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Estrogen modulates AT1 receptor gene expression in vitro and in vivo.

BACKGROUND: The AT1 receptor has been implicated in the pathogenesis of hypertension and atherosclerosis. Estrogen deficiency is also associated with cardiovascular diseases. Therefore, we examined the AT1 receptor gene expression in ovariectomized rats with and without estrogen replacement therapy and the influence of estrogen on AT1 receptor expression in cultured vascular smooth muscle cells. METHODS AND RESULTS: Rat aortic tissue was examined 5 weeks after ovariectomy. In one group, estrogen (1.7 mg estradiol) was administered during the 5-week period. Functional experiments assessed angiotensin II-induced contraction of aortic rings. AT1 receptor mRNA levels were measured by quantitative polymerase chain reaction and Northern blotting. AT1 receptor density was assessed by radioligand binding assays. These techniques were also applied in cultured vascular smooth muscle cells. The efficacy of angiotensin II on vasoconstriction was significantly increased in aortas from ovariectomized rats. As assessed by radioligand binding assays, AT1 receptor density was increased to 160% without changes in receptor affinity during estrogen deficiency. AT1 receptor mRNA levels were consistently increased to 187% in ovariectomized rats compared with sham-operated animals. Estrogen substitution therapy in ovariectomized rats reversed this AT1 receptor overexpression. To explore the underlying mechanisms, the direct influence of estradiol on AT1 receptor expression was investigated in VSMCs. Estradiol (1 micromol/L) led to a time-dependent downregulation of AT1 receptor mRNA, with a maximum of 33.3% at 12 hours. There was a correlative decrease in AT1 receptor density. CONCLUSIONS: This novel observation of estrogen-induced downregulation of AT1 receptor expression could explain the association of estrogen deficiency with hypertension and atherosclerosis, because activation of the AT1 receptor plays a key role in the regulation of blood pressure, fluid homeostasis, and vascular cell growth.

Angiotensin II↗

[Sexual dysfunction in the menopause. Incidence, pharmacological treatment and side effects].

The frequency of female sexual dysfunction increases with age, and the menopause has a negative influence on sexual life. Pharmacological treatment options of female sexual dysfunctions in the menopause include hormone therapy and sildenafil. Few randomised controlled studies have been done, and there is evidence suggesting that systemic hormone therapy, such as estrogen, estrogen/progesterone, estrogen/testosterone and tibolone, has a positive impact on sexual dysfunction in the menopause. There is evidence that local estrogen relieves vaginal dryness and dyspareunia. The recent discoveries of the side effects of hormone therapy necessitate careful evaluation of the indication for hormone therapy, and the duration of treatment is recommended to be as short as possible. The long-term side effects of testosterone in women have not yet been fully investigated. Sildenafil has shown a positive effect on female sexual dysfunction only in a limited group of women: those with arousal problems without desire problems. This result demands a focus on new pharmaceutical products, and at present the effect of testosterone and selective estrogen receptor modulators on female sexual dysfunction is being investigated.

Adult↗

Use of SERMs for the adjuvant therapy of early-stage breast cancer.

Tamoxifen was the first in a class of drugs now commonly referred to as selective estrogen receptor modulators or SERMs. SERMs exhibit tissue-specific estrogenic agonist/antagonist activity through their ability to bind to the estrogen receptor alpha (ER) protein and interact with coregulatory proteins, thereby modulating transcription of estrogen target genes. Since its first approval by the United States Food and Drug Administration (FDA) in 1977, tamoxifen has been found to (a) lower the risk of recurrence and death for women with early-stage hormone receptor-positive breast cancer, irrespective of menopausal and node status or use of adjuvant chemotherapy; (b) reduce the risk of invasive breast cancer following breast conservation in women with ductal carcinoma in situ (DCIS); and (c) reduce the risk of breast cancer in high-risk women. Toremifene is the only other SERM approved by the FDA for breast cancer treatment. However, it offers no clear clinical advantage over tamoxifen in the adjuvant or metastatic settings. Several other SERMs are in various phases of clinical development. In addition, strategies to combine SERMs with other endocrine therapy like ovarian suppression or aromatase inhibitors are active areas of investigations. At present, SERMs are recognized as the first targeted and relatively nontoxic medical therapy for women with high-risk or steroid hormone receptor-positive breast cancer.

Breast Neoplasms↗

Estrogen receptor beta modulates estradiol induction of progestin receptor immunoreactivity in male, but not in female, mouse medial preoptic area.

The medial preoptic area (mPOA) of the hypothalamus contains many neurons that express estrogen receptor alpha (ER) and/or ERbeta. We examined the distribution of these receptors and assessed responses to estradiol (E2) in the adult mouse mPOA. Gonadectomized adult male and female mice were killed, and brains were processed for immunocytochemistry for ERalpha and ERbeta. More ERalpha immunoreactive (-ir) than ERbeta-ir neurons were present in the mouse mPOA. Numbers of ERalpha-ir cells were equivalent between males and females, but males had significantly more ERbeta-ir neurons than females. Using breeders that were heterozygous for disrupted ERalpha and ERbeta genes, we produced offspring with varying numbers (0, 1, or 2) of functional and disrupted ERalpha and ERbeta genes. After gonadectomy, half the mice received E2 for 5 d before they were killed. Estradiol treatment, sex, and genotype each had independent effects on numbers of PR-ir neurons in the mPOA. In all cases, brains that lacked at least one functional copy of ERalpha had reduced PR-ir cell numbers. In gonadectomized, untreated mice, one functional copy of the ERbeta gene was correlated with the largest amount of PR-ir. After E2 treatment, both sexes had greatly enhanced numbers of PR-ir containing neurons. In females, maximal PR induction required the presence of at least one functional copy of ERalpha, whereas in males, at least a single copy of both functional ERbeta and ERalpha genes was needed for maximal PR-ir induction. We hypothesize that the two ERs have dependent and independent roles in sexual differentiation of neuroendocrine function.

Animals↗

Treatment strategies for uterine leiomyoma: the role of hormonal modulation.

Uterine leiomyomas are the most common gynecological tumors and are a significant health concern for many women. Although the exact etiology of these tumors is unknown, epidemiological and experimental animal studies have established a role for ovarian hormones in the pathogenesis of this disease. Current treatment regimens for symptomatic tumors primarily require surgical intervention. However, a major emphasis of leiomyoma research involves understanding how hormones regulate tumor growth to target the hormonal dependence of these tumors with new therapeutic strategies. Gonadotropin-releasing hormone agonists that block hormone production and induce a hypoestrogenic milieu can be utilized as adjuvant therapy; however, these drugs do little to reduce tumor cellularity, and their negative impact on bone mineral density limits their use. Selective estrogen receptor modulators (SERMs) are nonsteroidal therapeutic agents that bind to the estrogen receptor and elicit tissue-specific estrogen agonist or antagonist effects. SERMs are effective in the treatment and prevention of breast cancer, and preclinical and clinical data suggest that these hormonal modulators may also be beneficial for the treatment of uterine leiomyomas. Continued efforts to understand the role of hormones in the development of this disease will allow the development of newer, less invasive treatment strategies, which will help minimize the negative impact of these tumors on women's health.

Estrogens↗

Estrogens and anti-estrogens: key mediators of prostate carcinogenesis and new therapeutic candidates.

Despite the historical use of estrogens in the treatment of prostate cancer (PCa) little is known about their direct biological effects on the prostate, their role in carcinogenesis, and what mechanisms mediate their therapeutic effects on PCa. It is now known that estrogens alone, or in synergism with an androgen, are potent inducers of aberrant growth and neoplastic transformation in the prostate. The mechanisms of estrogen carcinogenicity could be mediated via induction of unscheduled cell proliferation or through metabolic activation of estrogens to genotoxic metabolites. Age-related changes and race-/ethnic-based differences in circulating or locally formed estrogens may explain differential PCa risk among different populations. Loss of expression of estrogen receptor (ER)-beta expression during prostate carcinogenesis and prevention of estrogen-mediated oxidative damage could be exploited in future PCa prevention strategies. Re-expression of ER-beta in metastatic PCa cells raises the possibility of using ER-beta-specific ligands in triggering cell death in these malignant cells. A variety of new estrogenic/anti-estrogenic/selective estrogen receptor modulator (SERM)-like compounds, including 2-methoxyestradiol, genistein, resveratrol, licochalcone, Raloxifene, ICI 182,780, and estramustine are being evaluated for their potential in the next generation of PCa therapies. Increasing numbers of patients self-medicate with herbal formulations such as PC-SPES. Some of these compounds are selective ER-beta ligands, while most of them have minimal interaction with ER-alpha. Although many may inhibit testosterone production by blockade of the hypothalamal-pituitary-testis axis, the most effective agents also exhibit direct cytostatic, cytotoxic, or apoptotic action on PCa cells. Some of them are potent in interfering with tubulin polymerization, blocking angiogenesis and cell motility, suppressing DNA synthesis, and inhibiting specific kinase activities. Further discovery of other compounds with potent apoptotic activities but minimal estrogen action should promote development of a new generation of effective PCa preventive or treatment regimens with few or no side-effects due to estrogenicity. Further advancement of our knowledge of the role of estrogens in prostate carcinogenesis through metabolic activation of estrogens and/or ER-mediated pathways will certainly result in better preventive or therapeutic modalities for PCa.

Estrogen Receptor Modulators↗

SP500263, a novel SERM, blocks osteoclastogenesis in a human bone cell model: role of IL-6 and GM-CSF.

Bone metabolism requires tightly coupled activities exhibited by two unique cell populations, the bone-resorbing osteoclasts and the bone-forming osteoblasts. Imbalance in the function of these two cell types can result in osteoporosis, a condition characterized by loss in bone integrity and of bone mass. We developed a human bone cell culture model that allows the in vitro study of bone formation and osteoclastogenesis and employed this bone model for the screening and pharmacological analyses of protein and small molecule therapeutics. The cytokines, interleukin-6 (IL-6) and granulocyte macrophage colony stimulating factor (GM-CSF), play an intricate role in osteoclastogenesis in this system. Neutralizing antibodies to IL-6 and GM-CSF decreased the formation of osteoclast-like cells. SP500263, an early lead compound from a novel class of selective estrogen receptor modulators (SERMs), was more efficacious than estrogen and comparable to raloxifene in blocking cytokine production and formation of osteoclast-like cells. Our research demonstrates the usefulness of the in vitro co-culture model in the dissection of molecular events relevant to bone metabolism and provides greater insight into a potential novel role for cytokines in bone resorption. Furthermore, representatives of the SP500263 family of SERMs may be effective as therapeutics for the treatment of osteoporosis.

Biomarkers↗

Association between exercise and pubertal BMD is modulated by estrogen receptor alpha genotype.

UNLABELLED: Genetic and environmental factors contribute to bone mass, but the ways they interact remain poorly understood. This study of 245 pre- and early pubertal girls found that the PvuII polymorphism in the ER-alpha gene modulates the effect of exercise on BMD at loaded bone sites. INTRODUCTION: Impaired achievement of bone mass at puberty is an important risk factor for the development of osteoporosis in later life. Genetic, as well as environmental, factors contribute to bone mass, but the ways they interact with each other remain poorly understood. MATERIALS AND METHODS: We investigated the interaction between a PvuII polymorphism at the ER-alpha gene and physical activity (PA) on the modulation of bone mass and geometry in 245 10- to 13-year-old pre- and early pubertal Finnish girls. Level of PA was assessed using a questionnaire. Bone properties were measured using DXA and pQCT. The analyses were controlled for the effects of Tanner stage and body size index. RESULTS: Girls with heterozygote ER-alpha genotype (Pp) and high PA had significantly higher bone mass and BMD, as well as thicker cortex, at loaded bone sites than their low-PA counterparts. No differences were found in bone properties of the distal radius, which is not a weight-bearing bone. Bone properties did not differ in either homozygote groups (PP and pp) regardless of the PA level. CONCLUSIONS: These findings suggest that the PvuII polymorphism in the ER-alpha gene may modulate the effect of exercise on BMD at loaded bone sites. The heterozygotes may benefit most from the effect of exercise, whereas neither of the homozygote groups received any significant improvement from high PA. Furthermore, high PA may hide the genetic influence on bone. Indeed, it seems that one may compensate one's less favorable Pp genotype by increasing leisure PA at early puberty.

Adolescent↗

Prevention of hormone-related cancers: breast cancer.

Carcinogenesis in the breast is a hormonally dependent process. Evidence implicating estrogen as a key breast carcinogen comes from various lines of investigation. Traditional epidemiologic studies demonstrate associations between estrogen exposure, both exogenous and endogenous, and increased breast cancer risk. Ongoing genetic epidemiologic studies also show associations between specific polymorphisms in estrogen-metabolizing genes and risk, albeit inconsistently. The application of these findings to the treatment and, more recently, the prevention of breast cancer has led to the development of agents that either (1) inhibit estrogen action at the estrogen receptor (selective estrogen receptor modulators (SERMs]); or (2) inhibit estrogen-synthesizing enzymes, thereby abrogating synthesis of this hormone (aromatase inhibitors). Large phase III trials have evaluated the ability of such agents to reduce the incidence of breast cancer in women at increased risk of the disease. The National Surgical Adjuvant Breast and Bowel Project (NSABP) P-1: Breast Cancer Prevention Trial (BCPT) demonstrated the superiority of the SERM tamoxifen to placebo in reducing breast cancer risk, leading to the Food and Drug Administration approval of tamoxifen for risk reduction. The implementation of tamoxifen for this indication has not become widespread in clinical practice, however, for a variety of reasons that we discuss. Results from the NSABP Study of Tamoxifen and Raloxifene, which compares the risk-reducing efficacy as well as toxicity of these two SERMs in a similar high-risk population, will be available in the near future. Based on promising data involving reduction of contralateral breast cancer risk in adjuvant studies, several aromatase inhibitors, including letrozole, anastrozole, and exemestane, are being incorporated into trials evaluating their efficacy as preventive agents in women at increased risk.

Antineoplastic Agents, Hormonal↗

[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↗

Expression of osteoblast marker genes in rat calvarial osteoblast-like cells, and effects of the endocrine disrupters diphenylolpropane, benzophenone-3, resveratrol and silymarin.

Compelling evidence indicates that some endocrine disrupters (EDs), acting as selective estrogen-receptor modulators, interfere with osteoblast differentiation and function. Hence, we investigated whether four EDs [bisphenol-A (BSP), benzophenone-3 (BP3), resveratrol and silymarin] affect differentiation and growth of rat calvarial osteoblast-like (ROB) cells in primary in vitro culture. ROB cells were cultured for up 30 days in a medium supplemented with fetal calf serum (FCS), and conventional RT-PCR detected the expression of collagen-1alpha and osteonectin mRNAs through the entire culture period. Real time-PCR demonstrated that at days 2 and 7 of culture the expressions of collagen-1alpha and osteonectin were very low, and underwent a 192- and a 334-fold increase, respectively, at day 21 of culture. In contrast, osteocalcin expression remained unchanged from days 2 to 21 of culture. EIA showed that ROB cells secreted sizeable amounts of osteocalcin and osteopontin between days 13 and 15 of culture. EDs were added at day 13 of culture at concentrations ranging from 10(-10) to 10(-6) M, being the culture medium deprived of FCS, and their effects were tested 48 h later. None of EDs was found to affect osteocalcin and osteopontin secretion from ROB cells, suggesting that their effects were tested at a relatively earlier stage of culture, when ROB cell differentiation into osteoblats is not fully accomplished, and/or the presence of estrogens contained in FCS is needed for EDs to exert their osteoblast-differentiation modulating action. BSP and BP3, but not resveratrol and silymarin, decreased proliferative activity of cultured ROB cells, a cytotoxic effect conceivably independent of their estrogen-receptor modulating activity.

Animals↗

Arzoxifene as therapy for endometrial cancer.

OBJECTIVE: Arzoxifene, an orally active third-generation selective estrogen-receptor modulator (SERM), opposes the action of estrogen on the breast and endometrium but exerts an estrogen-agonist effect on bone and the lipid profile. Since this is an appealing combination for hormonal therapy of estrogen-related cancers, we initiated testing the potential of arzoxifene in women with treatment-refractory endometrial cancer. METHODS: Two phase I studies were conducted to evaluate the safety and pharmacokinetics of single and multiple doses of arzoxifene. In addition, two multi-institutional phase II trials have been completed on 100 women with metastatic or recurrent endometrial cancer. RESULTS: No serious adverse events were observed in the single-dose phase I study, the principal side effect being hot flashes in 5/15 healthy volunteers. In the second phase I study, conducted in 32 women with metastatic breast cancer, one patient had a serious, possibly drug-related adverse reaction (pulmonary embolism). The two multi-institutional trials demonstrated significant activity at 20 mg/day in patients with metastatic or recurrent endometrial cancer. Observed clinical response rates were 25 and 31%, with a median response duration of 19.3 and 13.9 months, respectively. Progression of the disease was stabilized in a substantial number of women. Toxicity was mild, except for two cases of pulmonary embolism that might have been drug related. CONCLUSIONS: Further investigation is warranted to verify these preliminary response rates and the clinical significance of the stable disease cases, to compare clinical outcomes with those in progestin-treated women, and to elucidate the mechanisms of SERM action in this disease.

Antineoplastic Agents, Hormonal↗

Clinical effects of raloxifene hydrochloride in women.

PURPOSE: To review clinical data on raloxifene hydrochloride, a selective estrogen receptor modulator that was recently approved for the prevention of osteoporosis in postmenopausal women. DATA SOURCES: English-language articles published from 1980 to May 1998 were identified through MEDLINE searches. Bibliographies, book chapters, and meeting abstracts were reviewed for additional relevant publications. STUDY SELECTION: Publications that contained information on the background of development, structure, mechanism of action, tissue-selective effects, and adverse effects of raloxifene hydrochloride were included. DATA EXTRACTION: Data in selected articles were reviewed, and relevant clinical information was extracted. DATA SYNTHESIS: Raloxifene hydrochloride was developed in an effort to find a treatment for breast cancer and osteoporosis. It binds to the estrogen receptor and shows tissue-selective effects; thus, it belongs to a class of drugs recently described as selective estrogen receptor modulators. Tissue selectivity of raloxifene may be achieved through several mechanisms: the ligand structure, interaction of the ligand with different estrogen receptor subtypes in various tissues, and intracellular events after ligand binding. Raloxifene has estrogen-agonistic effects on bone and lipids and estrogen-antagonistic effects on the breast and uterus. An increase in bone mineral density at the spine, total hip, and total body has been reported with raloxifene but seems to be less than that seen with estrogen or alendronate therapy. Raloxifene has been shown to produce a reduction in total and low-density lipoprotein cholesterol concentrations similar to that produced by estrogen therapy, but high-density lipoprotein cholesterol and triglyceride concentrations do not increase during raloxifene therapy. In the uterus, raloxifene does not stimulate the endometrium. Long-term data on the effects of raloxifene in reduction of risk for fracture; prevention of cardiovascular events; cognitive function; and the incidence of breast, ovarian, and uterine cancer are not available. The most common adverse effect of raloxifene is hot flashes. CONCLUSIONS: Raloxifene has been shown to have beneficial effects in selected organs in postmenopausal women. Although estrogen remains the drug of choice for hormonal therapy in most postmenopausal women, raloxifene may be an alternative in certain groups of women at risk for osteoporosis.

Animals↗

The effects of raloxifene and simvastatin on plasma lipids and endothelium.

PURPOSE: Raloxifene is a selective estrogen receptor modulator and an attractive alternative to estrogen replacement as it obviates the need for a progestin and does not increase C-reactive protein levels. We compared the effects of simvastatin and raloxifene treatments on the lipid profile, the levels of adhesion molecules and the endothelium dependent and independent vasoreactivity. SUBJECTS & METHODS: We treated 12 postmenopausal women with hypercholesterolemia and coronary artery disease with raloxifene 60 mg/day and simvastatin 20 mg/day in a randomized, double-blind, crossover study. Each treatment period was 8 weeks long with a 4-week washout interval. Plasma lipids and cellular adhesion molecules were evaluated and peripheral blood flow studies with venous occlusion plethysmography were performed. RESULTS: Both simvastatin and raloxifene significantly reduced total [33% (27-40), 12% (0-24)] and LDL [44% (36-52), 16% (0-33)] cholesterol compared to baseline values (p < 0.05) but simvastatin was more effective than raloxifene (p < 0.005). None of the treatments had any significant effect on HDL cholesterol and triglyceride levels. Only raloxifene significantly reduced Lp(a) [18% (1-36)] and ICAM-1 [17% (8-25)] and VCAM-1 [24% (15-33)] plasma levels compared to baseline (p = 0.019, p < 0.0001 and p = 0.003, respectively). Hyperemic blood flow response on raloxifene was significantly higher compared to baseline [52% (0-105)], (p < 0.05), whereas no significant change was noted on simvastatin. Endothelium independent blood flow induced by nitroglycerine was not influenced by either active treatment. CONCLUSIONS: Raloxifene administration is associated with lower ICAM-1, VCAM-1 and Lp(a) plasma levels and enhanced endothelium dependent dilation compared to simvastatin although simvastatin is more powerful in total and LDL cholesterol reduction.

Aged↗

Altered pharmacology and distinct coactivator usage for estrogen receptor-dependent transcription through activating protein-1.

Estrogen signaling occurs through at least two distinct molecular pathways: (i) direct binding of liganded estrogen receptors (ERs) to estrogen-responsive DNA elements (EREs) (the "ER/ERE pathway") and (ii) indirect recruitment of liganded ERs to activating protein-1 (AP-1)-responsive DNA elements via heterodimers of Fos and Jun (the "ER/AP-1 pathway"). We have developed a biochemical assay for examining ligand-regulated transcription by ERs in the ER/AP-1 pathway. This assay recapitulates the altered (i.e., agonistic) pharmacology of selective estrogen receptor modulator drugs in this pathway reported previously by using various cell-based assays. We used our biochemical assay to examine the detailed mechanisms of ER/AP-1-dependent transcription. Our studies indicate that (i) ERalpha/AP-1 complexes play a critical role in promoting the formation of stable RNA polymerase II preinitiation complexes leading to transcription initiation, (ii) chromatin is a key determinant of estrogen and selective estrogen receptor modulator signaling in the ERalpha/AP-1 pathway, (iii) distinct domains of ERalpha are required for recruitment to DNA-bound Fos/Jun heterodimers and transcriptional activation at AP-1 sites, and (iv) different enhancer/activator combinations in the ERalpha and AP-1 pathways use coactivators in distinct ways. These studies have increased our understanding of the molecular mechanisms underlying ligand-dependent signaling in the ER/AP-1 pathway and demonstrate the usefulness of this biochemical approach.

Chromatin↗

SERMs: current status and future trends.

Selective estrogen receptor modulators, or SERMs, are a class of compounds that can act as estrogen receptor (ER) agonists in some tissues while acting as ER antagonists in others. SERMs are being evaluated and used to treat and prevent such diseases as breast cancer, osteoporosis, and cardiovascular disease. Currently, three primary SERMs are used clinically, which include tamoxifen, toremifene (triphenylethylenes), and raloxifene (a benzothiophene). Tamoxifen and toremifene have beneficial effects on bone and serum lipids, and are currently used to treat breast cancer. Both have stimulatory effects on the uterus. Raloxifene, indicated for the treatment and prevention of osteoporosis, also has beneficial effects on bone and serum lipids, but does not stimulate the uterus. All three are associated with venous thromboembolism and hot flashes. New SERMs to treat and prevent breast cancer, osteoporosis, and cardiovascular disease are undergoing clinical development, including idoxifene, droloxifene, ospemifene, lasofoxifene, arzoxifene, and MDL 103,323.

Animals↗

Raloxifene and cardiovascular health: its relationship to lipid and glucose metabolism, hemostatic and inflammation factors and cardiovascular function in postmenopausal women.

CHD is one of the most common serious chronic conditions in postmenopausal women and leads to extremely high risk for recurrent myocardial infarction and death. On the basis of the currently available randomized clinical-trial results the role of conventional HRT for treatment and prevention of CHD is rapidly evolving from presumed benefit to proven harm, at least in some categories of women yet to define. For this reason there has been a particular interest in potential clinical uses of selective estrogen receptor modulators (SERMs). SERMs are a class of compounds that can act as estrogen receptor (ER) agonists in some domains (bone and lipids) and acting as ER antagonists in others (breast and uterus). Raloxifene hydrochloride is an antiestrogen that is currently approved only to treat osteoporosis in postmenopausal women. Because of its effects on lipids and other biomarkers of cardiovascular risk, there is great interest in determining whether it may benefit the cardiovascular system. The great majority of data on cardiovascular effects of raloxifene concern effects on lipids and markers of thrombosis and inflammation. The purpose of this review is to summarize the best available evidence concerning raloxifene and cardiovascular disease focusing some areas known to be important risk factors for cardiovascular diseases: lipids and lipoproteins, glucose metabolism, hemostatic factors, markers of inflammation and cardiovascular function.

Aged↗

Risk-reducing strategies for breast cancer--a review of recent literature.

The incidence of newly diagnosed breast cancer cases world-wide is expected to double by 2020. Risk-reducing strategies for breast cancer include lifestyle modifications, chemoprevention and surgery (bilateral mastectomy and/or oophorectomy). Lifestyle modifications include avoidance of postmenopausal obesity and hormone replacement therapy (HRT), regular physical activity, and restriction of alcohol and animal fat intake. Tamoxifen is a selective estrogen receptor modulator (SERM) shown in randomized controlled trials to reduce the incidence of estrogen receptor (ER)-positive breast cancer in high-risk healthy women. However, its routine use cannot be recommended for breast cancer prevention in healthy women due to its significant adverse effects, specifically in terms of endometrial carcinoma and thromboembolism. On the other hand, tamoxifen may be used for chemoprevention in women at high risk of developing ER-positive breast cancer and at low risk of developing complications. Raloxifene, another SERM, also appears to be effective in reducing breast cancer risk, and lacks the unwanted stimulatory effect on the uterus. Other promising chemopreventive agents currently under investigation include cyclo-oxygenase 2 (COX-2) inhibitors, fenretinide, aromatase inhibitors, and goserelin. Prophylactic mastectomy can reduce breast cancer risk by 90% in high-risk women. Bilateral oophorectomy has the potential of reducing the risk of both breast and gynecologic cancer in women carrying BRCA-1 or BRCA-2 mutations. Further research is required to identify novel strategies to prevent ER-negative breast cancer, minimize the adverse effects of tamoxifen and other SERMs, and evaluate the role of mammary ductal lavage and ductoscopy in guiding risk-reducing strategies.

Breast Neoplasms↗