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Effect of estrogen and antiestrogens on the estrogen receptor content in the cochlea of ovariectomized rats.

Older women in the normal population tend to develop less severe hearing loss as compared to males in the same age. In Turner syndrome (45,X), estrogen deficiency is one of the predominant problems. Ear and hearing problems are common among these patients. Does estrogen have an impact on the hearing organ? Twenty-four rats were ovariectomized and treated with vehicle (controls), estradiol or selective estrogen receptor modulators such as tamoxifen and ICI182780, in order to study the effects on the estrogen receptor levels and distribution in the inner ear. The cochleas were stained immunohistochemically using antibodies against estrogen receptor alpha and beta. No major difference in estrogen receptor content in the cochleas was observed among groups. There was however a potential down regulation of estrogen receptor alpha in the marginal cells of stria vascularis in the rats that were substituted with ICI182780 (pure antiestrogen) as compared to those given estradiol or tamoxifen. When investigating the tissues with light microscopy no change in inner ear anatomy could be observed.

Animals↗

Discovery and preclinical characterization of (+)-3-[4-(1- piperidinoethoxy)phenyl]spiro[indene- 1,1'-indane]-5,5'-diol hydrochloride: a promising nonsteroidal estrogen receptor agonist for hot flush.

In our studies of the development of a novel class of selective estrogen receptor modulators, (+)-3-[4-(1-piperidinoethoxy)phenyl]spiro[indene-1,1'-indane]-5,5'-diol hydrochloride (1) was found to be an estrogen receptor ligand with beneficial effects in rat models for human hot flush. Moreover, 1 was found to have beneficial effects on lipid and bone metabolism while maintaining marginal effects on the uterus and breasts. These findings suggest that 1 would provide a new treatment for hot flush.

Animals↗

Osteoporosis: a review and its dental implications.

Osteoporosis is a disease that affects primarily women, but can also occur in men. It is characterized by a loss of bone mineral density (BMD), and often culminates in a fracture of the hip, wrist, and/or vertebrae. The diagnosis of osteoporosis is often made by using bone density measurements. They are often expressed in relative terms (T-scores and Z-scores); the Z-score is the number of standard deviations from the age-matched average value of healthy women. A low Z-score indicates the bone density is lower than it should be for a patient's age and sex. Osteoporosis is defined as a BMD loss of 2.5 standard deviations or more below the established mean. Osteoporosis can be treated by a variety of methods, the most common being the use of estrogen, with or without progestin or progesterone. The use of estrogen alone is referred to as estrogen replacement therapy (ERT), and the combination hormone replacement therapy (HRT). Other drugs used in the treatment of osteoporosis are the selective estrogen receptor modulators (SERMs) and the bisphosphonates. The SERMs appear to offer many of the positive benefits of estrogen with fewer adverse effects on the breast or uterus. Recently, a randomized, double blind study of nearly 3,000 women found no overall benefit in reducing heart disease for those taking estrogen. In fact, in the first year of estrogen use, heart disease was higher in this group than in those taking placebo. The relationship between systemic BMD and periodontal status has been investigated. In some patients, there is a correlation between a decrease of mandibular bone mass and tooth loss. In others, there is no such correlation. Those postmenopausal women taking HRT had greater tooth retention and a reduced likelihood of edentulism. A recent study has found no correlation between clinical attachment levels and the BMD of the lumbar spine. Many possible factors contribute to the development of osteoporosis and periodontal diseases. It is difficult to establish a direct correlation between tooth loss, bone loss, and loss of attachment resulting from periodontitis and decreased BMD associated with osteoporosis, but studies are ongoing.

Aged↗

Estrogen receptor-alpha (ER-alpha) and defects in uterine receptivity in women.

Endometriosis is a disorder that affects 5% of the normal population but is present in up to 40% of women with pelvic pain and/or infertility. Recent evidence suggests that the endometrium of women with endometriosis exhibits progesterone insensitivity. One endometrial protein that fluctuates in response to progesterone is the estrogen receptor-alpha (ER alpha), being down-regulated at the time of peak progesterone secretion during the window of implantation. Here we demonstrate that the biomarker of uterine receptivity, beta 3 integrin subunit, is reduced or absent in some women with endometriosis and that such defects are accompanied by inappropriate over-expression of ER alpha during the mid-secretory phase. Using a well-differentiated endometrial cell line we showed that the beta 3 integrin protein is negatively regulated by estrogen and positively regulated by epidermal growth factor (EGF). By competing against estrogen with various selective estrogen receptor modulators (SERMs) and estrogen receptor agonists and antagonists, inhibition of expression of the beta 3 integrin by estrogen can be mitigated. In conclusion, we hypothesize that certain types of uterine receptivity defects may be caused by the loss of appropriate ER alpha down-regulation in the mid-secretory phase, leading to defects in uterine receptivity. Such changes might be effectively treated by timely administration of the appropriate anti-estrogens to artificially block ER alpha and restore normal patterns of gene expression. Such treatments will require further clinical studies.

Cells, Cultured↗

Estradiol, but not raloxifene, improves aspects of spatial working memory in aged ovariectomized rhesus monkeys.

Estrogen replacement therapy (ERT) alleviates many postmenopausal symptoms but whether it also benefits cognitive function remains controversial. Further, since estrogen increases the risk of breast and uterine cancers, a new class of compounds, called selective estrogen receptor modulators (SERMs) is being considered as possible alternative to ERT. The SERM raloxifene is particularly interesting because, like estrogen, it improves lipid metabolism and reduces bone loss, without adverse effects on the breast or uterus. Little is known, however, about its effect upon cognitive function. We used a rhesus monkey model of human menopause to examine the effects of ERT and raloxifene on cognitive function. We tested 5 aged females (21-24 years old) ovariectomized long-term (10-16 years) on a battery of age-sensitive tasks, including the Delayed Response (DR), the Delayed Non-Matching-to-Sample-10 min (DNMS-10 min) and the spatial-Delayed Recognition Span Test (DRST). Monkeys were tested 5 days a week on each task for 9 consecutive months, while undergoing treatments with placebo, ethinyl estradiol (EE(2)), and raloxifene in alternating 28-days blocks. EE(2) transiently enhanced the working memory component of the spatial-DRST, but did not affect performance on the other tasks of the battery. Raloxifene had no effect on cognitive performance. These findings indicate that estradiol is able to enhance some aspects of spatial working memory in aged monkeys despite many years of estrogenic deprivation. Further, they suggest that raloxifene does not affect cognitive function after long-term ovarian hormone deprivation.

Aging↗

Drug targeting of estrogen receptor signaling in the cardiovascular system: preclinical and clinical studies.

Atherosclerosis and associated coronary heart disease events have lower prevalence in women than in men, especially during young adult years. Although multiple lines of evidence suggest that estrogens contribute to this difference, the efficacy of hormone replacement therapy for the prevention of cardiovascular disease in postmenopausal women is controversial. The protective action of estrogen in the cardiovascular system appears to be mediated indirectly by an effect on serum lipoprotein and triglyceride profiles and on the expression of coagulant and fibrinolytic proteins, and by a direct effect on the vessel wall itself. Estrogen has both rapid effects involving alteration of membrane ionic permeability and activation of membrane-bound enzymes and increases in endothelial cell nitric oxide synthase activity, as well as longer-term effects on gene expression that are mediated, at least in part, by the ligand-activated transcription factors, estrogen receptor alpha and beta. Compounds with pure antiestrogenic activity and selective estrogen receptor modulators that regulate estrogen receptor function in a tissue-specific manner have been developed in an attempt to achieve the cardioprotective effects of estrogens while minimizing the undesirable risks associated with hormone replacement therapy (e.g., endometrial and breast cancer). In this review, we will discuss recent developments on the mechanisms of estrogen action in the cardiovascular system. The results of clinical trials testing the long-term efficacy of hormone replacement therapy for the treatment of cardiovascular disease will also be discussed.

Animals↗

Soy for breast cancer survivors: a critical review of the literature.

A variety of health benefits, including protection against breast cancer, have been attributed to soy food consumption, primarily because of the soybean isoflavones (genistein, daidzein, glycitein). Isoflavones are considered to be possible selective estrogen receptor modulators but possess nonhormonal properties that also may contribute to their effects. Concern has arisen over a possible detrimental effect of soy in breast cancer patients because of the estrogen-like effects of isoflavones. Genistein exhibits a biphasic effect on the growth of MCF-7 cells in vitro, stimulating proliferation at low concentrations but inhibiting it at high concentrations. In ovariectomized athymic mice implanted with MCF-7 cells, both genistein and soy protein stimulate tumor growth in a dose-dependent manner. In contrast, in intact mice fed estrogen, genistein inhibits tumor growth. Although two studies in premenopausal women suggested that soy exerts estrogenic-like effects on breast tissue, recently conducted year-long studies indicated that isoflavone supplements do not affect breast tissue density in premenopausal women and may decrease density in postmenopausal women. These latter effects are opposite to those of hormone replacement therapy (HRT). Importantly, substantial data suggest that the progestogen, not the estrogen, component of HRT increases risk of developing breast cancer. Furthermore, recently conducted studies have failed to find that even HRT reduces survival in breast cancer patients. Overall, the data are not impressive that the adult consumption of soy affects the risk of developing breast cancer or that soy consumption affects the survival of breast cancer patients. Consequently, if breast cancer patients enjoy soy products, it seems reasonable for them to continue to use them.

Animals↗

Synthesis and binding affinities of fluoroalkylated raloxifenes.

Three fluoroalkylated derivatives (1-3) of the selective estrogen receptor modulator (SERM), raloxifene, have been synthesized. The key step in the synthesis is the C-C bond formation of benzo[b]thiophene and a substituted phenyl group (ring C) using a Stille reaction. The in vitro binding affinities of the substituted raloxifenes 1-3 are 45, 60, 89%, respectively, relative to the affinity of estradiol, which is higher than the affinity of raloxifene itself (25%). When labeled with the positron-emitting radionuclide, these compounds might be useful as PET imaging agents for estrogen receptor-positive breast tumors.

Fluorocarbons↗

Sex steroids and bone.

Sex steroids are essential for skeletal development and the maintenance of bone health throughout adult life, and estrogen deficiency at menopause is a major pathogenetic factor in the development of osteoporosis in postmenopausal women. The mechanisms by which the skeletal effects of sex steroids are mediated remain incompletely understood, but in recent years there have been considerable advances in our knowledge of how estrogens and, to a lesser extent androgens, influence bone modeling and remodeling in health and disease. New insights into estrogen receptor structure and function, recent discoveries about the development and activity of osteoclasts, and lessons learned from human and animal genetic mutations have all contributed to increased understanding of the skeletal effects of estrogen, both in males and females. Studies of untreated and treated osteoporosis in postmenopausal women have also contributed to this knowledge and have provided unequivocal evidence for the potential of high-dose estrogen therapy to have anabolic skeletal effects. The development of selective estrogen receptor modulators has provided a new approach to the prevention of osteoporosis and other major diseases of menopause and has implications for the therapeutic use of other steroid hormones, including androgens. Further elucidation of the mechanisms by which sex steroids affect bone thus has the potential to improve the clinical management not only of osteoporosis, both in men and women, but also of a number of other diseases related to sex hormone status.

Androgens↗

[Raloxifene (Celvista, Evista)].

The prevention of osteoporotic fractures in post-menopausal women must be viewed in the framework of the treatment of menopause. SERMs ("Selective Estrogen Receptor Modulators") derivative from steroid hormones have estrogenic and antiestrogenic properties according to the substance and the target tissue. Raloxifene is a second generation SERM. It increases bone mass by 1 to 3% according to the measured site and, after 3 years of therapy at the dose of 60 mg per day, it reduces the incidence of vertebral fractures by 30 to 50% if patients have or do not have vertebral fractures before therapy. This drug is approved for the prevention of vertebral fractures in post-menopausal women at increased risk of fractures. A significant reduction in the incidence of hip fractures has not been demonstrated. Raloxifene exerts favorable effects on cardiovascular risk factors but one has to wait for the results of controlled prospective trials before concluding that raloxifene reduces the risk of atherogeniec disease. Preliminary results indicate a substantial reduction of the risk of invasive breast cancer, still to be confirmed. The incidence of vaginal bleeding does not differ from placebo as raloxifene does not stimulate endometrial proliferation. The most serious adverse event, although infrequent, consists in an increase of the relative risk of thromboembolic disease by 3.1 as compared to placebo. Longer term studies are necessary to compare raloxifene with the estrogen replacement therapy and to determine the extra-bone effects.

Arteriosclerosis↗

[Raloxifene and breast: from the SERMs concept to its place in clinical practice].

Raloxifene is a second generation Selective Estrogen Receptor Modulator. It is indicated in prevention and treatment of post-menopausal osteoporosis. This drug has an estrogen agonistic effect on bone tissue, an estrogen-antagonistic effect in breast and endometrial tissue. It inhibits estrogen induced breast cells proliferation and, in animal studies, it prevents the growth of chemically induced mammary tumors. Raloxifene has a limited effectiveness in women with advanced breast cancers. The effects of raloxifene after treated breast cancer and sequential use of tamoxifene after raloxifene (or the contrary) are not known and should be tested in specific pre-clinical and clinical studies. In osteoporotic women included in the MORE trial, the risk reduction of hormone-dependent breast cancer due to raloxifene raises the issue of some effectiveness of raloxifene in breast cancer prevention. The STAR trial is currently comparing tamoxifene vs raloxifene in breast cancer prevention in women at increased risk of breast cancer. Like tamoxifene, raloxifene increases the risk of venous thrombo-embolic events. On the other hand, in a subgroup of women at increased vascular risk in the MORE trial, the reduction of cardiovascular events raises the issue of an effect of raloxifene in the prevention of coronary events. The ongoing RUTH trial is testing this assumption and it is comparing raloxifene to a placebo in women at increased vascular risk. Today, in clinical practice, before the results of ongoing trail, raloxifene should be used in the setting of osteoporosis prevention and treatment.

Aged↗

A 12-month comparative study of raloxifene, estrogen, and placebo on the postmenopausal endometrium.

OBJECTIVE: To determine the effects of a selective estrogen receptor modulator, raloxifene, on postmenopausal endometrium. METHODS: Healthy postmenopausal women (n = 415) were randomly assigned to one of the following four groups: 60 or 150 mg/day raloxifene hydrochloride, 0.625 mg/day conjugated equine estrogens, or placebo, and treated for 1 year. Endometrial biopsies were obtained in a blinded fashion at baseline and every 6 months after the ultrasound studies. Transvaginal ultrasound, with uterine size measurements, was done at baseline and at 3-month intervals. Saline-infusion sonohysterography was done at baseline and every 6 months. RESULTS: There were no statistically significant differences in baseline characteristics. Mean endometrial thickness, measured by transvaginal ultrasound, was unchanged from baseline to end point in the placebo and raloxifene groups, whereas in the estrogen group it was significantly thicker by 5.5 mm (P < .001). Mean uterine volume, calculated from transvaginal ultrasound measurements, was higher in the estrogen group only (22 cm3, P < .001). Of the 358 women with paired biopsies, endometrial hyperplasia was present in 2.1%, 0%, and 26.1% of the end-point biopsies in the placebo, raloxifene, and estrogen groups, respectively (P < .001). Proliferative endometrium was present in 2.1% of the end-point biopsies in the placebo group, 1.7% in the combined raloxifene groups, and 39.8% in the estrogen group (P < .001). CONCLUSION: Raloxifene, at 60 or 150 mg/day for 1 year, did not stimulate the postmenopausal endometrium. End-point endometrial thickness, morphology, and uterine volume in the raloxifene groups were similar to those observed at baseline and in the placebo group.

Adult↗

Effects of raloxifene on circulating prolactin and estradiol levels in premenopausal women at high risk for developing breast cancer.

BACKGROUND: Prolactin is a peptide hormone necessary for normal breast development that may contribute to breast tumorigenesis. Estrogen is a significant positive regulator of prolactin synthesis; therefore, raloxifene, a selective estrogen receptor modulator under study as a breast cancer prevention agent, may modulate both estradiol and prolactin levels by inhibiting estradiol from binding to its receptor. METHODS: Premenopausal women at increased risk for invasive breast cancer participated in a pilot chemoprevention trial and were given 60 mg raloxifene daily for 24 months. Fasting serum samples collected at baseline and after 12 months on drug were used to measure circulating prolactin, estradiol, and sex hormone binding globulin (SHBG) levels. RESULTS: Of the 27 subjects who completed 12 months of raloxifene, 23 had paired prolactin samples, and 20 had paired estradiol and SHBG samples. Prolactin levels did not significantly change with raloxifene treatment, but SHBG levels increased (mean change = 7.3 nmol/L; P = 0.0001; 95% confidence interval, 3.9-10.7). Estradiol (mean change = 42 pg/mL; P = 0.048; 95% confidence interval, 1-84 pg/mL) levels were elevated when comparing 15 of the 20 women with paired estradiol measurements who also had both of these samples taken during the early follicular phase of the menstrual cycle. CONCLUSIONS: This report is the first to examine the long-term effects of raloxifene on prolactin, estradiol, and SHBG levels in premenopausal women who are also at increased risk for developing invasive breast cancer. Raloxifene had no significant effect on prolactin levels but did increase estradiol and SHBG measurements.

Adult↗

Antiresorptive treatment of postmenopausal osteoporosis: review of randomized clinical studies and rationale for the Evista alendronate comparison (EVA) trial.

Standard pharmacological antiresorptive therapy for the prevention and/or treatment of postmenopausal osteoporosis now consists of four categories of drugs: estrogens, a selective estrogen receptor modulator (SERM), bisphosponates, and calcitonin. All of these drugs have been studied in randomized controlled trials, but meaningful comparisons of the efficacy of drugs have been difficult due to differences in baseline risks for fracture and differences in study design, including calcium and vitamin D supplementation, definition of fracture, and discontinuation rates. The current paper reviews results from pivotal studies of antiresorptive therapies with fracture as a primary endpoint, as well as head-to-head trials comparing these therapies using surrogate markers of fracture risk, and introduces the first head-to-head trial with fracture as a primary endpoint. The Evista Alendronate Comparison (EVA) trial, a multi-center, double-blind, double-dummy, randomized trial with two active treatment arms is currently underway to compare directly the osteoporotic fracture risk reduction efficacy of raloxifene and alendronate in postmenopausal women with osteoporosis as defined by bone mineral density. The results from this trial will permit more informed judgment by practitioners and provider groups concerning the relative clinical utility of these two drugs.

Alendronate↗

Raloxifene relaxes rat cerebral arteries in vitro and inhibits L-type voltage-sensitive Ca2+ channels.

BACKGROUND AND PURPOSE: Because of their mixed estrogen-agonist and estrogen-antagonist properties, selective estrogen receptor modulators (SERMs) are considered promising substitutes for hormone replacement therapy. Raloxifene and other SERMs confer estrogen-like cardiovascular protective effects but lack the carcinogenic activity of exogenous estrogen. However, little is known about the cerebrovascular action of raloxifene. Therefore, we studied the effects of raloxifene on the mechanisms regulating rat cerebral artery tone. METHODS: Ring segments of the isolated rat posterior communicating cerebral arteries were mounted in a microvessel myograph for measurement of isometric tension. Whole-cell L-type voltage-sensitive Ca2+ currents were recorded using the perforated patch-clamp technique. Raloxifene (0.1 to 10 micromol/L) reduced the contractile responses to U46619, phenylephrine, and endothelin-1 in normal Krebs solution or to CaCl2 in Ca2+-free, high K+-containing solution. Raloxifene-induced relaxation was identical in endothelium-intact and endothelium-denuded rings. ICI 182780 had no effect on raloxifene-induced relaxation. Raloxifene reduced L-type Ca2+ currents with a pD2 of 5.98+/-0.06, close to that (6.44+/-0.09) for raloxifene-induced relaxation of 60 mmol/L K+-contracted rings. CONCLUSIONS: This study demonstrates that raloxifene acutely relaxes rat cerebral arteries largely via an endothelium-independent mechanism, involving inhibition of Ca2+ influx through L-type Ca2+ channels.

15-Hydroxy-11 alpha,9 alpha-(epoxymethano)prosta-5↗

Current pharmacological options for the management of primary hyperparathyroidism.

Drugs for treating primary hyperparathyroidism can be divided into two main groups: (i) antiresorptive drugs that inhibit the increased bone turnover, which can be divided into estrogen-like compounds (estrogen, oral contraceptives and selective estrogen receptor modulators [SERMs]), bisphosphonates and calcitonin; and (ii) drugs that interfere with parathyroid hormone (PTH) secretion (currently only cinacalcet is available). No drugs that interfere with PTH action are currently available. Available studies suggest that all classes of drugs are able to lower serum calcium levels. However, calcitonin does so only temporarily. Estrogen-containing compounds (hormone replacement therapy) may be less attractive because of the potential risk of breast cancer, cardiovascular disease and deep vein thromboembolism. Oral contraceptives have not been shown to be able to prevent fractures in the general population, and no data are available on their effect in women with primary hyperparathyroidism. The only SERM marketed for hyperparathyroidism is raloxifene and this has not been associated with an increased risk of breast cancer and cardiovascular diseases, and has been shown to be able to prevent vertebral fractures in postmenopausal women with osteoporosis. Two small trials suggest that raloxifene may increase bone mineral density (BMD) and decrease serum calcium levels in patients with primary hyperparathyroidism. Bisphosphonates have been shown to decrease serum calcium and increase BMD in patients with primary hyperparathyroidism, but PTH levels may increase. Cinacalcet effectively induces a sustained decrease in serum calcium and PTH for up to 1 year. However, BMD does not seem to increase. No data on hard endpoints such as fractures, kidney stones, cardiovascular disease etc. are available for any of the drugs available for the treatment of primary hyperparathyroidism.

Bone Density↗

Effects of raloxifene on platelet functions in patients with postmenopausal osteoporosis.

Many studies have addressed the effects of estrogenic compounds on platelet function. Raloxifene is a selective estrogen receptor modulator (SERM), which is currently used for the treatment of postmenopausal osteoporosis. At present, there are no clinical data about the effects of raloxifene on platelet function. The purpose of this study was to determine if raloxifene at therapeutic doses affects platelet function in patients with postmenopausal osteoporosis. The effects of raloxifene on platelet function were investigated using a commercial platelet function analyzer (PFA-100) with collagen epinephrine and collagen adenosine 5'-diphosphate (ADP) cartridges. We studied platelet function of 30 patients with postmenopausal osteoporosis before and 15 days after initiation of raloxifene 60 mg/daily. Closure times did not differ significantly between samples obtained before (117.8 +/- 20.5 s) and after raloxifene therapy (106.5 +/- 25.4 s) in collagen/epinephrine cartridges (P > 0.05). There was also no statistically significant difference in mean closure times with collagen/ADP cartridges at baseline (86.2 +/- 18.5 s) and after raloxifene therapy (84.4 +/- 13.8 s) (P > 0.05). Platelet counts (278.3 +/- 72.9 vs. 262.4 +/- 56.7 109/L, P > 0.05) and mean platelet volumes (8.9 +/- 1 vs. 9.1 +/- 1 fL, P > 0.05) were not different before and after raloxifene therapy. Although estrogen related compounds do affect platelet function, there is suggestive data in our study that raloxifene in therapeutic dose exhibit no effect on platelet function in patients with postmenopausal osteoporosis.

Aged↗

Raloxifene.

Raloxifene is a selective estrogen receptor modulator, a compound that has estrogen agonist activity at some sites and antagonist activity at others. In investigations in animals and in rigorously conducted trials in humans, raloxifene treatment is associated with a 30%-40% reduction in risk of one or more spine fractures using the 60 mg dose. This reduction in risk is found in women with or without baseline fractures, in women with bone mineral density (BMD) in the lower, middle, or upper third of the low range (all had BMD reduced by more than 2.5 SD) and in women aged less than 65 years, between 65-70 years, and greater than 70 years. A reduction in ankle fractures, but not hip or wrist fractures, was found. Raloxifene treatment also is associated with a 60%-70% reduction in risk for breast cancer and is associated with reduced total and LDL cholesterol, lower fibrinogen, and no rise in triglyceride. Reduced aortic wall cholesterol content is reported in animal studies. These are surrogate endpoints of cardioprotection. There is no evidence that raloxifene reduces the incidence of myocardial or cerebrovascular events. Raloxifene does not induce breast tenderness, endometrial hyperplasia, menstrual bleeding, or endometrial cancer, but may be associated with an increased risk of thromboembolic disease (1/1000 cases per year), leg cramps in 2%-4% of cases and hot flushes in 4%-6% of cases, usually in first 6 months.

Animals↗