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Update on clinical role of tamoxifen.

PURPOSE OF REVIEW: Breast cancer is the most common malignancy amongst women in the United States and decreased mortality over the past decade has been attributed to a combination of screening and adjuvant therapies. There has been a resurgence of interest in hormonal therapies and this article discusses the clinical status of tamoxifen in the context of emerging alternative agents for treatment and prevention of breast cancer. RECENT FINDINGS: Tamoxifen has served as a prototype for the development of selective estrogen receptor modulators at the laboratory-clinical interface. Molecular technologies have permitted elucidation of mechanisms for tissue specific action and led to newer selective estrogen receptor modulators with potentially greater antitumour efficacy and attenuated uterotrophic profile. Publications over the past 12 months have emphasized the risks of thromboembolism and endometrial carcinoma associated with tamoxifen use which has accelerated application of other hormonal agents for treatment of advanced disease and as neoadjuvant therapy. This article reviews the current role of tamoxifen in the treatment of early and advanced breast cancer together with its potential for chemoprevention. Models for quantitative risk assessment are being developed to identify women for whom chemoprotection is justified. SUMMARY: Recent data showing a survival advantage for the aromatase inhibitor letrozole compared with tamoxifen in the advanced setting and improvement in disease-free survival for the aromatase inhibitor anastrozole versus tamoxifen as adjuvant treatment may herald a major shift in standard first-line endocrine therapies for both advanced and early disease and ultimately chemoprevention of breast cancer. Other agents including newer SERMs and pure antiestrogens are undergoing phase III clinical trials and future endocrine and biological therapies are likely to include more selective and targeted therapies, which may be efficacious in both hormone-sensitive and receptor-negative disease.

Adult↗

Selective estrogen-receptor modulators.

Tamoxifen is useful for adjuvant treatment of breast cancer and in some women for the prevention of breast cancer. The risk-benefit ratio in regard to the skeleton and perhaps other organ systems may very well be different for postmenopausal versus premenopausal women. In postmenopausal women, tamoxifen (20 mg/d) increased BMD in the spine and perhaps the hip; however, the effect on fracture risk is unclear. Therefore, for postmenopausal women with osteoporosis, consideration should be given to the addition of an agent that is shown to have efficacy against fractures (such as bisphosphonates), even while these women are on tamoxifen. For women at only modest or moderate risk, with bone density above the osteoporosis range (T score above -2.5) and no major fracture history, tamoxifen is probably adequate for 5 years of use. Potentially serious adverse effects include venous thromboembolism, uterine cancer, benign uterine disease, and cataracts. Raloxifene (60 mg/d) protects against vertebral fractures over 4 years in women with osteoporosis, produces small increases in bone mass of the spine, hip, and total body, and reduces bone turnover in postmenopausal women with or without osteoporosis. No significant effect has yet been demonstrated on nonvertebral fractures after 4 years of treatment. Raloxifene has the additional benefit of substantially reducing the risk of ER-positive invasive breast cancer and does not increase the risk of uterine disease. Raloxifene increases the risk of venous thromboembolic disease to the same degree as tamoxifen and estrogen. Therefore, SERMS and estrogens are generally contraindicated in women with a previous history of venous thromboembolism or those who are at significantly increased risk. Raloxifene is probably most useful in women who have osteoporosis (T score = -2.5) or who are at risk (T score less than -1.5 with clinical risk factors) in the middle menopausal period (age 55-65) or in the early menopausal period in women who have no significant hot flashes. At this stage in life, vertebral fractures are common, but hip fractures are not. Therefore, women who take raloxifene can expect a reduction in the likelihood of having a vertebral fracture, and possibly breast cancer. The lack of definitive efficacy against hip fracture is not a major deterrent to use of this agent in this age group because hip fracture risk is very low. Raloxifene might not be the treatment of choice for elderly women who are at particularly high risk of hip fracture.

Female↗

CNS: sex steroids and SERMs.

The central nervous system (CNS) is one of the main target tissues for sex steroid hormones, which act both through genomic mechanisms, modulating synthesis, release, and metabolism of many neuropeptides and neurotransmitters, and through nongenomic mechanisms, influencing electrical excitability, synaptic function, and morphological features. The identification of the brain as a de novo source of neurosteroids modulating cerebral function, suggests that the modifications in mood and cognitive performances occurring in postmenopausal women could also be related to a modification in the levels of neurosteroids, particularly allopregnanolone and DHEA, GABA-A agonist, and antagonist, respectively. The selective estrogen receptor modulators (SERMs) are compounds that activate the estrogen receptors with different estrogenic and antiestrogenic tissue-specific effects. In addition to the effects of the classic steroid hormones on the CNS, the study of selective estrogen receptor modulators impact on the neuroendocrine system has recently provided encouraging results, indicating that raloxifene analog LY 117018 and the new generation SERM EM-652 have an estrogen-like action on beta-endorphin and on allopregnanolone in ovariectomized rats, while they exert an anti-estrogenic effect in fertile rats and in ovariectomized rats treated with estrogens. In addition, raloxifene administration in postmenopausal women plays an estrogen-like effect on circulating beta-EP and allopregnanolone levels, and it restores the response of beta-EP and allopregnanolone to neuroendocrine tests. In conclusion, the positive effects of HRT on mood and cognition in postmenopausal women occur via the modulation of neuroendocrine pathways and probably also of neurosteroidogenesis. The effects of raloxifene on mood and cognition encourage the efforts in the research of an ideal estrogen replacement therapy, showing all the positive effects of estrogens and fewer side effects.

Aged↗

Prevention of osteoporosis and uterine effects in postmenopausal women taking raloxifene for 5 years.

OBJECTIVE: Raloxifene hydrochloride (60 mg/day) is a selective estrogen receptor modulator indicated for the prevention and treatment of postmenopausal osteoporosis. Raloxifene treatment for 3 years increases bone mineral density (BMD) and, unlike tamoxifen (a triphenylethylene selective estrogen receptor modulator), does not stimulate the endometrium in healthy postmenopausal women. The effect of longer duration of treatment with raloxifene is not known. Therefore, the main objectives of these analyses are (1) to compare the effect of 5 years of treatment with raloxifene (60 mg/day) with placebo in terms of the likelihood of developing osteoporosis and (2) to evaluate the effect of 5 years of raloxifene treatment on the endometrium and incidence of vaginal bleeding. DESIGN: The current analyses include integrated data from two identically designed, prospective, double-blinded trials including postmenopausal women (mean age, 55 years) randomly assigned to either placebo (n = 143) or raloxifene (60 mg/day; n = 185). Osteoporosis and osteopenia were diagnosed according to World Health Organization criteria, using the manufacturer's database for the lumbar spine and the National Health and Nutrition Examination Survey's 1998 reference base for the hip. Endometrial thickness was determined using transvaginal ultrasonography. Clinical diagnoses of endometrial hyperplasia or endometrial cancer were confirmed by blinded review of histopathology reports. RESULTS: Compared with the case of placebo, raloxifene treatment for 5 years reduced bone turnover markers (osteocalcin: -10.9%, P < 0.001; bone-specific alkaline phosphatase: -7.2%, P = 0.042; urinary C-telopeptide: -11.1%, P = 0.034) and was associated with increased BMD in the lumbar spine (2.8%; P < 0.001) and total hip BMD (2.6%; P < 0.001). Women taking raloxifene were less likely to develop osteoporosis (relative risk [RR] for raloxifene v placebo: 0.13; 95% CI: 0.00, 0.37; P = 0.001) or osteopenia (RR: 0.23; 95% CI: 0.00, 0.81; P = 0.038) at the lumbar spine and were more likely to convert to normal BMD status at the lumbar spine (RR: 4.01; 95% CI: 1.34, 11.23; P = 0.043) and total hip (RR: 3.92; 95% CI: 1.12,14.27; P = 0.011) at 5 years, compared with the case of placebo. Raloxifene also significantly reduced total cholesterol (-5.5%; P < 0.001) and low-density lipoprotein cholesterol (-8.7%; P < 0.001), compared with the case of placebo. No significant changes in high-density lipoprotein cholesterol (P = 0.257) or triglycerides (P = 0.620) were detected. Incidence of hot flashes was higher among women taking raloxifene compared with those taking placebo [raloxifene, 47 (28.8%); placebo, 21 (16.8%); P = 0.017]. Women taking placebo or raloxifene reported a similar incidence of vaginal bleeding (P = 0.999) or of mean endometrial thickness of more than 5 mm at baseline and at each visit, up to the 5-year endpoint (P >/= 0.349). No diagnoses of endometrial hyperplasia or endometrial cancer were made in either treatment group. CONCLUSIONS: Five years of raloxifene treatment in healthy postmenopausal women preserves BMD, significantly reduces the likelihood of development of osteoporosis, and was not associated with an increased rate of vaginal bleeding, endometrial hyperplasia, or endometrial carcinoma, compared with the case of placebo.

Bone Density↗

Raloxifene reduces fractures in postmenopausal women with osteoporosis.

UNLABELLED: Recently, selective estrogen receptor modulators have been developed for the management of osteoporosis based on antiosteoclastic properties similar to that of estrogens but with a safety profile including potential benefits on the breast, heart, and cognitive function. Raloxifene, the first selective estrogen receptor modulator to be marketed for the treatment of osteoporosis has shown reduction in spinal fracture risk in patients with low bone mineral density with (48%) or without (35%) prevalent vertebral fracture. Raloxifene also reduces nonvertebral fractures in high risk patients (47%). The decrease in Type I procollagen N-terminal propeptide at 1 year accounts for 28% of the total reduction in vertebral fracture risk. Raloxifene reduced the risk of estrogen receptor-positive invasive breast cancer by 84%. Among subjects with increased cardiovascular risk at baseline, those assigned to raloxifene had a 40% decrease in the risk of cardiovascular events compared with placebo. The definite anti-fracture efficacy of raloxifene at the spine, its plausible effect on non-spine fracture in high-risk patients and its beneficial effect on breast and heart make this compound an interesting approach for women presenting with osteoporosis. LEVEL OF EVIDENCE: Therapeutic study, level II (lesser quality randomized controlled trial [eg, < 80% followup, no blinding, or improper randomization]). See the Guidelines for Authors for a complete description of the levels of evidence.

Animals↗

New agents in development for breast cancer.

PURPOSE OF REVIEW: This review summarizes the continuing value of some therapeutic drugs and new agents under development for the treatment of breast cancer. RECENT FINDINGS: Overexpression and activation of various growth factor receptors occurs frequently in human breast cancer. Therapeutic approaches mainly involve the epidermal growth factor receptor family, insulin-like growth factor receptor and vascular endothelial growth factor receptor. Therapeutic agents targeting these receptors include the monoclonal antibodies trastuzumab and pertuzumab, and the small-molecule inhibitors gefitinib and erlotinib. Other small-molecule and dual inhibitors are in development, some of which have been demonstrated to have higher efficacy in the treatment of breast cancer. The selective estrogen receptor modulators and aromatase inhibitors continue to be valuable in the endocrine therapy of breast cancer. These drugs have been shown to have higher efficacy than conventional therapy agents, and to have extensive potential, especially in the treatment of postmenopausal women with advanced breast cancer. SUMMARY: Approved agents including epidermal growth factor receptor-targeted inhibitor, selective estrogen receptor modulators and aromatase inhibitors continue to be valuable in treating breast cancer. To overcome the acquired resistance caused by these agents and to enhance the therapy effect, the development of new and specific dual inhibitors targeting various growth factor receptors will be important in the future.

Antibodies, Monoclonal↗

Mechanisms of sex steroids. Future developments.

The discussion on the risks of hormone therapy supports the search for alternative drugs such as selective estrogen receptor modulators (SERMs). These compounds are suitable for special preventive goals, but cannot be expected to replace the use of estrogens in patients with estrogen deficiency. The development of selective progesterone receptor modulators (SPRMs) which has to resolve various problems, might be a promising approach. Hormone replacement therapy (HRT) with natural estrogens remains the measure of choice for treatment of symptoms caused by estrogen deficiency. Recent findings suggest that the additional progestogen which is used for the protection of the endometrium, plays a crucial role with regard to the risk of breast cancer and cardiovascular disease. As surrogate parameters cannot predict the extent of risks, suitable tools for the selection of progestogens with the least potential for causing adverse effects, are urgently needed. Experimental, clinical and epidemiological data suggest that the elevation in breast cancer risk is due to the proliferative effect of estrogens on breast tissue which is largely enhanced by progestogens. A short-term in vivo-test might be helpful for the evaluation of proliferative effects of estrogen-progestogen preparations. Similarly, a strictly standardized in vivo-test for the assessment of the atherogenic potential of estrogen-progestogen preparations might help to select the preparations with the lowest risk for ischemic diseases. The available data suggest that it is probably not the androgenic but the glucocorticoid activity of a progestogen which plays a role in the development of cardiovascular disease. Progestogens with glucocorticoid effects may up-regulate the thrombin receptor in the vessel wall which is involved in the development of atherosclerosis and stimulation of extrinsic coagulation.

Estrogen Replacement Therapy↗

Estrogen receptor modulators: identification and structure-activity relationships of potent ERalpha-selective tetrahydroisoquinoline ligands.

As part of a program aimed at the development of selective estrogen receptor modulators (SERMs), tetrahydroisoquinoline derivative 27 was discovered by high throughput screening. Successive replacements of the p-F substituent of 27 by an aminoethoxy side chain and of the 1-H of the tetrahydroisoquinoline core by a 1-Me group provided analogues 19 and 20. These compounds showed potencies in a cell-based reporter gene assay (ERE assay) varying between 0.6 and 20 nM and displayed antagonist behaviors in the MCF-7 human breast adenocarcinoma cell line with IC(50)s in the range of 2-36 nM. The effect of N-phenyl substituents on the activity and pharmacokinetic properties of tetrahydroisoquinoline analogues was explored. As a result of this investigation, two potent derivatives bearing a p-F N-aryl group, 19c and 20c, were discovered as candidates suitable for further profiling. To gain insight into the ligand-receptor interaction, the X-ray crystallographic structure of the 1-H tetrahydroisoquinoline derivative (R)-18a in complex with ERalpha-ligand binding domain (LBD)(301)(-)(553)/C-->S triple mutant was solved to 2.28 A. An overlay of this X-ray crystal structure with that reported for the complex of ERalpha-LBD(301)(-)(553)/carboxymethylated C and raloxifene (5) shows that both compounds bind to the same cleft of the receptor and display comparable binding modes, with differences being observed in the conformation of their "D-ring" phenyl groups.

Administration, Oral↗

Evaluation of hormone replacement therapy.

Hormone Replacement Therapy (HRT), once considered as the gold standard of treatment of menopausal symptoms and osteoporosis, introduced about seventy years ago still continuing with lot of controversies. Menopause, a transitional period of women's life, is not an illness when oestrogen level falls leading to its consequences. Results of earlier observational studies showed beneficial effects of HRT including cardiovascular protection. But all recent randomized controlled trials have failed to prove these positive effects, rather increases the cardiovascular risk and breast cancer. Women's Health Initiative(WHI), one of the recent randomized controlled trials was stopped prematurely in 2002 due to unfavorable risk-benefit ratio. HRT is not the only way of treating the menopausal symptoms and other consequences of estrogen deficiency. There are suitable alternatives without bearing the risk of HRT. Vasomotor symptoms with hot flushes and sweating experienced by about 75 percent of menopausal women can be treated with alternatives like phyto-estrogens, selective estrogen receptor modulators (SERMs), clonidine, selective serotonin reuptake inhibitors, acupuncture, exercise, behavioral therapy etc. HRT is no longer considered as the first line of treatment of postmenopausal osteoporosis. It can be treated with alternatives like regular weight bearing exercise, balanced calcium rich diet, maintaining weight, avoidance of bone robbers, (like excess alcohol, caffeine, smoking), use of SERMs etc. Use of HRT should be individualized and rationalized considering its risks and benefits.

Breast Neoplasms↗

Chemoprevention of cancer.

In this short article, we review the conceptual basis for chemoprevention of cancer, the proven clinical efficacy of this concept, and current trends to develop new chemopreventive agents based on understanding of their mechanisms of action. Four classes of new agents, namely selective inhibitors of cyclooxygenase-2, selective estrogen receptor modulators, rexinoids (retinoids that bind selectively to the receptors known as RXRs) and ligands for the peroxisome proliferator-activated receptor-gamma are discussed in detail. The importance of developing totally new classes of chemopreventive agents is stressed, with particular emphasis on the potential usefulness of new synthetic triterpenoids derived from naturally occurring molecules.

Antineoplastic Agents↗

Tamoxifen up-regulates catalase production, inhibits vessel wall neutrophil infiltration, and attenuates development of experimental abdominal aortic aneurysms.

BACKGROUND: Selective estrogen receptor modulators (SERMs), similar to estrogens, possess vasoprotective effects by reducing release of reactive oxygen species. Little is known about the potential effects of SERMs on the pathogenesis of abdominal aortic aneurysms (AAAs). This study's objective was to investigate the growth of experimental AAAs in the setting of the SERM tamoxifen. METHODS: In the first set of experiments, adult male rats underwent subcutaneous tamoxifen pellet (delivering 10 mg/kg/day) implantation (n = 14) or sham operation (n = 16). Seven days later, all animals underwent pancreatic elastase perfusion of the abdominal aorta. Aortic diameters were determined at that time, and aortas were harvested 7 and 14 days after elastase perfusion for immunohistochemistry, real-time polymerase chain reaction, Western blot analysis, and zymography. In the second set of experiments, a direct irreversible catalase inhibitor, 3-amino-1,2,4-triazole (AT), was administered intraperitoneally (1 mg/kg) daily to tamoxifen-treated (n = 6) and control rats (n = 6), starting on day 7 after elastase perfusion. Aortic diameters were measured on day 14. In a third set of experiments, rats were perfused with catalase (150 mg/kg) after the elastase (n = 5), followed by daily intravenous injections of catalase (150 mg/kg/day) administered for 10 days. A control group of rats (n = 7) received 0.9% NaCl instead of catalase. RESULTS: Mean AAA diameters were approximately 50% smaller in tamoxifen-treated rats compared with sham rats 14 days after elastase perfusion (P = .002). The tamoxifen-treated group's aortas had a five-fold increase in catalase mRNA expression (P = .02) on day 7 and an eight-fold increase in catalase protein on day 14 (P = .04). Matrix metalloprotroteinase-9 activity was 2.4-fold higher (P = .01) on day 7 in the aortas of the controls compared to the tamoxifen-treated group's aortas. Tamoxifen-treated rats had approximately 40% fewer aortic polymorphonuclear neutrophils compared to controls on day 7 (P = .05). Administration of the direct catalase inhibitor AT to tamoxifen-treated rats partially reversed the aneurysm inhibitory effect of tamoxifen by nearly 30% (P = .02). In contrast, catalase administration inhibited AAA formation by 44% (P = .002). CONCLUSIONS: The selective estrogen receptor modulator tamoxifen inhibits the development of AAAs in male rats in association with an up-regulation of catalase and inhibition of aortic wall neutrophil infiltration.

Amitrole↗

Hormone replacement therapy and fractures in older adults.

Estrogen deficiency in women is associated with accelerated bone loss, and estrogen replacement therapy has been proven to be effective in preventing osteoporosis and fractures in postmenopausal women. The introduction of selective estrogen receptor modulators that have an estrogen-like effect on the skeleton but have a different pattern of effects on other tissues may have an important role in the management of osteoporosis in women in the near future. In men, androgen deficiency has been shown to be associated with osteoporosis. Although androgen replacement in hypogonadal men may decrease bone resorption and increase bone mass, long-term placebo-controlled trials are needed to better define the benefits and risks of such therapy before it can be recommended. Sex hormone deficiency is linked to the development of osteoporosis in both women and men. In women, hormonal replacement by estrogen or the newly developed selective estrogen receptor modulators may prevent the development of osteoporosis and its related fractures. In men, there is early evidence that testosterone replacement therapy may enhance bone mass in hypogonadal men.

Age Distribution↗

The effect of raloxifene on glyco-insulinemic homeostasis in healthy postmenopausal women: a randomized placebo-controlled study.

The effect of raloxifene, a selective estrogen receptor modulator recently approved as a therapeutic agent for menopause, on glyco-insulinemic metabolism was investigated in 40 healthy postmenopausal women. At the baseline and after 12 wk of raloxifene (60 mg/d) or placebo administration, all aspects of glucose metabolism were evaluated in each subject using both an oral glucose tolerance test (OGTT; 75 g) and a hyperinsulinemic euglycemic clamp to assess peripheral insulin sensitivity. Glucose, insulin, and C-peptide, measured in fasting conditions, as well as glucose and insulin responses to OGTT [expressed as area under curve (AUC)] were not modified by raloxifene, whereas C-peptide-AUC increased significantly (P < 0.05). Furthermore, a trend toward an improvement of peripheral insulin sensitivity and hepatic clearance of the hormone (fractional hepatic insulin extraction) was observed in the raloxifene-treated women with respect to the control patients. When the subjects were studied in relation to their insulin secretion in response to the glucose load, the patients, classified as hyperinsulinemic, showed the most significant response to the raloxifene treatment. In these women, the selective estrogen receptor modulator was able to induce a significant reduction of insulin circulating plasma values (P < 0.01) through both an increase of fractional hepatic insulin extraction (P < 0.01) and an improvement of the peripheral insulin sensitivity (P < 0.05). On the contrary, no net change of insulin dynamics was observed in normoinsulinemic and placebo-treated women. The present data indicate that raloxifene does not negatively influence glyco-insulinemic metabolism in unselected postmenopausal women and may indeed improve the excessive insulin responsiveness to OGTT in a selected population of hyperinsulinemic postmenopausal women.

Androgens↗

[Interactions between radiation and hormonal therapy in breast cancer: simultaneous or sequential treatment].

BACKGROUND: Combining radiation and hormone therapy (administration of selective estrogen receptor modulators) has become common clinical practice in recent years for receptor positive breast cancer. Little is known about a possible interaction of both treatment modalities if they are given simultaneously. Tamoxifen (antiestrogen molecule, triphenylethylene derivative) may theoretically render cancer cells less responsive to radiotherapy arresting hormone-receptor-positive cells in G0/G1 phase and increase the risk of breast and lung fibrosis stimulating the secretion of transforming growth factor beta in human fibroblasts. PURPOSE: This article reviews the published data to assess the impact of sequencing of hormonal and radiation therapy on outcomes in breast cancer. METHODS: Computerised searches for publications debating the sequencing of hormonal therapy relative to radiation therapy were done using MEDLINE data. RESULTS: Results of tamoxifen experiments with cell culture regarding radioprotection of tumour clonogens are conflicting. In contrast to in vitro results, in animal studies no protective effect of tamoxifen was observed. In one in vitro study, letrozole (non-steroid selective aromatase inhibitor) had a radiosensitizing effect on breast-cancer lines. No randomised clinical trials to date have studied sequencing of tamoxifen or other selective estrogen receptor modulators and radiotherapy. Results from retrospective clinical studies which included treatment arms with and without tamoxifen showed reduction in tumour recurrence with tamoxifen. Some of these studies have noted increased risk of lung and breast fibrosis with tamoxifen with radiotherapy. Results of three articles examined the effect of tamoxifen sequence showed no adverse effect on local control or survival in sequential versus concurrent tamoxifen and radiation patients. One of the three studies also assessed the risk of complications with respect to the timing of tamoxifen with radiotherapy. There was no difference in the rates of complications between the two groups. The association of radiation and selective aromatase inhibitors or aromatase inactivators has not been addressed in clinical studies. CONCLUSIONS: Combined application of tamoxifen and radiotherapy improves survival and local control in breast cancer. Available clinical studies do not indicate that the simultaneous application of tamoxifen and radiotherapy is disadvantageous, as was suggested by some of the in vitro studies. The risk of subcutaneous breast and lung fibrosis might be slightly increased if tamoxifen is given simultaneously with radiotherapy. Both treatment modalities should be started early after surgery. There is no sufficient evidence to withhold tamoxifen administration during irradiation of breast cancer. The issue of optimal sequencing of hormonal and radiotherapy should be addressed in randomised clinical trials.

Animals↗

Ovariectomized rats as a model of postmenopausal osteoarthritis: validation and application.

We aimed to assess the effect of ovariectomy on cartilage turnover and degradation, to evaluate whether ovariectomized (OVX) rats could form an experimental model of postmenopausal osteoarthritis. The effect of ovariectomy on cartilage was studied using two cohorts of female Sprague-Dawley rats, aged 5 and 7 months. In a third cohort, the effect of exogenous estrogen and a selective estrogen receptor modulator was analyzed. Knee joints were assessed by histological analysis of the articular cartilage after 9 weeks. Cartilage turnover was measured in urine by an immunoassay specific for collagen type II degradation products (CTX-II), and bone resorption was quantified in serum using an assay for bone collagen type I fragments (CTX-I). Surface erosion in the cartilage of the knee was more severe in OVX rats than in sham-operated animals, particularly in the 7-month-old cohort (P = 0.008). Ovariectomy also significant increased CTX-I and CTX-II. Both the absolute levels of CTX-II and the relative changes from baseline seen at week 4 correlated strongly with the severity of cartilage surface erosion at termination (r = 0.74, P < 0.01). Both estrogen and the selective estrogen receptor modulator inhibited the ovariectomy-induced acceleration of cartilage and bone turnover and significantly suppressed cartilage degradation and erosion seen in vehicle-treated OVX rats. The study indicates that estrogen deficiency accelerates cartilage turnover and increases cartilage surface erosion. OVX rats provide a useful experimental model for the evaluation of the chondroprotective effects of estrogens and estrogen-like substances and the model may be an in vivo representation of osteoarthritis in postmenopausal women.

Aging↗

Effects of raloxifene on endothelium-dependent dilation, lipoproteins, and markers of vascular function in postmenopausal women with coronary artery disease.

OBJECTIVES: We sought to assess the effects of raloxifene, a selective estrogen receptor modulator, on arterial physiology and biology in postmenopausal women with coronary artery disease (CAD). BACKGROUND: Raloxifene improves endothelial function and markers of vascular health in vitro in experimental animals and in healthy postmenopausal women. In women whose arteries are affected by advanced atherosclerosis, however, the vascular effects of estrogen receptor modulation are unknown. METHODS: We conducted a prospective, randomized, double-blinded, placebo-controlled, crossover trial of raloxifene, 60 mg/day for 8 weeks, in 33 consecutively eligible and consenting postmenopausal women age 50 to 75 years with known CAD. Parameters measured at the beginning and end of each treatment period included brachial artery flow-mediated dilation (FMD), the primary end point, as well as nitroglycerin-induced dilation, peripheral artery tonometry, serum lipoprotein levels, and markers of vascular function, including urinary prostaglandin, serum endothelin-1, and fibrinogen levels. RESULTS: Baseline FMD was impaired in these women, as expected (2.84 +/- 0.60%), but there was no significant difference between the effect of raloxifene (0.26 +/- 0.66% increase) and placebo (0.01 +/- 0.63% decrease) on this marker of endothelial function (p = 0.82). No significant raloxifene-related effects were observed on derived aortic pressure, pulse pressure, augmentation index, total cholesterol or low- and high-density lipoprotein subfractions, markers of thrombosis, or vasoconstrictor or vasodilator substances. CONCLUSIONS: In postmenopausal women with treated CAD, selective estrogen receptor modulation with raloxifene does not improve a comprehensive set of parameters examining vascular function and serum lipoprotein levels.

Aged↗

Randomized, double-blind, placebo-controlled study on effects of raloxifene and hormone replacement therapy on plasma no concentrations, endothelin-1 levels, and endothelium-dependent vasodilation in postmenopausal women.

The endothelium is thought to play an important role in the genesis of atherosclerosis, and several lines of evidence suggest that the effect of an intervention on endothelial function might predict its involvement in coronary disease progression and in the rate of cardiovascular events. Estrogen has direct effects on the blood vessel wall, indicating that vascular endothelium may play a key role in the cardiovascular protective effects of hormone replacement therapy (HRT). Raloxifene relaxes coronary arteries in vitro by an estrogen receptor-dependent and NO-dependent mechanism, thus suggesting that this selective estrogen receptor modulator could also have beneficial effects on endothelial function. This study compared the effects of HRT and raloxifene on NO products, endothelin-1 plasma levels, and endothelium-dependent vasodilatation in postmenopausal women. Healthy postmenopausal women (n=90) were enrolled in a double-blind, randomized, placebo-controlled, 6-month trial. Women were randomly assigned to receive continuous HRT (1 mg 17beta-estradiol combined with 0.5 mg norethisterone acetate), raloxifene (60 mg/d), or placebo for 6 months. Flow-mediated endothelium-dependent vasodilation of the brachial artery, plasma NO concentrations, and endothelin levels were measured at baseline and after 6 months of therapy. The mean baseline level of NO breakdown products was 26.5+/-10.7 micromol/L and increased to 36.3+/-11.4 micromol/L after 6 months of treatment with raloxifene. The mean baseline plasma endothelin level was 17.3+/-8.9 pg/mL and decreased to 11.5+/-2.1 pg/mL after 6 months of treatment with the selective estrogen receptor modulator. The mean baseline ratio of NO (breakdown products) to endothelin was also significantly increased at the end of treatment with raloxifene. Postmenopausal women treated with HRT had similar changes in plasma nitrites/nitrates and endothelin levels as well as in the ratio of NO to endothelin. In contrast, these markers of endothelial function did not change in the placebo-treated women. Flow-mediated endothelium-dependent vasodilation of the brachial artery was 8.3+/-2.1% at baseline and increased to 12.3+/-2.1% after 6 months of treatment with raloxifene. HRT also caused a significant and similar increase in flow-mediated endothelium-dependent vasodilation. No change in flow-mediated vasodilation was observed in the participants treated with placebo. We conclude that raloxifene therapy and HRT influence endothelial function and improve flow-mediated endothelium-dependent vasodilation to a comparable extent in healthy postmenopausal women at least after a 6-month treatment period. However, further investigation is warranted to enhance our understanding of the mechanisms of the effect of raloxifene on vascular function and to determine whether its effect on endothelial function may contribute to the reduction in cardiovascular-related morbidity and mortality.

Aged↗

Effects of oral estrogen, raloxifene and arzoxifene on gene expression in serotonin neurons of macaques.

The serotonin neural system contributes to cognition and affect, both of which exhibit pathologies with gender bias. We previously showed that estrogen (E) treatment of female macaques via Silastic implant alters gene expression for tryptophan hydroxylase (TPH), the serotonin reuptake transporter (SERT) and the 5HT1A autoreceptor. In addition, we have found that serotonin neurons of macaques express ER beta (ER beta). Together these studies suggest that the serotonin neural system could transduce the action of estrogen via ER beta on aspects of mood and cognition. However, estrogen replacement therapy can increase the risk for breast and uterine cancer. Therefore, we questioned whether the selective estrogen receptor modulators, raloxifene and arzoxifene, act in a manner similar to E on gene expression in serotonin neurons of a nonhuman primate model. Female rhesus macaques were ovariectomized and orally dosed with vehicle, estradiol 17beta, raloxifene or arzoxifene once per day by sipper bottles for 30 days. The animals were then euthanized and the midbrains were prepared for in situ hybridization for TPH, SERT and 5HT1A receptor mRNAs followed by densitometric analysis. There was a significant increase in TPH total signal (positive pixelsxOD) with E, raloxifene and arzoxifene, respectively. There was a significant decrease in SERT mRNA optical density with all treatments. 5HT1A autoreceptor mRNA did not change with any treatment. If these changes in gene expression are reflected by similar changes in the functional proteins, then raloxifene or arzoxifene could increase serotonin neurotransmission with little or no negative action in peripheral tissues. In conclusion, the selective estrogen receptor modulators, raloxifene and arzoxifene, act in a manner similar to natural E on TPH and SERT mRNA expression in serotonin neurons. This suggests that raloxifene and arzoxifene are agonists at ER beta in the context of the serotonin neuron. However, the responses to E were more variable and less robust with the oral dosing paradigm compared to a chronic implant paradigm.

Animals↗