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Segmental and cellular expression of aquaporins in the male excurrent duct

机译:水通道蛋白在雄性前导管中的节段性和细胞表达

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摘要

The male reproductive tract and accessory glands comprise a complex but interrelated system of tissues that are composed of many distinct cell types, all of which contribute to the ability of spermatozoa to carry out their ultimate function of fertilizing an oocyte. Spermatozoa undergo their final steps of maturation as they pass through the male excurrent duct, which includes efferent ducts, the epididymis and the vas deferens. The composition of the luminal environment in these organs is tightly regulated. Major fluid reabsorption occurs in efferent ducts and in the epididymis, and leads to a significant increase in sperm concentration. In the distal epididymis and vas deferens, fluid secretion controls the final fluidity of the luminal content. Therefore, the process of water movement in the excurrent duct is a crucial step for the establishment of male fertility. Aquaporins contribute to transepithelial water transport in many tissues, including the kidney, the brain, the eye and the respiratory tract. The present article reviews our current knowledge regarding the distribution and function of aquaporins in the male excurrent duct. (c) 2006 Elsevier B.V. All rights reserved.
机译:雄性生殖道和附属腺包括复杂但相互关联的组织系统,该组织由许多不同的细胞类型组成,所有这些类型都有助于精子执行其使卵母细胞受精的最终功能。精子经过雄性的外部导管(包括传出的导管,附睾和输精管)会经历最后的成熟步骤。这些器官内腔环境的组成受到严格调节。大量的液体重吸收发生在传出的导管和附睾中,并导致精子浓度显着增加。在远端附睾和输精管中,液体分泌控制着管腔内容物的最终流动性。因此,水在外部导管中的运动过程是建立雄性育性的关键步骤。水通道蛋白有助于许多组织,包括肾脏,大脑,眼睛和呼吸道的经上皮水运输。本文回顾了我们目前有关雄性前导管中水通道蛋白的分布和功能的知识。 (c)2006 Elsevier B.V.保留所有权利。

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