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[An alternative to postmenopausal Hormone Replacement Therapy? Selective Estrogens Receptors Modulators (SERMs)].

Hormone Replacement Therapy (HRT) represents the first and probably sole therapeutically approach for prevention and treatment of medical postmenopausal disease. Nevertheless, the adverse effects and the risks HRT associated, suggested, to clinical and pharmaceutical research new pharmacological treatment options. Actually a group of compounds, SERMs (Selective Estrogen Receptor Modulators), allows a large interest. These pharmacological agents, due to their estrogen agonist/antagonist properties, are able to bind Estrogen Receptors in female target tissues (bone, brain, heart, etc) with different actions; so, by these properties, SERMs represent actually a possible alternative to HRT.

Adult↗

Effects of raloxifene, one of the selective estrogen receptor modulators, on pituitary-ovary axis and prolactin in postmenopausal women.

To investigate the clinical effects of raloxifene, one of the selective estrogen receptor modulators (SERMs), on the pituitary-ovary axis and prolactin, a prospective, randomized, double-blinded study on 59 healthy postmenopausal women was performed. Forty-eight women received raloxifene 60 mg daily. The other 11 received combined conjugated equine estrogen 0.625 mg and medroxyprogesterone acetate 5 mg daily (CCEP) as active controls. Serum follicle stimulating hormone (FSH), luteinizing hormone (LH), estradiol (E2), and pro-lactin were measured at baseline and 1 yr after treatment. The mean levels of FSH and LH were significantly decreased in the raloxifene group (FSH: -10.7%; p < 0.01, LH: -10.3%; p < 0.05) and CCEP group (FSH: -53.7%, p < 0.001; LH: -46.8%, p < 0.001). The prolactin level decreased in the raloxifene group but not in the CCEP group (-17.0%; p < 0.001 vs +13.3%, p = no significance; NS). Consequently, long-term administration of raloxifene up to 1 yr decreases serum prolactin level significantly and may be a therapeutic alternative for postmenopausal osteoporotic women with hyperprolactinemia.

Administration, Oral↗

Embryo/fetal toxicity assessment of lasofoxifene, a selective estrogen receptor modulator (SERM), in rats and rabbits.

BACKGROUND: The purpose of this study was to evaluate the effects of lasofoxifene, a selective estrogen receptor modulator (SERM), on rat and rabbit fetal development. METHODS: Lasofoxifene was administered orally to rats (1, 10, 100 mg/kg) between gestation days (GD) 6-17, and in rabbits (0.1, 1, 3 mg/kg) between GD 6-18. Maternal body weight and food consumption were monitored throughout pregnancy. Fetuses were delivered by Cesarean section on GD 21 in rats, and GD 28 in rabbits, to evaluate fetal viability, weight, and morphology. Drug concentrations in maternal plasma were measured in a separate cohort of animals at several time points commencing on GD 17 (rats) and 18 (rabbits). On GD 18 (rat) and GD 19 (rabbit) drug concentrations were measured in maternal plasma and in fetal tissue 2 hr post dosing to determine the fetal to maternal drug ratio. RESULTS: In rats, there were dose-related declines in maternal weight gain and food consumption. Post implantation loss was significantly increased at dosages of 10 and 100 mg/kg, and the number of viable fetuses was decreased at 100 mg/kg. The placental weights increased, whereas fetal weights decreased in a dose-dependent manner. Lasofoxifene-related teratologic findings were noted at 10 and 100 mg/kg and included imperforate anus with hypoplastic tails, dilatation of the ureters and renal pelvis, misaligned sternebrae, hypoflexion of hindpaw, wavy ribs, and absent ossification of sternebrae. In rabbits, neither maternal weight gain nor food consumption were affected during treatment. Between GD 26-28, there was a dose-dependent increased incidence of red discharge beneath the cages. At 1 and 3 mg/kg, resorptions and post-implantation loss increased. There were no significant external or visceral effects, but 3 mg/kg there was an increased incidence of supernumerary ribs. Although the maternal plasma Cmax and AUC(0-24) were dose-dependent, the exposures in the rat were many orders of magnitude greater than in the rabbit even for the same 1 mg/kg dose. The single time point fetal/maternal drug ratio was higher in the rat (1.3-0.78) than in the rabbit (0.21-0.16). CONCLUSION: In general, both maternal and fetal effects of lasofoxifene were similar to those reported with other SERMs. Although the incidence or severity of these effects was, in some instances, greater in the rat than in the rabbit, the doses and the resultant maternal and fetal exposures were many orders of magnitude higher in the rat, suggesting the rabbit to be more sensitive to the toxicological effects of lasofoxifene.

Animals↗

m-Carborane bisphenol structure as a pharmacophore for selective estrogen receptor modulators.

A series of m-carborane derivatives was prepared based upon the structures of antiestrogenic drugs and their activities were evaluated by estrogen receptor alpha (ERalpha) binding assay and transactivation assay using human breast cancer cell line, MCF-7 cells. The m-carborane bisphenol 5 exhibited about a thousand times more potent ER agonistic activity than the o-carborane bisphenol 11. The m-carborane bisphenol structure appears to be a favorable hydrophobic pharmacophore for the development of novel selective estrogen receptor modulators (SERMs).

Benzhydryl Compounds↗

Evidence for selective estrogen receptor modulator activity in a black cohosh (Cimicifuga racemosa) extract: comparison with estradiol-17beta.

OBJECTIVE: Some phytoestrogens are believed to have selective estrogen receptor modulator (SERM) activity with no action in the uterus but beneficial effects in the hypothalamo/pituitary unit and in the bone and are presently the focus of clinical interest. In the present experiments, the effects of the clinically used Cimicifuga racemosa (CR) extract BNO 1055 in the uterus, in the bone and on serum luteinizing hormone (LH) were compared with the effects of estradiol-17beta (E(2)) under acute and chronic conditions in ovariectomized rats. METHODS: Ovariectomized rats were treated either acutely (6 h) or chronically (3 Months) with E(2) or the CR extract. Gene expression of some estrogen-regulated genes in the metaphysis of the tibia and the uterus was determined. Furthermore, bone mineral density was measured by quantitative computer tomography. RESULTS: When given acutely, both E(2) and the CR extract inhibited LH secretion and slightly stimulated gene expression of IGF-I, collagen-1alpha1, osteoprotegerin and osteocalcin (all osteoblast products), and of tartrate-resistant acid phosphatase (TRAP, an osteoclast product) in the metaphysis of the femur. While E(2) stimulated uterine weight and expression of progesterone receptor (PR), the complement protein (C3) and IGF-I genes, and inhibited gene expression of the estrogen receptor beta (ERbeta) in the uterus, no such effect was observed under acute CR treatment. After chronic application with pelleted food over 3 Months E(2) had profound effects in the uterus on weight and gene expression (ERbeta, PR, C3 and IGF-I) which were not seen in the CR-treated animals. Within 3 Months after ovariectomy, control rats had lost more than 50% of the metaphyseal bone mass of the tibia, an effect prevented by E(2) and partially by CR supplementation. CONCLUSIONS: These data confirm the concept that the CR extract BNO 1055 contains as yet unidentified substances with SERM properties which act in the hypothalamo/pituitary unit and in the bone but not in the uterus.

Acid Phosphatase↗

Sex hormones and the selective estrogen receptor modulator tamoxifen modulate weekly body weights and food intakes in adolescent and adult rats.

This study documented the effect of changes in male and female sex hormones and the selective estrogen receptor modulator (SERM) tamoxifen on weight gain and food consumption of rats from puberty to adulthood, and assessed whether age at onset of treatment affected outcome. In Study 1, male and female WKY rats were either neutered or sham-operated before puberty, and a subgroup of neutered females underwent estrogen replacement (ERT) at the age of puberty. In Study 2, subgroups of neutered females received either ERT or tamoxifen beginning well into the postpuberty period. Weekly body weight and food consumption were assessed, and food consumption was normalized to metabolic weight (body weight(0.67)). Neutering reduced the rate of weight gain in males (P < 0.05), but significantly increased it in females (P < 0.0001). ERT immediately reduced weight gain and prevented any further increase, resulting in weights below that of sham-operated females (P < 0.05). Tamoxifen prevented further weight gain and returned profiles to that of sham-operated females. Food consumption, normalized to metabolic weight, was similar in females and males, and both sexes showed a decrease through maturation to adulthood. Neutering decreased food consumption below that of sham-operated animals in both males and females (P < 0.05), and ERT returned it to sham levels. Despite the fact that tamoxifen had an effect on body weight similar to that of ERT, females receiving tamoxifen treatment consumed less food than both sham-operated and ERT females (P < 0.05). Weight gain is modulated by sex hormones in male and female rats, with both estrogen and tamoxifen exerting immediate effects in females, irrespective of the age at which treatment is initiated. Differences in food consumption do not appear to account for the effects of hormones and tamoxifen on body weight, suggesting that they exert a direct effect on overall body metabolism.

Aging↗

The selective estrogen receptor modulators, tamoxifen and raloxifene, impair dendritic cell differentiation and activation.

Most immune cells, including myeloid progenitors and terminally differentiated dendritic cells (DC), express estrogen receptors (ER) making these cells sensitive to estrogens. Our laboratory recently demonstrated that 17-beta-estradiol (E2) promotes the GM-CSF-mediated development of CD11c+ CD11b(int) DC from murine bone marrow precursors. We tested whether the therapeutic selective estrogen receptor modulators (SERM), raloxifene and tamoxifen, can perturb DC development and activation. SERM, used in treatment of breast cancer and osteoporosis, bind to ER and mediate tissue-specific agonistic or antagonistic effects. Raloxifene and tamoxifen inhibited the differentiation of estrogen-dependent DC from bone marrow precursors ex vivo in competition experiments with physiological levels of E2. DC differentiated in the presence of SERM were assessed for their capacity to internalize fluoresceinated Ags as well as respond to inflammatory stimuli by increasing surface expression of molecules important for APC function. Although SERM-exposed DC exhibited increased ability to internalize Ags, they were hyporesponsive to bacterial LPS: relative to control DC, they less efficiently up-regulated the expression of MHC class II, CD86, and to a lesser extent, CD80 and CD40. This phenotype indicates that these SERM act to maintain DC in an immature state by inhibiting DC responsiveness to inflammatory stimuli. Thus, raloxifene and tamoxifen impair E2-promoted DC differentiation and reduce the immunostimulatory capacity of DC. These observations suggest that SERM may depress immunity when given to healthy individuals for the prevention of osteoporosis and breast cancer and may interfere with immunotherapeutic strategies to improve antitumor immunity in breast cancer patients.

Adjuvants, Immunologic↗

Selective estrogen receptor modulators (SERMs) in clinical practice.

The objective of this literature review is to familiarize the reader with the clinical data on selective estrogen receptor modulators (SERMs) and antiestrogens currently in use in the US, excluding data on breast effects. Four compounds in the SERM and antiestrogen families are presently in clinical use in the US: clomiphene (CC), tamoxifen (TAM), toremifene (TOR), and raloxifene (RLX). The clinical database on these compounds is among the largest available. Each compound demonstrates a specific profile for its target tissue effects, and this may differ between premenopausal and postmenopausal women. CC is the most widely used agent for ovulation induction. TAM is indicated in the management of breast cancer and for prevention in women at high risk. TAM may have additional effects on the cardiovascular and skeletal systems. TOR also is used for its effects on breast tissue and may have positive cardiovascular effects. RLX is approved in the management of osteoporosis with data supporting favorable effects on the cardiovascular system and breast tissue. TAM and TOR appear to have stimulatory effects on the uterus and endometrium, whereas RLX is neutral. Few adverse events have been attributed to these agents, with hot flashes being the most common one. There appears to be an increased risk of thromboembolic events with continuous use of TAM, TOR, and RLX. SERMs and antiestrogens continue to be studied extensively. Their evolving profiles support key roles for these agents in modern day medicine, particularly in the management of postmenopausal women's health.

Breast Neoplasms↗

Selective estrogen receptor modulators: tissue actions and potential for CNS protection.

Significant physiologic changes occur during menopause. Evidence exists to suggest that estrogen may be neuroprotective under specific conditions. However, there are limitations in the neuroprotection afforded by standard hormone therapy. Accordingly, alternative agents with selected estrogenic effects may hold even greater promise rather than conventional hormone replacement therapy for the prevention and treatment of CNS injury. Recently, a variety of selective estrogen receptor modulators (SERMs) have been developed to retain the favorable and minimize the adverse side effects of estrogens. This review focuses on the CNS and known neuroprotective effects of two specific SERMs, raloxifene and arzoxifene. Recent studies hint that raloxifene and arzoxifene are neuroprotective and may preserve some elements of cognitive function. However, the mechanism of action is not well described and it is unclear if the beneficial effects of SERMs rely on activation of estrogen receptors.

Animals↗

Impact of the selective estrogen receptor modulator, tamoxifen, on neuronal outgrowth and survival following toxic insults associated with aging and Alzheimer's disease.

We investigated the estrogen agonist/antagonist properties of the selective estrogen receptor modulators (SERMs), tamoxifen (TMX) and 4-hydroxy-tamoxifen (OHT), using an in vitro neuron model system to determine the impact of the neuroprotective and neurotrophic properties of these SERMs. Low concentrations of TMX or OHT were without effect on a marker of neuronal viability, basal release of lactate dehydrogenase (LDH), whereas high concentrations of both SERMs (2500 ng/ml) induced a significant increase in LDH, indicating the potential toxicity of both SERMs at high concentrations. Subsequent experiments revealed that subtoxic concentrations of both TMX and OHT induced significant neuroprotection against beta-amyloid(25-35)-induced toxicity; 15-20% and 10-15% (P < 0.05), respectively and also against glutamate-induced toxicity; 25-30% and 20-40% (P < 0.05 and P < 0.01), respectively. Additional in vitro experiments included analysis of neuron survival to determine whether the SERM, OHT, acted competitively or synergistically with the endogenous estrogen, 17 beta-estradiol (E2). These revealed that neuron survival following exposure to the neurotoxins beta-amyloid and excitotoxic glutamate was significantly increased in cultures treated with OHT (50 ng/ml) (10%, P < 0.01) and that the magnitude of survival was equivalent to E2 (10 ng/ml). The combined presence of OHT and E2 significantly protected against both beta-amyloid(25-35) and excitotoxic glutamate-induced neuron death (10%, P < 0.01) but was not significantly different from either OHT or E2 alone. To assess neurotrophic effects of these same SERMs, cultured neurons from brain regions involved in memory function and Alzheimer's disease were evaluated by morphological analysis of individual neurons. Results of these analyses demonstrated that TMX treatment did not significantly increase the process outgrowth or morphological complexity of cortical, hippocampal, or basal forebrain neurons. Similar analyses showed that OHT also failed to significantly increase the neuronal outgrowth of either cortical or hippocampal neurons. Results of these studies predict that TMX and OHT could exert a neuroprotective function but would not promote estrogen-dependent memory function.

Aging↗

LY353381.HCl, a selective estrogen receptor modulator, and experimental stroke.

BACKGROUND AND PURPOSE: The impact of postmenopausal estrogen replacement therapy on stroke prevention and stroke severity remains controversial. Previously we have shown that cerebral tissue infarction volume sustained after middle cerebral artery (MCA) occlusion is smaller in female than in male animals. This protection is lost after ovariectomy but is restored by 17ss-estradiol replacement. However, the therapeutic range for estradiol is suboptimal, since only doses resulting in a narrow range of plasma levels are protective in brain. The present study tested the hypothesis that a benzothiophene analogue and selective estrogen receptor modulator, LY353381.HCl (LY), reduces tissue infarction after MCA occlusion in estrogen-deficient, ovariectomized female rats. METHODS: Ovariectomized female Wistar rats received LY 10 mg/kg (n=16) or an equivalent volume of vehicle (n=14) by gavage for 5 to 8 days. Subsequently, each animal was anesthetized with halothane (1.2%) and treated with 2 hours of MCA occlusion by the intraluminal filament technique and 22 hours of recovery. Infarction volumes in the cerebral cortex and caudoputamen were determined by 2, 3,5-triphenyltetrazolium chloride staining and digital image analysis. End-ischemic regional cerebral blood flow (CBF) was measured in separate animal cohorts by quantitative [(14)C]iodoantipyrine autoradiography. RESULTS: Caudoputamen infarction was reduced by LY treatment (49+/-6% versus 64+/-4% of ipsilateral caudoputamen in LY and vehicle groups, respectively; P:<0.05). Cerebral cortical infarction was not different in the LY compared with vehicle group (7+/-3% versus 13+/-4% of ipsilateral cerebral cortex, respectively). Intra-ischemic blood pressure, arterial blood gases, and temporalis muscle temperature were controlled and equivalent between treatment groups. Averaged laser-Doppler flow during MCA occlusion was 36+/-3% of baseline in the LY group versus 29%+/-2% in the vehicle group. However, end-ischemic CBF or blood flow distribution within the MCA territory was not altered by LY treatment. Cortical or caudoputamen tissue volumes with end-ischemic CBF <20 mL/100 g per minute were similar in both groups. CONCLUSIONS: We conclude that LY confers neuroprotection from focal cerebral ischemia in caudoputamen in ovariectomized female rats. The mechanism of protection is not linked to preservation of ischemic cerebral blood flow, as determined by end-occlusion quantitative autoradiography.

Animals↗

Protective effect of the selective estrogen receptor modulator LY117018 on rat vaginal Candida albicans colonization.

Although we know that estrogen promotes vaginal colonization with Candida albicans in oophorectomized rats, the availability of selective estrogen receptor modulators (SERMs) raises the question of whether these compounds may influence the susceptibility of vaginal epithelium to Candida colonization. We inoculated rats with viable C. albicans 2 days after treatment with oil vehicle (controls), estradiol cypionate or the proprietary SERM, LY117018. LY117018 prevented colonization by a clinical isolate of C. albicans. In contrast, rats treated with estradiol cypionate remained colonized for up to 10 days after initial inoculation with viable yeast. In vitro tests demonstrated that both estradiol-17beta and LY117018 promoted growth at a 1 x 10(-9) M concentration, whereas both compounds suppressed yeast growth at a higher (1 x 10(-6) M) concentration. The effect of LY117018 on vaginal colonization could not be predicted on the basis of in vitro investigation. We conclude that the protective effect of LY117018 resulted from an indirect effect on the host and not from its effect directly on the microorganism.

Animals↗

Selective estrogen receptor modulators protect hippocampal neurons from kainic acid excitotoxicity: differences with the effect of estradiol.

Neuroprotective effects of estradiol are well characterized in animal experimental models. However, in humans, the outcome of estrogen treatment for cognitive function and neurological diseases is very controversial. Selective estrogen receptor modulators (SERMs) may represent an alternative to estrogen for the treatment or the prevention of neurodegenerative disorders. SERMs interact with the estrogen receptors and have tissue-specific effects distinct from those of estradiol, acting as estrogen agonists in some tissues and as antagonists in others. In this study we have assessed the effect of tamoxifen, raloxifene, lasofoxifene (CP-336,156), bazedoxifene (TSE-424), and 17beta-estradiol on the hippocampus of adult ovariectomized rats, after the administration of the excitotoxin kainic acid. Administration of kainic acid induced the expression of vimentin in reactive astroglia and a significant neuronal loss in the hilus. SERMs did not affect vimentin immunoreactivity in the hilus, while 17beta-estradiol significantly reduced the surface density of vimentin immunoreactive profiles. Estradiol, tamoxifen (0.4-2 mg/kg), raloxifene (0.4-2 mg/kg), and bazedoxifene (2 mg/kg) prevented neuronal loss in the hilus after the administration of kainic acid. Lasofoxifene (0.4-2 mg/kg) was not neuroprotective. These findings indicate that SERMs present different dose-dependent neuroprotective effects. Furthermore, the mechanisms of neuroprotection by SERMs and estradiol are not identical, because SERMs do not significantly affect reactive gliosis while neuroprotection by estradiol is associated with a strong down-regulation of reactive astroglia.

Animals↗

Greek plant extracts exhibit selective estrogen receptor modulator (SERM)-like properties.

To prevent bone loss that occurs with increasing age, nutritional and pharmacological factors are needed. Traditional therapeutic agents (selective estrogen receptor modulators or SERMs, biphosphonates, calcitonin) may have serious side effects or contraindications. In an attempt to find food components potentially acting as SERMs, we submitted four plant aqueous extracts derived from Greek flora (Sideritis euboea, Sideritis clandestina, Marticaria chamomilla, and Pimpinella anisum) in a series of in vitro biological assays reflective of SERM profile. We examined their ability (a) to stimulate the differentiation and mineralization of osteoblastic cell culture by histochemical staining for alkaline phosphatase and Alizarin Red-S staining, (b) to induce, like antiestrogens, the insulin growth factor binding protein 3 (IGFBP3) in MCF-7 breast cancer cells, and (c) to proliferate cervical adenocarcinoma (HeLa) cells by use of MTT assay. Our data reveal that all the plant extracts studied at a concentration range 10-100 microg/mL stimulate osteoblastic cell differentiation and exhibit antiestrogenic effect on breast cancer cells without proliferative effects on cervical adenocarcinoma cells. The presence of estradiol inhibited the antiestrogenic effect induced by the extracts on MCF-7 cells, suggesting an estrogen receptor-related mechanism. In conclusion, the aqueous extracts derived from Sideritis euboea, Sideritis clandestina, Marticaria chamomilla, and Pimpinella anisum may form the basis to design "functional foods" for the prevention of osteoporosis.

Breast Neoplasms↗

Crossover trial for lipid abnormality in postmenopausal breast cancer patients during selective estrogen receptor modulators (SERMs) administrations.

The objective of this study was to evaluate the different profiles of serum lipids resulting from the administration of selective estrogen receptor modulators (SERMs). Postmenopausal primary breast cancer patients (n = 197) with node-negative, hormone receptor-positive who were treated at our department or in other related medical institutions from April 1997 through March 2001 were given adjuvant therapy. The adjuvant therapy included 1 year's administration of tamoxifen (TAM) 20 mg or toremifene (TOR) 40 mg. The profiles of serum lipids such as total cholesterol (TC), high-density lipoprotein cholesterol (HDL) and triglyceride (TG) were observed. After 1 year administration TC had significantly decreased (p < 0.001) both in the TAM group and the TOR group, but no significant difference was found between these groups (p = 0.249). HDL had significantly decreased in the TAM group (p < 0.001), while it had significantly increased in the TOR group (p < 0.001), and a significant difference was found between the groups (p < 0.001). TG had significantly increased in the TAM group (p < 0.001) but significantly decreased in the TOR group (p < 0.001). The medication was switched in those who still had abnormal lipid metabolism and given to them for another year. After 1 year from the crossover TC and HDL had increased to the levels of before administration (p < 0.001) and TG had decreased in those (n = 57) whose medication was switched from TAM to TOR. While TC had decreased and TG had increased in those (n = 23) whose medication was switched from TOR to TAM (p < 0.001). The above findings have suggested that TOR provides better profiles of lipid metabolism than TAM.

Administration, Oral↗

Structure-activity relationships of selective estrogen receptor modulators: modifications to the 2-arylbenzothiophene core of raloxifene.

The 2-arylbenzothiophene raloxifene, 1, is a selective estrogen receptor modulator which is currently under clinical evaluation for the prevention and treatment of postmenopausal osteoporosis. A series of raloxifene analogs which contain modifications to the 2-arylbenzothiophene core have been prepared and evaluated for the ability to bind to the estrogen receptor and inhibit MCF-7 breast cancer cell proliferation in vitro. Their ability to function as tissue-selective estrogen agonists in vivo has been assayed in a short-term, ovariectomized (OVX) rat model with end points of serum cholesterol lowering, uterine weight gain, and uterine eosinophil peroxidase activity. These studies have demonstrated that (1) the 6-hydroxy and, to a lesser extent, the 4'-hydroxy substituents of raloxifene are important for receptor binding and in vitro activity, (2) small, highly electronegative 4'-substituents such as hydroxy, fluoro, and chloro are preferred both in vitro and in vivo, (3) increased steric bulk at the 4'-position leads to increased uterine stimulation in vivo, and (4) additional substitution of the 2-aryl moiety is tolerated while additional substitution at the 4-, 5-, or 7-position of the benzothiophene results in reduced biological activity. In addition, compounds in which the 2-aryl group is replaced by alkyl, cycloalkyl, and naphthyl substituents maintain a profile of in vitro and in vivo biological activity qualitatively similar to that of raloxifene. Several novel structural variants including 2-cyclohexyl, 2-naphthyl, and 6-carbomethoxy analogs also demonstrated efficacy in preventing bone loss in a chronic OVX rat model of postmenopausal osteopenia, at doses of 0.1-10 mg/kg.

Adenocarcinoma↗

The selective estrogen receptor modulator, raloxifene: reproductive assessments following preimplantation exposure in mated female rats.

Raloxifene is a nonsteroidal, selective estrogen receptor modulator being developed for postmenopausal osteoporosis. As part of an integrated reproductive toxicity assessment, two studies were conducted in which raloxifene was administered orally to CD rats during Gestation Days (GD) 0 through 5. In each study, animals received daily raloxifene doses of 0, 0.1, 1, or 10 mg/kg. In Study 1, GD 20 evaluations of maternal reproductive parameters identified dose-related increases in pre- and postimplantation loss, reductions in the numbers of corpora lutea and live conceptuses, and reduced fetal weight. The low fetal weights were consistent with an extent of morphologic development that corresponded to developmental ages up to 8 d younger than GD 20. Study 2 characterized the potential impact of this disrupted and apparently delayed implantation on gestation length, parturition, and progeny viability. Dams were allowed to deliver and rear their offspring through Postpartum Day 21. Gestation lengths were extended up to 1 week, and litter sizes were reduced in a dose-dependent manner. Nevertheless, parturition occurred normally and pup morphology, survival, and physical and behavioral development were unaffected.

Animals↗