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雌激素和雄激素通过下丘脑神经肽分泌的不同模式引发生长激素释放。

Estrogen and androgen elicit growth hormone release via dissimilar patterns of hypothalamic neuropeptide secretion.

作者信息

Hassan H A, Enright W J, Tucker H A, Merkel R A

机构信息

Growth Biology Program, Department of Animal Science, Michigan State University, East Lansing, Michigan 48824, USA.

出版信息

Steroids. 2001 Feb;66(2):71-80. doi: 10.1016/s0039-128x(00)00168-9.

Abstract

The dimorphic pattern of growth hormone (GH) secretion and somatic growth in male and female mammals is attributable to the gonadal steroids. Whether these hormones mediate their effects solely on hypothalamic neurons, on somatotropes or on both to evoke the gender-specific GH secretory patterns has not been fully elucidated. The purpose of this study was to determine the effects of 17beta-estradiol, testosterone and its metabolites on release of GH, GH-releasing hormone (GHRH) and somatostatin (SRIF) from bovine anterior pituitary cells and hypothalamic slices in an in vitro perifusion system. Physiological concentrations of testosterone and estradiol perifused directly to anterior pituitary cells did not affect GH releases; whereas, dihydrotestosterone and 5alpha-androstane-3alpha, 17beta-diol increased GH. Perifusion of testosterone at a pulsatile rate, and its metabolites and estradiol at a constant rate to hypothalamic slices in series with anterior pituitary cells increased GH release. The androgenic hormones increased GHRH and SRIF release from hypothalamus; whereas, estradiol increased GHRH but decreased SRIF release. Our data show that estradiol and the androgens generated distinctly different patterns of GHRH and SRIF release, which in turn established gender-specific GH patterns.

摘要

雄性和雌性哺乳动物生长激素(GH)分泌及体细胞生长的双相模式归因于性腺类固醇。这些激素是仅通过作用于下丘脑神经元、生长激素细胞还是两者来引发性别特异性的GH分泌模式,目前尚未完全阐明。本研究的目的是在体外灌流系统中,确定17β-雌二醇、睾酮及其代谢产物对牛垂体前叶细胞和下丘脑切片释放GH、生长激素释放激素(GHRH)和生长抑素(SRIF)的影响。直接灌流于垂体前叶细胞的生理浓度的睾酮和雌二醇不影响GH释放;而双氢睾酮和5α-雄甾烷-3α,17β-二醇则增加GH释放。以脉冲速率灌流睾酮及其代谢产物以及以恒定速率灌流雌二醇至与垂体前叶细胞串联的下丘脑切片,可增加GH释放。雄激素类激素增加下丘脑GHRH和SRIF释放;而雌二醇增加GHRH释放但减少SRIF释放。我们的数据表明,雌二醇和雄激素产生了明显不同的GHRH和SRIF释放模式,进而确立了性别特异性的GH模式。

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