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Inhibition of estrogen biosynthesis and its consequences on gonadotrophin secretion in the male.

作者信息

Bhatnagar A S, Müller P, Schenkel L, Trunet P F, Beh I, Schieweck K

机构信息

Department of Research and Development, Pharmaceuticals Division CIBA-GEIGY Limited, Basel, Switzerland.

出版信息

J Steroid Biochem Mol Biol. 1992 Mar;41(3-8):437-43. doi: 10.1016/0960-0760(92)90369-t.

DOI:10.1016/0960-0760(92)90369-t
PMID:1532903
Abstract

Of the gonadal steroids in the male, testosterone is the most important regulator of gonadotrophin secretion. However, whether testosterone affects gonadotrophin secretion directly or whether it must first be aromatized to estrogens is controversial. We have reported extensively on the endocrine and anti-tumor effects of the non-steroidal aromatase inhibitors CGS 16949A and CGS 20267 in adult female rats. In these animals, both inhibitors potently and selectively inhibit estrogen biosynthesis. Thus these agents can be effectively used in studying estrogen-dependent processes. CGS 16949A was administered for 14 days to adult male rats, over a dose range which in females suppresses estradiol and elevates LH. In male rats a suppression of estradiol was seen, however, there was no significant effect on either serum LH or on the weights of androgen-dependent organs. CGS 16949A, when administered to healthy men at a dose of 1 mg b.i.d. for 10 days, causes a significant fall in plasma estradiol and significant elevations of plasma FSH and testosterone. Dose-dependent suppression of serum estradiol and an increase in serum testosterone and LH are seen after administration of single oral doses of CGS 20267. These results indicate that in the male rat, inhibition of aromatization of testosterone to estrogens does not influence gonadotrophin secretion whereas in men the negative feedback exerted by testosterone on gonadotrophin secretion is dependent on the aromatization of testosterone to estrogens.

摘要

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