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Hormone replacement therapy and breast cancer: revisiting the issues.

OBJECTIVE: To assess current ideas about the benefits and risks of estrogen and hormone replacement therapy (ERT/HRT) in postmenopausal women. DATA SOURCES: MEDLINE searches, supplemented by various texts, of the literature on HRT, ERT, and selective estrogen receptor modulators (SERMs): tamoxifen, toremifene, and raloxifene. DATA SYNTHESIS: HRT is primarily used for improving quality of life in women suffering from vasomotor symptoms associated with menopause. HRT is beneficial in postmenopausal women for preventing cardiovascular disease, osteoporosis, and Alzheimer's disease. Review of meta-analyses of clinical trials showed that ERT/HRT ever-users (patients who have ever used ERT/HRT) did not have an increased risk of breast cancer, but current users did have an increased risk, with some studies reporting increasing risk with duration of ERT. No relationship was found between dose or the addition of progestin to ERT and increased breast cancer risk. Overall breast cancer mortality rates associated with HRT were decreased in current users. In general, HRT does not increase the risk of breast cancer in women with a family history of the disease, compared with those without a family history. New HRT strategies that could potentially prevent breast cancer are now being developed. The SERMs tamoxifen and toremifene appear to have positive clinical effects on bone and serum lipids; they are currently being investigated for use as breast cancer chemopreventive agents. Raloxifene, a new SERM used for the prevention of osteoporosis, is an alternative for women who cannot tolerate HRT. Unfortunately, these SERMS have anti-estrogenic effects and thus cause vasomotor adverse effects such as hot flashes and vaginal dryness. In addition, SERMs do not protect against heart disease or prevent osteoporosis as well as does HRT. CONCLUSION: Presently, SERMs will not become first-line HRT, as the positive effects of ERT/HRT may outweigh any potentially increased risk of breast cancer. The development of new agents with pharmacodynamic profiles similar to that of ERT/HRT but lacking its adverse effects would be greatly beneficial for postmenopausal women.

Alzheimer Disease↗

Therapy Insight: osteoporosis during hormone therapy for prostate cancer.

The intended therapeutic effect of gonadotropin-releasing-hormone (GnRH) agonists is hypogonadism, which is a leading cause of osteoporosis in men. Observations are consistent with this effect: GnRH agonists decrease bone mineral density and increase fracture risk in men with prostate cancer. Estrogens play a central role in homeostasis of the normal male skeleton and evidence suggests that estrogen deficiency is primarily responsible for the adverse skeletal effects of GnRH agonists. The mechanism of treatment-related bone loss involves acceleration of physiologic bone turnover. In small, randomized, controlled trials, bisphosphonates (pamidronate, zoledronic acid) and selective estrogen-receptor modulators (raloxifene, toremifene) increased bone mineral density in GnRH-agonist-treated men. Two ongoing large, randomized, placebo-controlled studies will prospectively define fracture outcomes in men with prostate cancer and assess the efficacy of novel pharmacologic interventions (AMG 162, toremifene) in GnRH-agonist-treated men.

Bone Density↗

Radiation recall--another call with tamoxifen.

Tamoxifen, a nonsteroidal antioestrogen, has been used as an adjuvant therapy in patients with oestrogen-receptor positive breast cancer for more than 10 years. Few cutaneous adverse side-effects of the skin are found with this therapy. In this study we present 20 cases of adverse skin effects in relation to tamoxifen during 1979-1997 reported to the Swedish Adverse Drug Reaction Register and 1160 skin side-effects reported to he World Health Organisation's International Collaborative Programme on Drug Monitoring. One new case report of radiation recall in conjunction to tamoxifen, with no sign of reactivation despite 18 months treatment with the tamoxifen analogue toremifene is also discussed in detail. This case illustrates that toremifene can be used as a second-line therapy in patients who have received radiation recall, on tamoxifen.

Antineoplastic Agents, Hormonal↗

Genotoxic mechanism of tamoxifen in developing endometrial cancer.

Increased risk of developing endometrial cancers has been observed in women treated with tamoxifen (TAM), a widely used drug for breast cancer therapy and chemoprevention. The carcinogenic effect may be due to genotoxic DNA damage induced by TAM. In fact, TAM-DNA adducts were detected in the endometrium of women treated with this drug. TAM is alpha-hydroxylated by cytochrome P450 3A4 followed by O-sulfonation by hydroxysteroid sulfotransferase, and reacts with guanine residues in DNA, resulting in the formation of alpha-(N2-deoxyguanosinyl)tamoxifen adducts. During this metabolic process, short-lived carbocations are produced at the ethyl moiety of TAM as reactive intermediates. TAM-DNA adducts promote primarily G -->T transversions in mammalian cells. The same mutations have been frequently detected at codon 12 of the K-ras gene in the endometrial tissue of women treated with this drug. TAM-DNA adducts, if not readily repaired, may act as initiators, leading to development of endometrial cancers. The reactivity of TAM metabolites with DNA is inhibited in toremifene, where the hydrogen atom has been replaced by a chlorine atom at the ethyl moiety. Therefore, toremifene may be a safer alternative to TAM. This article describes an overview of the mechanism of TAM-DNA adduct formation, mutagenic events of this adduct, and detection of TAM-DNA adducts in the endometrium of women treated with TAM.

Adult↗

Selective estrogen receptor modulators.

Because of recent concerns about the long-term risks of estrogen replacement therapy in postmenopausal women, there is growing interest in a group of compounds known as selective estrogen receptor modulators (SERMs). The SERMs bind to estrogen receptors and have tissue-specific effects that allow them to function as estrogen agonists in some tissues and estrogen antagonists in other tissues. There are four SERMs currently marketed in the United States. These include the triphenylethylenes--clomiphene citrate (Clomid), tamoxifen, and toremifene--and the benzothiophene, raloxifene. Clomid is used primarily in the treatment of infertility. Tamoxifen is indicated for the treatment and prevention of breast cancer. It has an estrogen antagonist effect on breast tissue, but an estrogen-like effect on lipids, bone, and the endometrium. Toremifene has an antagonist/agonist profile similar to that of tamoxifen. Raloxifene is approved for the prevention of osteoporosis in postmenopausal women. It is thought to be an estrogen antagonist on the uterus and breast tissues and an estrogen agonist with respect to bone and serum lipids.

Bone and Bones↗

Treatment-related osteoporosis in men with prostate cancer.

The intended therapeutic effect of gonadotropin-releasing hormone (GnRH) agonists is hypogonadism, a major cause of acquired osteoporosis in men. Consistent with this observation, GnRH agonists increase bone turnover and decrease bone mineral density, a surrogate for fracture risk. Large claims-based analyses and other retrospective studies provide compelling evidence that GnRH agonists increase risk of clinical fractures. Estrogens play a central role in homeostasis of the normal male skeleton, and estrogen deficiency rather than testosterone deficiency seems to be primarily responsible for the adverse skeletal effects of GnRH agonists. In randomized controlled trials, bisphosphonates (pamidronate and zoledronic acid) and selective estrogen receptor modulators (raloxifene and toremifene) increased bone mineral density in GnRH agonist-treated men. Two ongoing large randomized placebo-controlled studies will prospectively define fracture outcomes in men with prostate cancer and assess the efficacy of novel pharmacologic interventions (AMG162, toremifene) during GnRH agonist treatment.

Antineoplastic Agents↗

Regulation of progesterone receptor messenger ribonucleic acid in the rat medial preoptic nucleus by estrogenic and antiestrogenic compounds: an in situ hybridization study.

Progesterone receptor (PR) messenger RNA (mRNA) is concentrated in neurons of the preoptic area and other regions of the rat hypothalamus where it is colocalized with the estrogen receptor and regulated by changes in the steroid hormonal milieu. To date, little is known about the regulation of PR mRNA by estrogens and whether antiestrogenic compounds are capable of modulating its expression. The present studies used in situ hybridization to ascertain the time course of PR mRNA regulation in the medial preoptic nucleus by 17beta-estradiol, determine the effective dose required to elicit a response, and compare the efficacy of 17beta-estradiol with a variety of estrogenic or antiestrogenic compounds. The first series of studies revealed that the treatment of ovariectomized rats with 17beta-estradiol resulted in an increase in PR expression within 2 h, after which it remained elevated until 10 h postinjection and then returned to baseline levels. When ovariectomized rats were injected with 25-1000 ng/kg of 17beta-estradiol and euthanized 6 h later, a dose-dependent increase in the level of PR mRNA was observed, with a maximal response at 1000 ng/kg and an EC50 of 93.5 ng/kg. Subsequent studies evaluated the efficacy of a variety of estrogenic and antiestrogenic compounds in the rat preoptic nucleus. 17Beta-estradiol, diethylstilbestrol, and 17alpha-estradiol all significantly increased the level of PR mRNA, although the degree of induction varied with each compound. The injection of tamoxifen, raloxifene, toremifene, droloxifene, clomiphene, GW 5638, or ICI 182,780 had no significant estrogenic effect on PR gene expression at the dose evaluated. In contrast, when tamoxifen or raloxifene, but not ICI 182,780, was administered in the antagonist mode, a significant dose-related decrease in the estradiol-induced level of PR mRNA was seen in the preoptic area. The results of these studies clearly demonstrate that PR mRNA expression in the rat preoptic area is rapidly stimulated by a small dose of 17beta-estradiol. Moreover, the present report has also shown that the estrogenic nature of compounds such as tamoxifen, raloxifene, toremifene, droloxifene, clomiphene, and GW 5638 cannot be predicted by their activity in peripheral tissues. Together, the results of these studies provide important information about the central activity of estrogens and provide evidence for their tissue-specifc actions in the rat.

Animals↗

A review of adjuvant hormonal therapy in breast cancer.

Breast cancer is the most common carcinoma diagnosed in women today excluding non-melanoma skin cancers. It has been well documented that estrogen plays a critical role in its development and is a major target for treatment. For many years, tamoxifen has been the gold standard for adjuvant hormonal therapy in breast cancer patients. With newer products targeting different mechanisms to suppress estrogen production, patients now have many decisions regarding their care. Agents such as luteinizing hormone releasing hormone (LHRH) agonists can suppress ovarian function in premenopausal patients and have been shown to be as effective and even better than chemotherapy (CMF--cyclophosphamide, methotrexate, fluorouracil-containing regimens) in certain patient populations. Tamoxifen continues to be an option as well as toremifene, a similar selective estrogen receptor modulator. With the advent of newer third generation aromatase inhibitors (anastrozole, letrozole and exemestane) toxicities have been documented to be less and in some cases they are more efficacious than the standard, tamoxifen. This article reviews the current data regarding ovarian suppression, ovarian suppression plus tamoxifen, tamoxifen, toremifene, anastrozole, letrozole, and exemestane in the treatment of adjuvant hormonal-sensitive breast cancer.

Antineoplastic Agents, Hormonal↗

Endocrine manipulation in advanced breast cancer: recent advances with SERM therapies.

Tamoxifen is one of the most effective treatments for breast cancer through its ability to antagonize estrogen-dependent growth by binding estrogen receptors (ERs) and inhibiting breast epithelial cell proliferation. However, tamoxifen has estrogenic agonist effects in other tissues such as bone and endometrium because of liganded ER-activating target genes in these different cell types. Several novel antiestrogen compounds have been developed that are also selective ER modulators (SERMs) but that have a reduced agonist profile on breast and gynecological tissues. These SERMs offer the potential for enhanced efficacy and reduced toxicity compared with tamoxifen. In advanced breast cancer clinical data exist for three first-generation SERMs (toremifene, droloxifene, idoxifene), which are related to the triphenylethylene structure of tamoxifen. In Phase II trials in a total of 263 patients resistant to tamoxifen, the median objective response rate to these SERMs was only 5% (range, 0-15%), with stable disease for > or =6 months in an additional 18% (range, 9-23%). As first-line therapy for advanced breast cancer, the median response rate was 31% (range, 20-68%) with a median time to progression of 7 months. Randomized Phase III trials for toremifene and idoxifene in more than 1500 patients showed no significant difference compared with tamoxifen. Fewer clinical data exist for the structurally distinct second- and third-generation SERMs (raloxifene, arzoxifene, EM-800, and ERA-923), although a similarly low median response rate of 6% (range, 0-14%) was seen in Phase II trials in tamoxifen-resistant patients. It remains unclear whether any clinical advantage exists for second- and third-generation SERMs over tamoxifen as first-line therapy. With the emergence of potent aromatase inhibitors (AIs) that are superior to tamoxifen, the clinical questions in advanced disease have shifted to which antiestrogen (including SERMs) may be effective following failure of AIs, and whether any merit exists for combined AI/SERM therapy. The main advantage for SERM therapy probably remains in early stage-disease (adjuvant therapy or prevention), in which the estrogenic effects on bone and reduced gynecological side effects may prove more beneficial than either tamoxifen or AI. The issue is whether the current clinical data for SERMs in advanced breast cancer are sufficiently strong to encourage that further development.

Adenocarcinoma↗

[Effects of raloxifene on other organs without bone: uterus].

Tamoxifen and Toremifene act as agonistic on uterine myometrium and endometrium. Tamoxifen leads re-enlargement of uterine myomas, recurrence of adenomyosis, atypical genital bleeding for endometrial hyperplasia and endometrial carcinoma in postmenopausal women. Therefore, it is necessary to evaluate the stage of pathological change on myometrium and endometrium, both before and during the period of administration of tamoxifen or toremifene. Unlike these drugs, raloxifene has an antagonistic action on uterine myometrium and endometrium. From these standpoints, we consider that raloxifene use lower the risks of uterine myomas, adenomyosis, endometrial hyperplasia and endometrial carcinoma.

Breast Neoplasms↗

Selective estrogen receptor modulators to prevent treatment-related osteoporosis.

The intended therapeutic effect of gonadotropin-releasing hormone (GnRH) agonists is hypogonadism, which is a leading cause of osteoporosis in men. Consistent with this observation, GnRH agonists decrease bone mineral density and increase fracture risk in men with prostate cancer. GnRH agonists markedly decrease serum levels of both testosterone and estrogen. Estrogens play a central role in homeostasis of the normal male skeleton, and the available evidence suggests that estrogen deficiency rather than testosterone deficiency accounts for the adverse skeletal effects of GnRH agonists. The central role of estrogens in male bone metabolism provides a strong rationale to evaluate selective estrogen receptor modulators for prevention of treatment-related osteoporosis in men with prostate cancer. Preliminary evidence suggests that both raloxifene and toremifene increase bone mineral density in GnRH agonist-treated men. An ongoing pivotal study will evaluate the effects of toremifene on fractures and other complications of GnRH agonists in men with prostate cancer.

Journal Article↗

[Recent development of endocrine treatment for breast cancer--new drugs and new treatment methods using tamoxifen].

The characteristics and clinical efficacies of new hormonal drugs and new treatment methods for breast cancer using tamoxifen (TAM) were described. The new anti-estrogens, such as trioxifen, toremifene and droloxifen, have equal or better clinical efficacy than TAM. They showed a high response rate in postmenopausal patients with no previous treatment or estrogen receptor positive tumors. They were occasionally effective for patients who relapsed after TAM treatment. Pure anti-estrogen ICI 164, 384, with fewer estrogenic agonistic properties than TAM, and anti-estrogen TAT-59, which has been developed in Japan, are under clinical investigation. Luteinizing hormone-releasing hormone agonists, such as leuprolide, buserelin, triptrelin and goserelin, are available for premenopausal patients, and showed a 37% response rate on average. The pure aromatase inhibitors, such as 4-hydroxyandrostenedione and CGS 16, 949 A, are available for postmenopausal patients, and showed 30% and 17% response rates on average, respectively. The new pure aromatase inhibitor ZD-1033 is also under clinical investigation. TAM or toremifene as well as the calcium antagonist verapamil were proved to overcome the multiple anticancer drug resistance caused by P-glycoprotein. Clinical studies for breast cancer using high-dose TAM as a potential modulator of drug resistance have already been started in Europe and the United States. Chemoprevention of breast cancer using TAM, which started in the U.S., was described.

Antineoplastic Agents↗

Anti-estrogens enhance the therapeutic effect of lymphokine-activated killer cells on the P815 murine mastocytoma.

Tamoxifen (TX) and toremifene (TO) enhanced the lysis of P815 mastocytoma cells in vitro by syngeneic DBA2 spleen cells that have been activated by human recombinant interleukin-2 (IL-2) for 6 days (lymphokine-activated killer [LAK] cells). Similarly, enhanced tumor suppression occurred when TX- or TO-treated P815 cells were mixed with LAK cells and injected s.c. into normal DBA2 recipients. Tumor suppression could be increased further by treating such recipients orally with TX or TO and by the repeated injections of LAK cells into the tumor site. The treatment of animals bearing tumors (5 mm in diameter) orally with TX or TO or with LAK cells i.p. resulted in tumor suppression. When the drug treatment was combined with LAK cells, tumor suppression was more pronounced, and complete tumor regression was induced in a significant number of the animals so treated. Our results indicate that the immunotherapeutic effect of LAK cells can be significantly amplified by combined treatment with the anti-estrogens TX or TO.

Analysis of Variance↗

Tissue-type plasminogen activator predicts endocrine responsiveness of human pancreatic carcinoma cells.

BACKGROUND: Estrogen receptor (ER) has been found in human pancreatic carcinoma, but the potential benefit of endocrine therapy never has been assessed adequately. The aim of this study was to determine whether the presence of ER can be used as an indicator of hormone responsiveness, and whether modulation of tissue-type plasminogen activator (t-PA) by ER can identify hormone-responsive pancreatic carcinomas. METHODS: The authors investigated ER status and hormonal regulation of t-PA in nine human pancreatic carcinoma cell lines, AsPC-1, BxPC-3, Capan-1, Capan-2, Hs-700T, Hs-766T, MiaPaCa-2, PANC-1, and SUIT-2. Furthermore, to examine whether estrogen dependency of t-PA production in pancreatic carcinoma cells correlated with responsiveness to endocrine therapy, the in vivo effects of various endocrine agents on the growth of the nine pancreatic cell lines transplanted into nude mice were examined. RESULTS: In a 17 beta-estradiol (E2)-binding assay, three of the nine pancreatic carcinoma cell lines (BxPC-3, Capan-2, and MiaPaCa-2) contained measurable levels of estradiol binding sites in vitro and in vivo using tumors transplanted into nude mice. Although t-PA was present in the culture medium in eight of the nine pancreatic carcinoma cell lines (not in Hs-700T), t-PA production was regulated by estrogen via an ER system in vitro only in the Capan-2 cell line. E2 injection into tumor-bearing mice showed acceleration of tumor growth only in Capan-2 tumors. Administration of a competitive ER antagonist, toremifene, and a luteinizing hormone-releasing hormone analogue, leuprorelin acetate (LEU), to Capan-2-bearing mice significantly reduced the rate of tumor growth, although there was no actual shrinkage of tumor mass. These agents failed to exert any antitumor effect on the other eight pancreatic cell lines. Although aromatase inhibitors, CGS 20267 and vorozole did not modify the in vivo growth of the nine pancreatic carcinoma cell lines significantly, the combined use of aromatase inhibitors with LEU exhibited a synergistic antitumor effect on Capan-2-bearing mice. Medroxyprogesterone acetate treatment significantly reduced the tumor volume of Capan-2 and also caused delayed growth in two other cell lines, AsPC-1 and MiaPaCa-2. CONCLUSIONS: The estrogen dependency of t-PA production may clarify the functional state of ER in human pancreatic carcinoma cells. This finding may aid in planning endocrine therapy for patients with this lethal cancer.

Animals↗

Cone voltage and collision cell collision-induced dissociation study of triphenylethylenes of pharmaceutical interest.

Fragmentations of three triphenylethylene compounds (toremifene and its two metabolites) with different functional side-chain groups (alcohol, acid and amine) were studied. The compounds were dissociated by collision-induced dissociation (CID) in the interface region of an electrospray ionization source (ESI(+)) and in the collision cell of a triple quadrupole mass spectrometer. Fragmentation pathways for these molecules are proposed, based on accurate mass measurements of in-source fragment ions and MS/MS experiments using product and precursor ion scanning. The side-chain functional groups were found to strongly affect the fragmentations of the molecular ions. The fragmentation pathways of the protonated molecule and sodium ion adduct were quite similar, but the subsequent stabilities of certain common fragments were surprisingly different.

Estrogen Antagonists↗

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↗

Desmoid tumours treated with triphenylethylenes.

Desmoids are uncommon mesenchymal tumours that occur at single or multiple anatomical sites, occasionally in association with polyposis coli. This paper describes the use of the triphenylethylene tamoxifen, and a new chlorinated analogue, toremifene, in 20 patients with progressive desmoid disease. Clinical responses ranging from stabilisation of disease to complete resolution were observed in 65% of cases. The antitumour activity of this group of drugs has been attributed to their anti-oestrogenic behaviour. However, desmoids provide a clinical model of a purely mesenchymal tumour which appears to respond despite having generally low levels of hormone receptor. This emphasises the significance of stroma within breast (and other) tumours, in particular how the stroma may regulate the response to these drugs regardless of receptor status.

Adult↗

Experimental adenomyosis.

Adenomyosis has been reported in a number of different animal species, whereas endometriosis appears limited to humans and non-human primates. This suggests a different aetiology of the two conditions. Adenomyosis develops spontaneously in certain strains of laboratory mice. Its incidence in mice can be markedly enhanced by systemic exposure to various hormonal agents, including prolactin, progesterone, synthetic progestins, certain oestrogenic agents, as well as tamoxifen and toremifene. The precise hormonal changes necessary remain unclear, although the evidence suggests that adenomyosis in this model is not due to a simple oestrogenic effect. Study of the pathological and molecular alterations in this model indicates that disturbances to the uterine stroma, blood vessels and myometrium are also important factors in the development of adenomyosis.

Animals↗