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水通道蛋白 1 和 9 在成年大鼠附睾中的表达受慢性乙醇暴露的影响。

The expression of aquaporins 1 and 9 in adult rat epididymis is perturbed by chronic exposure to ethanol.

机构信息

Department of Anatomy, Institute of Biosciences, UNESP-University Estadual Paulista, Botucatu, SP, Brazil.

出版信息

Tissue Cell. 2012 Feb;44(1):47-53. doi: 10.1016/j.tice.2011.11.001. Epub 2011 Nov 30.

Abstract

Aquaporins (AQPs), notably AQP-1 and AQP-9, may contribute to reabsorption of fluid and solute across the epididymis. Ethanol is related to be a toxicant affecting directly or indirectly the epididymis and the sperm motility. This study examined the expression of AQP-1 and AQP-9 in adult epididymis of the UChA and UChB 10% (v/v) ethanol-preferring rats, focusing the ethanol-induced hormonal disturbances upon the regulation of these AQPs. Chronic ethanol intake significantly decreased body weight, while UChA and UChB rats displayed a marked loss of epididymal weights. Both ethanol-consuming animals had a severe reduction of testosterone levels, whereas LH and 17β-estradiol were unchanged. Throughout the epididymis, a strong reaction to AQP-1 was observed in myoid and endothelial cells of the UChB ethanol-preferring rats, differently from a moderate intensity in the initial segment of the UChA rats. In addition, AQP-9 showed a strong immunoreaction in the apical membrane of principal cells at initial segment. In cauda epididymis, the level of AQP-9 was reduced along the microvillus projections in both UChA and UChB rats compared to controls. We conclude that chronic ethanol consumption modulates the androgen levels, thereby modifying the expression pattern of AQP-1 and 9 in the epididymis.

摘要

水通道蛋白(AQPs),特别是 AQP-1 和 AQP-9,可能有助于在附睾中重吸收液体和溶质。乙醇被认为是一种有毒物质,直接或间接影响附睾和精子活力。本研究检查了 UChA 和 UChB 10%(v/v)乙醇偏好大鼠成年附睾中 AQP-1 和 AQP-9 的表达,重点研究了这些 AQPs 调节乙醇诱导的激素紊乱。慢性乙醇摄入显著降低了体重,而 UChA 和 UChB 大鼠表现出明显的附睾重量减轻。两种乙醇消耗动物的睾丸激素水平均严重降低,而 LH 和 17β-雌二醇不变。在整个附睾中,UChB 乙醇偏好大鼠的肌样细胞和内皮细胞对 AQP-1 有强烈反应,而 UChA 大鼠的初始段则有中度反应。此外,AQP-9 在初始段的主细胞顶膜上表现出强烈的免疫反应。在附睾尾部,与对照组相比,UChA 和 UChB 大鼠的微绒毛突起中 AQP-9 的水平降低。我们得出结论,慢性乙醇消耗调节雄激素水平,从而改变附睾中 AQP-1 和 9 的表达模式。

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