk of endometrial cancer. HRT is generally considered to be contraindicated in endometrial cancer patients. Despite the potential risks, HRT could be considered for patients suffering from menopausal symptoms resistant to alternative treatments, after completely informed consent is given. Available data suggest a reduced risk of colorectal adenoma and colon cancer in current users of HRT, but definitive studies are still needed. There is no contraindication to HRT prescription in colon cancer survivors. Consistent epidemiological data describe a decreased incidence of ovarian cancer with oral contraceptive use during the reproductive years. Studies on HRT and risk of epithelial ovarian cancer have produced conflicting results but most data seem to exclude a strong association. While no data contraindicate HRT use in epithelial ovarian cancer survivors, current studies do not allow us to exclude the possibility that estrogens alone could stimulate ovarian cancer growth in a small fraction of patients. Additional studies are required. It is important to consider that not all estrogens and progestins are used with the same dosage, route of administration (oral, transdermal and for estradiol intranasal) and, mostly, different estrogens do not show the same bioavailability and tissue effects. The available data do not allow to discriminate for all these variables and therefore it is inappropriate to consider jointly all forms of hormonal therapy. This issue is considered as an important area for future evaluation and research. The International Menopause Society is in the process of drawing up specific recommendations for further research in the field of HRT and cancer.

Breast Neoplasms↗

Determinants of age at menopause in Italy: results from a large cross-sectional study. ICARUS Study Group. Italian Climacteric Research Group Study.

OBJECTIVE: To identify the determinants of age at menopause in an Italian population, using data from the Italian Climacteric Research Group Study (ICARUS). METHODS: ICARUS is a prospective study of the effect of menopause on women's health that has been running in menopause clinics throughout Italy since 1995. A total of 4300 women with spontaneous menopause, aged 55 years or more and observed for the first time at the participating centres are included in the present analysis. RESULTS: The mean age at menopause in the total population was 50.9 years. After taking into account potential covariates, the women reported smoking, had a slightly lower mean age at menopause than non smokers 50.4 versus 50.9 years; P = 0.01. The mean age at menopause in nulliparae was 50.0 years, and, respectively 50.4, 50.6, 50.9, 51.2 and 50.9 years in those reporting 1, 2, 3, 4 and 5 or more births (P < 0.01). A low body mass index and an early age at menarche were associated with early menopause in the crude analysis, but these associations disappeared after taking into account the confounding factors. CONCLUSIONS: This study offers an estimate of the mean age at menopause of women attending menopause clinics in Italy, on the basis of the data obtained from a large sample. It also indicates that smoking and nulliparity are associated with early menopause.

Age Factors↗

Longitudinal evaluation of perimenopausal femoral bone loss: effects of a low-dose oral contraceptive preparation on bone mineral density and metabolism.

To characterize the pattern of biochemical markers of bone metabolism and femoral bone mineral density in eumenorrheic and oligomenorrheic perimenopausal women, and assess the effects of a low-dose oral contraceptive (OC) on bone metabolism and femoral bone density, bone biochemical markers and femoral bone density (measured at the neck, Ward's triangle and trochanter regions) were evaluated in a longitudinal 2-year follow-up study. The study was conducted in healthy, normally menstruating perimenopausal women (n = 18), perimenopausal oligomenorrheic women (n = 18), and perimenopausal oligomenorrheic women treated with an OC containing 20 microg ethinylestradiol plus 0.15 mg desogestrel (n = 19). The results were analyzed by factorial or repeated measures analysis of variance, as appropriate. During the observation period, in normally menstruating women there were no changes in the menstrual cycle, plasma FSH and estradiol levels, biochemical markers of bone turnover or femoral bone density. In oligomenorrheic untreated women an increase in cycle length with a concomitant decrease in plasma estradiol and an increase in plasma FSH levels were found (p < 0.05). In this group a significant increase in urinary excretion of hydroxyproline and in plasma osteocalcin levels with a concomitant significant decrease in femoral bone density (p < 0.05) occurred. In OC-treated women, osteocalcin plasma levels and urinary excretion of hydroxyproline significantly (p < 0.05) decreased, leading to a significant (p < 0.05) increase in femoral bone density. It is concluded that perimenopausal OC administration can avoid the increase in bone turnover and the decrease in femoral bone density due to the perimenopausal impairment of ovarian function.

Absorptiometry, Photon↗

Controversial issues in climacteric medicine I. Cardiovascular disease and hormone replacement therapy. International Menopause Society Expert Workshop. 13-16 October 2000, royal society of medicine, London, UK.

The clinical benefits of HRT are clearly established for the relief of menopausal symptoms, improving quality of life and the prevention of osteoporosis. Although research on the impact of HRT (oral, transdermal, tibolone, etc.) and on the effects of raloxifene on CVD is still ongoing, with certain unresolved controversies, studies using a variety of different HRT formulations have shown a clear benefit on surrogate markers of CHD and epidemiological and clinical, although not randomized, studies have demonstrated a CHD reduction in HRT-treated women. Today, HRT may be used for the primary prevention of CVD. Conversely, there is no clear reason to commence HRT solely or primarily to confer an immediate cardiovascular benefit in postmenopausal women with established CHD. Equally, there is no compelling evidence for discontinuing--or indeed not initiating--HRT in women without CVD because of concern about cardiovascular risk. In any case, all medical interventions should be individualized to the specific woman's age, characteristics and needs. The ultimate effects of different dosages, schedules and type of hormones used should be clarified, avoiding inferring the effects of one form of HRT to others. The importance of increased attention to life-style factors such as healthy diet, exercise and cessation of smoking should be underlined since these can confer specific benefits also to menopausal women. For women with known risks for CVD, HRT may contribute to the beneficial effects of life-style improvements and well-established therapies (including blood pressure control, cholesterol-lowering drugs, aspirin, etc.). New strategies, including lower dosages, new estrogens, progestins, and new estrogen-like substances may be designed to target specific needs.

Coronary Artery Disease↗

Sociodemographic and clinical factors associated with HRT use in women attending menopause clinics in Italy.

OBJECTIVE: The aim of this analysis is to find any association between the use of hormone replacement therapy (HRT) and sociodemographic and clinical factors among women attending 54 menopause clinics in Italy. METHODS: The analysis includes data relating to 17,851 women who attended one of 54 menopause clinics in Italy for general gynecological evaluations and counselling between 1995 and 1997. The characteristics of women reporting ever HRT use were compared with those of never users. The odds ratios (ORs) of HRT use were computed in relation to selected reference categories, together with their 95% confidence intervals (CIs). RESULTS: Of the 17,851 women interviewed, 8539 reported ever HRT use. The mean age of the never and ever HRT users was 52.8 years and 53.7 years, respectively. Higher education was associated with an increased frequency of HRT use: in comparison with women reporting no or primary-/middle-school education, the OR of HRT use of women reporting a high-school diploma or university degree was 1.3 (95% CI 1.1-1.6). HRT use tended to be less frequently reported with increasing body mass index (BMI): in comparison with women whose BMI was < 23.4 kg/m2, the OR of HRT use in those with a BMI of 23.4-26.1 kg/m2 and > or = 26.2 kg/m2 was 0.8 (95% CI 0.8-0.9) and 0.6 (95% CI 0.5-0.7), respectively. Among the postmenopausal women, those who had undergone surgical menopause had an OR of HRT use of 1.3 (95% CI 1.2-1.4). A history of breast cancer was associated with a lower frequency of HRT use (OR 0.3, 95% CI 0.2-0.4). Likewise, a history of thromboembolic disease (OR 0.5, 95% CI 0.4-0.7) or myocardial infarction (OR 0.7, 95% CI 0.6-0.9) was associated with a lower frequency of HRT use. CONCLUSIONS: In our study population, the variable most closely related to HRT use was education/social class, thus underlining the impact of information campaigns on HRT and women's health. Among the medical determinants, our analysis indicates that a history of myocardial infarction, thromboembolic disease or breast cancer is associated with less frequent use of HRT.

Adult↗

Postmenopausal osteoporosis management.

Osteoporosis is perhaps the widest-ranging social, physical, and economic impact of estrogen deficiency. Postmenopausal bone loss is the major determinant of osteoporosis. Osteoporotic risk can be determined by measuring bone mineral density using dual X-ray absorptiometry. The radiation free quantitative bone ultrasound is emerging in the assessment of bone structure giving reliable estimates of fracture risk. Diet and exercise are important in determining a woman's risks for osteoporosis. Hormone replacement therapy clearly decreases bone turnover and prevents postmenopausal bone loss and reduces fractures. Tibolone as well as raloxifene prevent bone loss and solid data demonstrate a reduction of vertebral fractures after raloxifene administration.

Bone Density↗

Phalangeal osteosonogrammetry study: age-related changes, diagnostic sensitivity, and discrimination power. The Phalangeal Osteosonogrammetry Study Group.

Phalangeal osteosonogrammetry was introduced as a method for bone tissue investigation in 1992. It is based on the measure of the velocity of ultrasound (amplitude-dependent speed of sound [AD-SoS]) and on the interpretation of the characteristics of the ultrasound signal. In this study we have collected a database of 10,115 subjects to evaluate the performance of AD-SoS and to develop a parameter that is able to quantify the signal characteristics: ultrasound bone profile index (UBPI). The database only includes females of which 4.5% had documented vertebral osteoporotic fractures, 16% lumbar spine dual X-ray absorptiometry (DXA), and 6% hip DXA. The analysis of the ultrasound signal has shown that with aging the UBPI, first wave amplitude (FWA), and signal dynamics (SDy) follow a trend that is different from the one observed for AD-SoS; that is, there is no increase during childhood. In the whole population, the risk of fracture per SD decrease for AD-SOS was odds ratio (OR) 1.71 (CI, 1.58-1.84). The AD-SoS in fractured subjects was significantly lower than in a group of age-matched nonfractured subjects (p < 0.0001). In a small cohort of hip-fractured patients UBPI proved to be lower than in a control age-matched group (p < 0.0001). When the World Health Organization (WHO) working group criteria were applied to this population to identify the T score value for osteoporosis, for AD-SoS we found a T score of -3.2 and for UBPI we found a T score of -3.14. Sixty-six percent of vertebral fractures were below the AD-SoS -3.2 T score and 62% were below UBPI -3.14. We observed the highest incidence of fractures (63.6%) among subjects with AD-SoS who had both DXA T score values below the threshold. We conclude from this study that ultrasound investigation at the hand phalanges is a valid methodology for osteoporosis assessment. It has been possible to quantify signal changes by means of UBPI, a parameter that will improve the possibility of investigating bone structure.

Adult↗

The effect of menopause on blood lipid and lipoprotein levels. The Icarus Study Group.

There is increasing evidence from epidemiological studies that exogenous estrogen (hormone replacement therapy) protects against the elevated risk of cardiovascular disease in women after the menopause. However, it is still uncertain whether the postmenopausal decrease in endogenous estrogen in itself contributes significantly to this increase in risk. Most of the studies that have provided evidence linking cardiovascular disease with menopause have involved North American women, who may differ significantly from Europeans in terms of lifestyle and diet. ICARUS (Italian Climacteric Research Group Study) is an observational study that involves Italian Menopause Clinics, with the objective of collecting observational data on menopause and its management. The results of a cross-sectional analysis of 9309 women, free from any hormonal treatment and enrolled up to March 1997, are reported here. Data show that the menopause has a marked effect on the circulating levels of lipids and lipoproteins. From pre- to post-menopause there are significant increases in total cholesterol (6.9% before and 4.4% after adjustment for covariates including chronological age, educational level, center, BMI, smoking habits, hypertension and diabetes, previous contraceptive use, and time since menopause), LDL (7.5% before, 4.0% after), and triglycerides (9.0% before, 3.2% (ns) after). However, there is no significant change in HDL. Among postmenopausal women, no effect on lipid profile of time since menopause was observed.

Cholesterol↗

Hormone replacement therapy: the perspectives for the 21st century.

UNLABELLED: Nowadays different lines of evidence demonstrate the benefits of postmenopausal hormone replacement therapy (HRT). HRT is extremely effective in treating subjective symptoms and can really improve the quality of life of climacteric women. HRT and dementia: Estrogens are potentially relevant to the pathogenesis and treatment of Alzheimer's disease. The effects of different progestogens on cognitive functions and Alzheimer's disease are largely unknown. The prevention of Alzheimer disease might be a major indication to long term HRT. Large prospective, randomized trials will confirm these preliminary data. HRT and osteoporosis: HRT has been strongly correlated with higher bone mineral density and lower fracture incidence. Definite answers in terms of minimum effective dosages, timing and duration of HRT for fracture prevention are needed. HRT and cardiovascular disease: Different lines of evidence suggest that HRT can exert cardioprotective effects with substantial reduction of morbidity and mortality for cardiovascular disease in postmenopausal women. The effects and the role of progestogens in cardiovascular disease prevention are still debated. Prospective, randomized, controlled studies are needed to assess the impact of different HRT regimens on cardiovascular events. HRT and cancer: The major issue in the relationship between HRT and cancer is breast cancer. Long-term and current HRT use are followed by a slight, though significant increase in the risk of breast cancer. Progestogens can modify the cellular response of normal as well as cancer breasts. The possible protective effect of continuous progestogen addition is very interesting and needs further investigation. Alternative to classical HRT: Selective estrogen receptor modulators (SERM). SERMs such as raloxifene (RAL) are a new class of drugs that exert site specific estrogenic or antiestrogenic effects in different target tissues. RAL prevents bone loss and reduces serum cholesterol in postmenopausal women. In contrast to estrogen RAL does not stimulate breast or uterine tissues. In vitro RAL is highly effective at inhibiting the growth of estrogen-dependent breast adenocarcinoma cells. SERMs are expected to represent a major breakthrough for postmenopausal health. CONCLUSION: HRT can be offered either as a preventive tool or as individualized care on the basis of personal needs. New therapeutic options like the SERMs will offer a substantial medical advancement for the treatment of postmenopausal women.

Adult↗

Climacteric modifications in body weight and fat tissue distribution.

OBJECTIVE: To estimate the effects of climacteric modifications on body weight and fat distribution. METHODS: From 8764 women attending the authors' Menopause Clinic, 1075 untreated, normal healthy women were selected and divided into three groups: premenopausal (n = 380), perimenopausal (n = 263) and postmenopausal (n = 432). The total body fat tissue mass and distribution were analyzed using the dual energy X-ray method. RESULTS: Body weight and body mass index (BMI) were significantly higher in perimenopausal and postmenopausal than in premenopausal women. The mean total body fat and the percentage of fat with respect to soft tissue were significantly (p < 0.05) higher in the perimenopausal and postmenopausal groups than in the premenopausal group. The amount of fat tissue and the regional fat percentage with respect to total fat tissue were higher in the trunk (p < 0.05) and arm (p < 0.05) regions in perimenopausal and postmenopausal than in premenopausal women. In the postmenopausal group, the leg fat tissue was significantly (p < 0.05) less than in the premenopausal and perimenopausal groups. Total body and leg lean tissue was significantly (p < 0.01) less in postmenopausal than in premenopausal and perimenopausal women. In the premenopausal group, body weight and BMI were positively correlated with age (r = 0.37 and r = 0.54, respectively). No significant correlations were observed in the perimenopausal group. In postmenopausal women, body weight and BMI were loosely correlated with age (r = 0.13 and r = 0.11, respectively). In three groups of 63 age-matched women, with similar BMI, the percentage of total body fat with respect to soft tissue was significantly (p < 0.001) higher in the perimenopausal and postmenopausal groups than in the premenopausal group. Regarding body fat distribution, the percentage of fat with respect to total fat tissue was significantly higher in the trunk (p < 0.001) region in perimenopausal and postmenopausal women than in premenopausal women. In the leg region, the percentage of fat with respect to total fat tissue was significantly (p < 0.05) higher in the premenopausal group than in the postmenopausal group. In the arm region, a slight but not significant (p < 0.08) difference was shown in fat distribution among the three groups. CONCLUSIONS: Climacteric changes rather than the aging process are relevant for prediction of body weight and fat distribution, especially for perimenopausal and postmenopausal women, who show a shift to a central, android fat distribution.

Adipose Tissue↗

Hormone replacement therapy in perimenopause: effect of a low dose oral contraceptive preparation on bone quantitative ultrasound characteristics.

OBJECTIVES: Our aim was to assess the effects of a combined oral contraceptive (OC) preparation on bone quantitative ultrasound and biochemical markers of bone metabolism in perimenopausal women. DESIGN: Bone biochemical markers and bone quantitative ultrasound were evaluated in a longitudinal 2-year follow-up study conducted in healthy, normally menstruating perimenopausal women, perimenopausal oligomenorrheic women, and age-matched oral contraceptive-treated women (20 micrograms of ethinyl estradiol plus 0.15 mg desogestrel). The results were analyzed by factorial or repeated-measures analysis of variance, as appropriate. RESULTS: In normal women, there were no significant modifications in menstrual cycle, plasma FSH and estradiol levels, biochemical markers of bone turnover, and bone quantitative ultrasound. Conversely, in oligomenorrheic women, an increase in the cycle length with a concomitant rise in circulating plasma FSH and parallel decrease of plasma estradiol levels was evident. In this group, an increase in both urinary excretion of hydroxyproline and plasma osteocalcin levels paralleled a decrease in bone quantitative ultrasound. In perimenopausal OC-treated women, the pattern of osteocalcin and urinary excretion of hydroxyproline showed a slight decrease, whereas bone quantitative ultrasound did not show any significant modification. CONCLUSION: Perimenopausal OC administration can prevent the increase in bone turnover and the decrease in bone quantitative ultrasound that follow the perimenopausal impairment of ovarian function.

Adult↗

Quantitative bone ultrasonometry in climacteric women.

Quantitative bone ultrasound (QUS) measurement is an emerging technique in the assessment of osteoporosis risk. In this study, bone mineral density (BMD) (mg/cm2) of lumbar vertebrae, neck, Ward's triangle and trochanter were measured by DXA and the phalanx amplitude dependent speed of sound (AD-SOS) was measured by QUS in climacteric (n = 1025) women. The relationship between AD-SOS and BMD values at different skeletal sites was significant, even if the analysis showed poor correlation coefficients. These data seem to indicate that QUS can detect bone characteristics in addition to density. The AD-SOS was higher in premenopausal than in perimenopausal women. The AD-SOS further decreases in postmenopausal women without hormone replacement. The age at menopause is relevant for predicting the AD-SOS in the postmenopausal years. Conversely, the maintenance of a regular menstrual function is associated with higher AD-SOS. Thus, the early impairment and cessation of ovarian function can lead to an earlier and/or sharper decline in bone homeostasis that can be detected by QUS. In conclusion, AD-SOS is a valuable index in detecting menopausal bone loss, and could be used for the patient follow-up during menopausal transition and in therapeutic trials.

Journal Article↗

Ipriflavone prevents the loss of bone mass in pharmacological menopause induced by GnRH-agonists.

In a double-blind, placebo controlled study, ipriflavone (600 mg/day, T.D.D.) or identical placebo tablets were given with 500 mg/day of calcium to patients treated with the gonadotropin hormone-releasing hormone agonist (Gn-RH-A) leuproreline acetate, 3.75 mg every 30 days for 6 months. In placebo-treated subjects (n = 39), urinary hydroxyproline excretion and plasma osteocalcin levels showed a significant (P < 0.01 and P < 0.05, respectively) increase, whereas spine bone density and total body bone density significantly (P < 0.001 and P < 0.05, respectively) decreased after 3 and 6 months of GnRH-A administration. Conversely, in the ipriflavone-treated group (n = 39), no significant difference in bone markers and bone density was evidenced. These data indicate that ipriflavone can restrain the bone remodeling processes and prevent the rapid bone loss that follows medically induced hypogonadism.

Absorptiometry, Photon↗

Effects of combined low dose of the isoflavone derivative ipriflavone and estrogen replacement on bone mineral density and metabolism in postmenopausal women.

OBJECTIVES: To assess the pattern of biochemical markers of bone metabolism and vertebral bone mineral density in early postmenopausal women treated with combined ipriflavone and low dose conjugated estrogens. METHODS: Bone biochemical markers and vertebral bone density were evaluated in a longitudinal, comparative, 2 year study conducted in postmenopausal women treated with sole calcium supplementation (500 mg/day), or with either ipriflavone (IP) at the standard dose (600 mg/day) plus the same calcium dose, low dose conjugated estrogens (CE) (0.3 mg/day) plus calcium, or low dose IP (400 mg/day) plus low dose CE (0.3 mg/day) plus calcium. The results were analyzed by repeated measures analysis of variance, as appropriate. RESULTS: No modifications of both urinary excretion of hydroxyproline and plasma osteocalcin levels were observed in calcium and in CE-treated women, while vertebral bone density significantly decreased (P < 0.0001) in both groups. In IP or IP + CE-treated women, plasma osteocalcin did not show any modification, while urinary hydroxyproline showed a significant (P < 0.05) decrease, that paralleled a significant (P < 0.05) increase in vertebral bone density. CONCLUSION: Postmenopausal IP administration, at the standard dose of 600 mg/day, can prevent the increase in bone turnover and the decrease in bone density that follow ovarian failure. The same effect can be obtained with the combined administration of low dose (400 mg/day) IP with low dose (0.3 mg/day) CE.

Administration, Oral↗

Body weight, body fat distribution, and hormonal replacement therapy in early postmenopausal women.

Body weight was measured, and body fat distribution was determined by dual energy x-ray in early postmenopausal women given either oral calcium (500 mg/day; control group; n = 12) or hormonal replacement therapy (HRT), a combination of estradiol valerate (2 mg/day for 21 days) with cyproterone acetate (1 mg/day in the last 10 days of the treatment cycle; n = 15). There were no differences in basal body weight or body fat distribution in the two groups before the study. In the control group, a significant (P < 0.05) increase in body weight (from 63.6 +/- 2.2 to 65.2 +/- 1.9 kg [corrected] after 12 months) paralleled a slight, but significant (P < 0.05), increase in total body fat mass (from 23.8 +/- 2.2 to 24.7 +/- 2.2 kg), with an increase in fat in the trunk (from 10.2 +/- 0.4 to 11.3 +/- 0.4 kg; P < 0.01) and arms (from 2.4 +/- 0.5 to 2.7 +/- 0.2 kg; P < 0.05). These findings demonstrate a shift to a prevalent central android fat distribution after 12 months of observation in untreated postmenopausal women. Conversely, in the HRT group, total body bone mineral showed a significant (from 1089 +/- 28 to 1106 +/- 29 mg/cm2; P < 0.05) increase after 12 months, with no significant increase in body weight (from 62.2 +/- 1.6 to 62.7 +/- 1.6 kg), and no modifications in trunk (from 10.0 +/- 0.2 to 9.8 +/- 0.3 kg) and arm (from 2.43 +/- 0.2 to 2.5 +/- 0.1 kg) fat, but a significant increase in leg fat (from 7.1 +/- 0.3 to 8.3 +/- 0.4 kg; P < 0.05). The present results suggest that HRT can counteract at least in part the postmenopausal increase in body weight and body fat and prevent central body fat distribution after menopause.

Adipose Tissue↗