雌激素在男性生殖道传出管液体运输中的作用。

R A Hess
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引用次数: 157

摘要

本文综述了雌激素和雌激素受体在男性生殖系统中的重要性,特别关注了新发现的雌激素在睾丸传出小管中调节液体重吸收的作用。早期关于雌激素合成的研究表明,睾丸间质细胞和支持细胞是成年睾丸中唯一重要的激素合成细胞。然而,最近的研究表明,生殖细胞和精子也含有芳香化酶并产生雌激素。生殖细胞合成雌激素的观察为一种新的假设提供了依据,即男性生殖道管腔内的雌激素以传出小管上皮和附睾为靶点。核雌激素受体在男性生殖道中的位置也被研究过,发现雌激素受体α在睾丸的传出小管中比在男性或女性的任何其他组织中都要丰富。迄今为止,在所有研究过的物种中,已经发现雌激素受体α在传出小管中含量丰富。考虑到传出小管的结构和功能,因为这些小管负责重吸收几乎90%的管腔尿道睾丸液。因此,假设雌激素受体在传出小管的液体重吸收调节中发挥作用是合乎逻辑的。雌激素受体α敲除小鼠被用来帮助确定受体在雄性中的作用。在这个动物模型中,传出小管从重吸收上皮明显改变为缺乏溶酶体和内吞细胞器的鳞状上皮。尽管雌激素和雄激素在调节体液重吸收中的不同作用存在争议,仍有待解决,但现在已经确定,雄性雌激素受体功能的丧失会干扰输出小管的吸收功能,而这一功能对生育能力至关重要。未来的研究将集中在雌激素调控男性生殖道水分和离子运动的生化和生理机制上。
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Oestrogen in fluid transport in efferent ducts of the male reproductive tract.

This review focuses on the importance of oestrogen and oestrogen receptors in the male reproductive system, with a special interest in the newly discovered role of oestrogen in the regulation of fluid reabsorption in the efferent ductules of the testis. Early work on oestrogen synthesis indicated that Leydig and Sertoli cells were the only important cells in the production of this steroid in the adult testis. However, more recent work has shown that germ cells and spermatozoa also contain aromatase and produce oestrogen. The observation that germ cells synthesize oestrogen contributed to a new hypothesis that oestrogen in the lumen of the male reproductive tract targets the epithelial lining of efferent ductules and the epididymis. The location of nuclear oestrogen receptors in the male reproductive tract has also been investigated and it has been found that oestrogen receptor alpha is more abundant in the efferent ductules of the testis than in any other tissue of the male or female. In all species examined to date, oestrogen receptor alpha has been found to be abundant in the efferent ductules. The structure and function of the efferent ductules are taken into account as these tubules are responsible for the reabsorption of almost 90% of the luminal rete testis fluid. Thus, it was logical to hypothesize that oestrogen receptors play a role in the regulation of fluid reabsorption in efferent ductules. The oestrogen receptor alpha knockout mouse was used to help define this role of the receptor in males. In this animal model, the efferent ductules are altered markedly from a reabsorptive epithelium to a squamous epithelium devoid of lysosomes and endocytotic organelles. Although the separate roles for oestrogens and androgens in the regulation of fluid reabsorption are controversial and remain to be resolved, it is now established that loss of oestrogen receptor function in males interferes with the resorptive function of efferent ductules, a function that is essential for fertility. Future studies will focus on the biochemical and physiological mechanisms involved in the regulation of water and ion movement by oestrogen in the male reproductive tract.

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