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At least 19 recordsLinked to original sources

Characterization of MCF 7 breast cancer cell growth inhibition by the antiestrogen nitromifene (CI 628) and selected metabolites.

Besides undergoing O-demethylation in vivo, the triarylethylene antiestrogen nitromifene [1-(4-(2-pyrrolidinylethoxy)phenyl)-1-(4-methoxy)-phenyl-2-phenyl- 2- nitroethene, 1] undergoes biotransformation via nitroreduction, ethene bond cleavage, and pyrrolidine ring oxidation affording ketone metabolites 2 and 3 and a lactam metabolite 4. Estrogen receptor (ER) affinities of 1, 2, and 4 were, in turn, 1.7, 0.1, and 3.8% that of estradiol in MCF 7 human breast cancer cells, and these compounds inhibited by 50% the proliferation of MCF 7 cells at respective concentrations of 1.1, 5.6, and 2.0 microM. The inhibitory effect of 4 was fully reversible by estradiol, but that of 2 was only partially reversible. Also 3, which did not interact with ER, inhibited proliferation by 44% at a concentration of 10 microM. These results suggested that in contrast to 4, the effects of 2 and 3 were due in part to interaction with sites distinct from ER. Antiestrogen binding sites and calmodulin have been suggested to mediate antiproliferative effects of drugs. Interaction of ligands with the former sites has been proposed to antagonize the growth promoting effect of histamine. Although 2 and 3 had high affinities for these sites, their inhibitory effects on MCF 7 cell growth were largely unaffected by the presence of histidine, the source of intracellular histamine. Thus, the relationship between antiestrogen binding site affinity and antiproliferative effects of 2 and 3 was not clarified. In contrast, MCF 7 cell growth suppression potencies paralleled calmodulin antagonist potencies of 1 and 2 suggesting that interaction of 1 and 2 with calmodulin may contribute to their anticancer effects.

3',5'-Cyclic-AMP Phosphodiesterases↗

Effects of estrogens and antiestrogens on androgen-dependent growth of Shionogi carcinoma 115: role of estrogen receptor.

Experiments were performed to observe the role of estrogen receptor in the proliferation of androgen-dependent mouse tumor, Shionogi carcinoma 115. Estradiol and diethylstilbestrol inhibited tumor growth as well as the weight gain of seminal vesicles and prostate glands in intact male mice. Tamoxifen decreased the tumor weight in intact males. Both nitromifene given to intact mice and tamoxifen given to castrated androgenized mice decreased the weight of seminal vesicles, but increased tumor weight. Estradiol was bound to the androgen receptor of the tumor cytosol with relatively high affinity, whereas diethylstilbestrol, tamoxifen and nitromifene were not. These were effective competitors in the estrogen receptor present in the tumor cytosol. These results suggest that the estrogen receptor system in Shionogi carcinoma 115 inhibits the proliferation of tumor cells.

Animals↗

Sexual preference and feminine and masculine sexual behavior of male rats prenatally exposed to antiandrogen or antiestrogen.

Male rats were prenatally (Day 10-19 of pregnancy) exposed to an antiestrogen, nitromifene citrate (CI628, 1 mg/rat), or an antiandrogen, cyproterone acetate (CA, 10 mg/rat), and in adulthood were examined for their exhibition of male-typical and female-typical behavior pattern. Treatment with CI628 abolished the capacity of the adult intact male to ejaculate, enhanced his potential to exhibit feminine sexual behavior, and decreased the intensity of the level of female-oriented behavior in a two-choice stimulus situation (estrous female vs active male). The administration of testosterone (T) did not alter these behaviors. Males exposed to CA showed low levels of lordosis behavior and normal levels of female-oriented preference. Further, they showed increased frequency of mounts and decreased number of intromissions, and only a few males ever ejaculated. Macroscopic inspection of the genital organs of the CI628-treated males revealed complete absence of the prostate. The dissections of the CA-treated males revealed a poorly developed penis and a blind-ending vagina. It was concluded that prenatal estrogen (E) is involved (1) in determining the development of mechanisms destined to mediate the display of male-typical behaviors in adulthood, (2) in suppressing the development of mechanisms of female-typical behaviors, and (3) seems to stimulate neural mechanisms influencing sexual preference behavior in the adult.

Androgen Antagonists↗

Role of estrogen and androgen in maintaining the preovulatory follicle.

The effects of nitromifene citrate (CI 628), an antiestrogen, and Flutamide, an antiandrogen, on the ultrastructure and viability of the preovulatory follicle and granulosa cells were examined both in vivo and in vitro. In vivo administration of either antihormone induced degeneration within the granulosa cells. In some of the affected granulosa cells, the nuclear material was condensed while the cytoplasm and associated organelles were unaltered. In others, the density of the cytoplasm was reduced, the smooth endoplasmic reticulum was dilated but the nucleus remained unaltered. In vitro, either antihormone reduced granulosa-cell viability but the granulosa cells were twenty times more sensitive to CI 628 than to Flutamide. In addition, exposure to CI 628 induced nuclear condensation without affecting the cytoplasm, while Flutamide induced the deterioration of the cytoplasm without altering the nucleus. These observations suggest that: (1) both estrogen and androgens control the viability of the granulosa cells and thereby the follicle, (2) the action of estrogen and androgen is mediated through receptors within the granulosa cells since these antihormones prevent the nuclear uptake of their respective hormone, (3) the granulosa cells of preovulatory follicles appears to be more dependent on estrogen than on androgen, and (4) each steroid appears to have a specific role in maintaining the granulosa cell; estrogens control the integrity of the nucleus while androgens preserve the cytoplasmic organization of the granulosa cell.

Androgens↗

Estrogen agonistic and antagonistic action of 8 non-steroidal antiestrogens on progestin receptor induction in rat pituitary gland and uterus.

All 8 non-steroidal antiestrogens tested considerably increased progestin receptor concentration in the uterus and, to a lesser extent, in the pituitary of ovariectomized rats. However, the pituitary was more sensitive than the uterus to the estrogen antagonistic action of these compounds, in that monohydroxytamoxifen, LY 117,018, enclomiphene, nitromifen, nafoxidine and trans-tamoxifen completely blocked progestin receptor induction by estradiol benzoate. In these tissues the order of the in vitro binding affinity of antiestrogens to cytoplasmic estrogen receptors was not correlated with either their in vivo estrogen agonistic or antagonistic potency.

Animals↗

Interaction of non-steroidal antiestrogens with dopamine receptor binding.

The ability of various estrogen antagonists and agonists to compete with [3H]spiroperidol, [3H]domperidone, [3H]dihydroalprenolol, [3H]dihydroergocryptine, [3H]dopamine or [3H]5-hydroxytryptamine for binding to membrane preparations from rat brain tissue was tested. The non-steroidal triphenylethylene-type antiestrogens with an amine side chain--enclomiphene, nitromifene, tamoxifen and zuclomiphene--were found to be competitive inhibitors of [3H]spiroperidol (Kd = 0.12 nM; Bmax = 101 fmol/mg protein) and [3H]domperidone (Kd = 0.62 nM; Bmax = 86 fmol/mg protein) binding to striatal membranes. The Ki values ranged from 4-12 microM. Estradiol-17 beta (Ki = 480 microM) or diethylstilbestrol (Ki = 63 microM) were much less effective inhibitors exhibiting noncompetitive interaction with the in vitro binding of [3H]spiroperidol. The pharmacological relevance of the antiestrogen interactions with dopamine receptor binding is discussed with respect to adverse effects of the in vivo administered compounds such as nausea and vomiting.

Animals↗

Effects of metabolism inhibitors, antiestrogens and antiandrogens on the androgen and estrogen induced sexual behavior in Japanese quail.

The relative contribution of androgenic and estrogenic metabolites of testosterone to the activation of sexual behavior was studied in Japanese quail by using inhibitors of testosterone metabolism, antiestrogens and antiandrogens. These compounds were tested in castrated birds whose sexual behavior had been activated by silastic implants of testosterone (T) or daily injections of testosterone propionate (TP) or diethylstilboestrol (DES). The aromatase inhibitor ATD only depressed T-induced behavior when injected at high doses and the 5 alpha-reductase inhibitor, 4MA was inactive in this respect. The antiestrogens, tamoxifen (TAM) and nitromifene citrate (CI-628) strongly depressed sexual behavior but they also drastically reduced the crowing behavior which is typically androgen-dependent which throws some doubts on the specificity of their action. The antiandrogens, flutamide and cyproterone acetate (CA), only had limited inhibitory effects on the copulatory behavior but similarly decreased only marginally the crowing. As they strongly depressed the cloacal gland growth, it can be ascertained that they were injected in sufficient amounts and their lack of action on crowing questions the ability of these compounds to inhibit brain processes even when they are androgen-dependent. Taken together with the results of previous experiments which tested the behavioral effects of the testosterone metabolites, the present data confirm the implication of both androgenic and estrogenic metabolites of testosterone in the activation of behavior. Their interaction remains, however, poorly defined and its understanding will probably require the identification of the biochemical processes which in the brain mediate the behavior.

Androgens↗

Postnatal testicular secretions partially restore the disturbances in reproductive activity caused by prenatal hormonal manipulation.

Male rats that prenatally had been exposed to an antiestrogen, nitromifene citrate (CI 628), showed evidence of impaired defeminization and masculinization in adulthood, suggesting a role of endogenous estrogen for the sexual differentiation of the male. The present study was undertaken to investigate a possible role of postnatal testicular secretions for the above behavioral effects. Male rats were exposed prenatally to CI 628 (1 mg/rat) or saline, and castrated on Day 0, Day 10, or Day 90 after birth. After treatment with gonadal hormones in adulthood, the males were tested for feminine and masculine sexual behavior and for sexual orientation, both when sexually naive and after they had acquired sexual experience. The following conclusions were drawn: 1. Permanent deficits of lordotic behavior were observed in all experimental groups, suggesting the importance of prenatal estrogen for the defeminization process. 2. Hop/darting and ear wiggling behaviors were enhanced in Day-0 and Day-10 castrates, and blocked in the Day-90 castrates. The restitution of these behaviors to normal levels in Day-90 castrates suggests that, in addition to prenatal estrogen, postnatal testicular secretions also are involved in the behavioral defeminization process. 3. Prenatal estrogen contributes to masculinization as evidenced by the impaired ejaculatory behavior observed in all experimental groups. 4. Male-typical sexual orientation toward the female seems to be facilitated by prenatal estrogen. Both the masculinization and the defeminization of male-typical sexual orientation toward a female were impaired by castration at birth and at Day 10 in the experimental animals, but a full restoration of the sexual orientation toward females was seen in Day-90 castrates, suggesting the restorative role of postnatal testicular secretions for these processes.

Animals↗

An improved histochemical method for detection of estrogen receptors in mammary cancer. Comparison with biochemical assay.

Unselected, consecutive surgical specimens from 120 women with cancer of the breast were subjected to histochemical assay for the presence of estrogen receptor. A fluoresceinated bovine serum albumin--estradiol conjugate was used that linked estradiol at position 17 and contained 5 mol fluorescein and 4 mol estradiol per mole albumin. Simultaneous competitive binding studies with excess unlabeled estradiol, diethylstilbestrol, and the antiestrogen nitromifene citrate were regularly performed. Results were compared to those obtained by the dextran-coated charcoal receptor assay. Three specimens were necrotic, two others thawed, and two lacked sufficient protein for biochemical analysis. One specimen did not contain tumor, and 11 others showed a predominant nuclear staining pattern. Nuclear receptor was not assayed biochemically. Comparison of results in the remaining 101 cases showed agreement in 92%. The precedure is uncomplicated, economical, and could be performed and interpreted in any pathology laboratory.

Binding Sites↗

Subcellular distribution of 3 alpha-hydroxysteroid dehydrogenase and antiestrogen action on androgen-metabolizing enzymes in rat pituitary gland.

Gonadectomy of male rats led to a threefold increase of 3 alpha-hydroxysteroid dehydrogenase (3 alpha-HSDH) activity in pituitary homogenates that could be completely reversed by chronic administration of estradiol or 5 alpha-dihydrotestosterone (DHT). 3 alpha-HSDH was found to be distributed mainly between the 10,000 g and 100,000 g sediments from whole homogenates. The microsomal enzyme activity showed a substantial specificity for NADH whereas the cytosolic enzyme (100,000 g supernatant) demonstrated a slight preference for NADPH. The changes in Vmax found in homogenates following gonadectomy and gonadal steroid administration reflected changes in NADH-linked activity of the microsomal, but not the cytosolic enzyme. Estradiol-induced suppression of NADH-linked 3 alpha-HSDH activity in pituitary homogenates from gonadectomized rats of either sex was accompanied by a similar suppression of NADPH-linked 5 alpha-reductase activity and a marked decrease of luteinizing hormone (LH) and follicle-stimulating hormone (FSH) release. In the ovariectomized rat chronic administration of nonsteroidal antiestrogens had strong estrogenic effects on 3 alpha-HSDH activity and LH release, but not on 5 alpha-reductase activity and FSH release. In the gonadectomized male rat, which was much less sensitive to intrinsic estrogenicity of the antiestrogens tested, nafoxidine completely blocked estradiol-induced suppression of 5 alpha-reductase activity and FSH release and partially antagonized suppression of LH release. The trans-isomeric, substituted triphenylethylenes, tamoxifen, and enclomiphene, as well as nitromifene (mixture of trans and cis isomers) were able partially to counteract estradiol-induced suppression of 5 alpha-reductase, but not 3 alpha-HSDH activity. It is concluded that estradiol action on pituitary 5 alpha-reductase, but not 3 alpha-HSDH activity, involves an estrogen receptor mechanism.

3-Hydroxysteroid Dehydrogenases↗

A potent and selective photoaffinity probe for the anti-estrogen binding site of rat liver.

The anti-estrogen binding site (ABS) is an apparently ubiquitous component of cells that has been shown to be intimately linked with the antiproliferative effects of certain antiestrogenic compounds, like tamoxifen, which is currently used for the treatment of breast cancer. However, the identification and in vitro study of this novel protein has been hampered to date by a lack of convenient probes that will efficiently label the molecule in nonpurified preparations. Thus, using a selective ABS ligand (4-benzylphenoxy-N-ethylmorpholine, MBPE) as starting material, we synthesized a photosensitive azido derivative, [(2-azido-4-benzyl)phenoxy]N-ethylmorpholine (azido-MBPE) that can be prepared in a tritiated form. Azido-MBPE has a high affinity for ABS (Kd = 3 nM), identical to that of tamoxifen, and covalently labels 5 and 12% of membrane-bound and detergent-solubilized ABS, respectively. Its incorporation is selectively and competitively inhibited by other ABS ligands (tamoxifen greater than nitromifen greater than hydroxytamoxifen). [3H]Azido-MBPE potently photolabels either membrane-bound or detergent-solubilized ABS as determined by sodium dodecyl sulfate-polyacrylamide gel electrophoresis under denaturing conditions revealing specific photoincorporation in a protein band of Mr = 40,000. This molecular weight is approximately two times lower than what we observed previously for ABS preparations studied under nondenaturing conditions and postlabeled with [3H]tamoxifen (Mr = 80,000-110,000). In chromatofocusing experiments with photolabeled ABS, a single specifically labeled protein fraction migrating with a pI of 6.4 was found to exhibit a Mr of 40,000 when subsequently electrophoresed on sodium dodecyl sulfate-polyacrylamide gels. These results indicate that [3H]azido-MBPE is a specific high affinity probe of ABS that will prove useful in the ultimate identification of this protein.

Affinity Labels↗

Interactions of putative estrogens with the intracellular receptor complex in mouse Leydig cells: relationship to preneoplastic hyperplasia.

The interaction of 14 steroidal and nonsteroidal estrogen agonists and antagonists with the intracellular estrogen receptor system was examined in cell suspensions prepared from the testes of mice that develop malignant Leydig cell tumors after prolonged estrogen administration. The ability of these substances to stimulate DNA synthesis in short-term (3-day) studies and to provoke Leydig cell hyperplasia with prolonged (3-mo) administration was also measured. Our data were consistent with the proposal that, in Leydig cells, the carcinogenic effects of estrogens are mediated through the intracellular receptor complex that results in a localization of hormone bound to chromatin and nuclear matrix. All tested compounds displaced 17 beta-[3H]estradiol from the cytosolic estrogen receptor, but to varying degrees; and there was no discernible relationship between their ability to compete for this receptor and their efficacy in stimulating DNA synthesis. The effect of the test compounds on the levels of estrogen receptor in cytosol and in nuclei was measured by [3H]estradiol exchange. 17 beta-Estradiol, equilin, 17 alpha-ethinylestradiol, diethylstilbestrol, hexestrol, dienestrol, coumestrol, and nafoxidine provoked a complete estrogen receptor response: acutely a decrease in the level of cytosolic estrogen receptor and an increase in the nuclear estrogen receptor. All of these substances acutely stimulated DNA synthesis. Tamoxifen, clomiphene, and nitromifene provoked a decrease in cytosolic receptor but no increase in demonstrable nuclear estrogen receptor. 17 alpha-Estradiol, mestranol, and estriol did not significantly alter the levels of estrogen receptor in cytosol or nuclei. Only those substances that increased measurable nuclear estrogen receptor also acutely stimulated DNA synthesis. Chronic (3-mo) treatment of 2-mo-old male BALB/c mice with diethylstilbestrol, 17 beta-estradiol, ethinylestradiol, and nafoxidine led to Leydig cell hyperplasia. Chronic mestranol treatment also provoked Leydig cell hyperplasia; this is most probably due to induction of liver metabolism of mestranol to ethinylestradiol. Chronic treatment with 17 alpha-estradiol, tamoxifen, and clomiphene failed to produce significant histologic al changes in the testes. Only chronic administration of those substances that exhibited a complete estrogen receptor response and acutely stimulated DNA synthesis produced Leydig cell hyperplasia.

Animals↗

Reversal of acquired resistance to doxorubicin in P388 murine leukemia cells by tamoxifen and other triparanol analogues.

The effects of the triparanol analogues chlorotrianisene, clomiphene, tamoxifen, 5-[p-(fluoren-9-ylidenemethyl)phenyl]-2-piperidineethanol (MDL 10393), MDL 8917v, nafoxidine, 2-[p-(6-methoxy-2-phenylinden-3-yl)phenoxy]triethylamine (U-11555A), 2-[p-(3,4-dihydro-6-methoxy-2-phenyl-1-naphthyl)phenoxy]triethylamine (U-10520A), and nitromifene, as well as triparanol itself, were studied in the P388 murine leukemia cell line and in a doxorubicin-resistant subline (P388/ADR). At noninhibitory concentrations, all the analogues increased the sensitivity of P388/ADR cells to doxorubicin but did not have such an effect on the doxorubicin-sensitive cells. Diethylstilbestrol, deacetylated cyclofenil (F6060), hexestrol, and 17 beta-estradiol did not have such an activity. The effects of tamoxifen on doxorubicin sensitivity of P388/ADR cells could not be reversed by 17 beta-estradiol. Estrogen receptors could not be demonstrated in either cell line. It is therefore suggested that the reversal of the doxorubicin-acquired resistance by the triparanol analogues is unrelated to their estrogenic or antiestrogenic activities. The possible clinical implications of these findings are discussed.

Animals↗

Estrogen and antagonist-induced structural changes in the cervico-vaginal epithelium of immature rats.

Estrogen enhances proliferation and keratin formation in the cervico-vaginal epithelium of immature rats, whereas the estrogen antagonist, CI-628 (Parke-Davis), represses mitosis and induces mucinogenesis. Combinations of antagonist and estrogen allow differentiation of an epithelium composed of both keratin-forming and mucous cells. Both estrogen and antagonist induce synthesis of a cervico-vaginal endogenous peroxidase in the intermediate and superficial layers of the epithelium. The secreted vaginal mucus of antagonist-treated animals stains intensely for exogenous peroxidase.

Animals↗

Effect of an estrogen antagonist on development of blastocysts and implantation in the hamster.

CI 628 citrate, an estrogen antagonist, was given as a single intraluminal injection (5 micrograms) on day 3 to ovariectomized, progesterone-treated hamsters. This significantly reduced embryo cleavage rate, transformation of morula into blastocyst, and completely inhibited implantation. The effects of the drug could be reversed by estradiol-17B (1 microgram) but not estradiol-17 alpha (1 microgram) injected intraluminally with CI 628 citrate. Our finding suggests a role of estrogen present in hamster preimplantation embryo in the triggering of embryonic differentiation and implantation of the blastocyst.

Animals↗

Physiologic significance of 17beta-estradiol binding in the rabbit Fallopian tube.

Rabbit Fallopian tube contractility was recorded in vitro during perfusion with either Locke's solution or that solution containing CN-55, 945-27 (CN; or CI-628), a nonsteroidal estrogen antagonist (Endocrinology 79: 153, 1966). Contractility was inhibited and 17beta-estradiol (E2) displaced from both its cytoplasmic (8S) and nuclear (4S) receptors in the presence of the above agent. These effects result from a direct interaction between CN and the E2-receptor complexes. Two types of evidence show the specificity of the foregoing responses: (1) nonspecific binding of E2 to serum proteins was unaffected by the antagonist and (2) CN had no effect on contractility of a nontarget tissue, i.e., rabbit ileum. In addition, Fallopian tube contractions induced by strong electrical stimulation of K-depolarized tissues (i.e., in the absence of normal ionic gradients) were inhibited by CN and a decrease in the binding capacities of 8S and 4S receptors was again observed. Thus, antagonism of specific E2 binding inhibits the contractile mechanism at a level other than the cell membrane. These observations, and additional findings concerning the reversibility of CN action, indicate that E2 binding is essential for contractility of the rabbit Fallopian tube.

Animals↗