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雌激素与附睾功能。

Estrogens and epididymal function.

作者信息

Hess R A, Zhou Q, Nie R, Oliveira C, Cho H, Nakaia M, Carnes K

机构信息

Reproductive Biology and Toxicology, Veterinary Biosciences, University of Illinois, Urbana 61802-6199, USA.

出版信息

Reprod Fertil Dev. 2001;13(4):273-83. doi: 10.1071/rd00100.

Abstract

Estrogen is synthesized in the male reproductive system and is found in high concentrations in rete testis and seminal fluids. This luminal estrogen targets estrogen receptors (ER) along the male reproductive tract, and in particular the efferent ductules, where ERalpha is abundant. However, both ERalpha and ERbeta are found in various regions of the male reproductive tract. The transgenic ER knockout mice (alphaERKO and betaERKO) have been used to help define the role of ER in the male. In the alphaERKO animal model, the efferent ductules are dramatically altered, forming an epithelium in which fluid reabsorption is inhibited and epithelial cells have greatly reduced numbers of lysosomes and organelles associated with endocytosis. The betaERKO male reproductive tract appears normal. Because these animals are transgenic and lack ER throughout development, we developed animal models using pure antiestrogen ICI 182,780 treatments in adult males. The data show that ERalpha participates in the regulation of the apical cytoplasm of non-ciliated cells of the efferent ductules, narrow cells of initial segment epididymis and clear cells in the remaining segments of the epididymis. There appears to be no effect on vas deferens. The inhibition of ERalpha function in the male leads to decreases in sperm concentrations and eventually to infertility. The current literature leaves the mechanisms of estrogen action in the male reproductive tract unsettled and raises the question of androgen's contribution to the regulation of fluid transport, especially in the efferent ductules.

摘要

雌激素在男性生殖系统中合成,在睾丸网和精液中浓度较高。这种管腔内的雌激素作用于男性生殖道各处的雌激素受体(ER),尤其是在附睾输出小管,此处ERα含量丰富。然而,ERα和ERβ在男性生殖道的各个区域均有发现。转基因ER基因敲除小鼠(αERKO和βERKO)已被用于帮助确定ER在男性中的作用。在αERKO动物模型中,附睾输出小管发生显著改变,形成一种上皮组织,其中液体重吸收受到抑制,上皮细胞中与胞吞作用相关的溶酶体和细胞器数量大幅减少。βERKO雄性生殖道看起来正常。由于这些动物是转基因的,且在整个发育过程中缺乏ER,我们开发了在成年雄性动物中使用纯抗雌激素ICI 182,780进行处理的动物模型。数据表明,ERα参与调节附睾输出小管非纤毛细胞、附睾起始段狭窄细胞以及附睾其余段透明细胞的顶端细胞质。对输精管似乎没有影响。男性中ERα功能的抑制导致精子浓度降低,最终导致不育。目前的文献尚未解决雌激素在男性生殖道中的作用机制问题,也提出了雄激素对液体运输调节作用的问题,尤其是在附睾输出小管中。

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