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附睾中的细胞连接,是理解男性生殖毒理学的关键参数。

Cellular junctions in the epididymis, a critical parameter for understanding male reproductive toxicology.

机构信息

Laboratory for Reproductive Toxicology, INRS-Institut Armand-Frappier, Université du Québec, 531 boul. des Prairies, Laval, Québec, H7V 1B7, Canada.

Laboratory for Reproductive Toxicology, INRS-Institut Armand-Frappier, Université du Québec, 531 boul. des Prairies, Laval, Québec, H7V 1B7, Canada.

出版信息

Reprod Toxicol. 2018 Oct;81:207-219. doi: 10.1016/j.reprotox.2018.08.013. Epub 2018 Aug 18.

Abstract

Epididymal sperm maturation is a critical aspect of male reproduction in which sperm acquire motility and the ability to fertilize an ovum. Sperm maturation is dependent on the creation of a specific environment that changes along the epididymis and which enables the maturation process. The blood-epididymis barrier creates a unique luminal micro-environment, different from blood, by limiting paracellular transport and forcing receptor-mediated transport of macromolecules across the epididymal epithelium. Direct cellular communication between cells allows coordinated function of the epithelium. A limited number of studies have directly examined the effects of toxicants on junctional proteins and barrier function in the epididymis. Effects on the integrity of the blood-epididymis barrier have resulted in decreased fertility and, in some cases, the development of sperm granulomas. Studies have shown that in addition to tight junctions, proteins implicated in the maintenance of adherens junctions and gap junctions alter epididymal functions. This review will provide an overview of the types and roles of cellular junctions in the epididymis, and how these are targeted by different toxicants.

摘要

附睾精子成熟是男性生殖的一个关键方面,在此过程中精子获得了运动能力和受精卵子的能力。精子成熟依赖于创造一个特殊的环境,这个环境沿着附睾而变化,并使成熟过程得以进行。血附睾屏障通过限制细胞旁转运并迫使大分子通过附睾上皮进行受体介导的转运,从而创造了一种与血液不同的独特的管腔微环境。细胞之间的直接细胞通讯允许上皮的协调功能。少数研究直接检查了有毒物质对附睾连接蛋白和屏障功能的影响。对血附睾屏障完整性的影响导致生育能力下降,在某些情况下还会导致精子肉芽肿的形成。研究表明,除了紧密连接,参与维持黏附连接和间隙连接的蛋白质也会改变附睾的功能。本综述将概述细胞连接在附睾中的类型和作用,以及不同的有毒物质如何靶向这些连接。

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