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In vitro expression of androgen and estrogen receptors in prepubertal and adult rat epididymis

机译:雄激素和雌激素受体在青春期前和成年大鼠附睾中的体外表达

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摘要

Androgens and estrogens regulate epididymal function but the mechanisms by which these hormones act is not fully understood. Epididymal culture systems have been described but none of these identify if AR, ERα and ERβ are expressed concurrently under identical culture conditions. Presumably, the actions of androgens and estrogens require their receptors and our results demonstrate for the first time that rat epididymal cell cultures express AR, ERα and ERβ protein under identical culture conditions. Furthermore, we demonstrate that the expression of these receptors in vitro mirrors normal in vivo expression patterns, a key finding for past and future studies. An epididymal culture system that maintains expression of androgen and estrogen receptors will allow for future investigations into the regulation and function of the epididymis. Previous studies showing prepubertal expression of ERα, did not find ERα expression in adult animals, making our study the first to demonstrate both prepubertal and adult expression of ERα. Additionally, species differences have been suggested to exist with regards to epididymal expression of ERα. Our results are the first to experimentally compare ERα expression in two different rat species and show that expression is similar between the two species. The expression of ERα and ERβ protein prior to puberty and into adulthood provides further supports for the hypothesis that the epididymis may be influenced by estrogens, in addition to androgens, during development and mature function.
机译:雄激素和雌激素调节附睾功能,但是这些激素起作用的机制尚不完全清楚。已经描述了附睾培养系统,但是这些都不能鉴定AR,ERα和ERβ是否在相同的培养条件下同时表达。据推测,雄激素和雌激素的作用需要它们的受体,我们的结果首次证明大鼠附睾细胞培养物在相同的培养条件下表达AR,ERα和ERβ蛋白。此外,我们证明了这些受体在体外的表达反映了正常的体内表达模式,这是过去和未来研究的关键发现。维持雄激素和雌激素受体表达的附睾培养系统将允许将来对附睾的调节和功能进行研究。先前的研究显示ERα的青春期前表达并未在成年动物中发现ERα的表达,这使我们的研究首次证明了ERα的青春期前和成年表达。另外,已经提出关于ERα的附睾表达存在物种差异。我们的结果首次在实验上比较了两种不同大鼠物种中的ERα表达,并表明两种物种之间的表达相似。 ERα和ERβ蛋白在青春期之前和成年期的表达进一步支持了以下假说:附睾可能在发育和成熟功能中受雄激素以外的雌激素影响。

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