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首页> 外文期刊>Biology of Reproduction: Offical Journal of the Society for the Study of Reproduction >Physiology of Na+/H+ exchangers in the male reproductive tract: Relevance for male fertility
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Physiology of Na+/H+ exchangers in the male reproductive tract: Relevance for male fertility

机译:男性生殖道中Na + / H +交换子的生理学:与男性生育力的相关性

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摘要

The maintenance of pH homeostasis in the male reproductive tract is kept through the involvement of several mechanisms, among which is included the transmembranous movement of H+ ions. Na+-H+ exchangers (SLC9, solute carrier 9 family members) are among the membrane transporters known to participate in intracellular and extracellular pH regulation but also have important roles in salt and water absorption across epithelia and in the regulation of cell volume. The presence of several Na +-H+ exchangers has been reported in the male reproductive tract. Their involvement in the processes that ensure the correct pursuance of the spermatogenetic event and spermatozoa maturation has been suggested. Indeed, the formation of mature spermatozoa is highly dependent on the maintenance of adequate ductal luminal milieu pH and ionic balance. Perturbations in these processes result in reduced male reproductive potential and consequently male subfertility and/or infertility. Thus, it is imperative to understand H + transport dynamics in order to identify and counteract possible alterations associated with reduced male fertility caused by pathological conditions. Herein, we will discuss the expression pattern and physiological roles of SLC9 family members in the cells of the male reproductive tract as well as the molecular basis of H+ transport and its involvement in male reproductive potential.
机译:男性生殖道内pH稳态的维持是通过多种机制参与的,其中包括H +离子的跨膜运动。 Na + -H +交换子(SLC9,溶质载体9家族成员)是已知参与细胞内和细胞外pH调节的膜转运蛋白,但在整个上皮的盐和水吸收以及细胞体积的调节中也具有重要作用。在男性生殖道中已经报道了几种Na + -H +交换剂的存在。有人建议他们参与确保精子发生事件和精子成熟的正确过程。确实,成熟精子的形成高度依赖于适当的导管腔环境pH和离子平衡的维持。在这些过程中的摄动导致男性生殖潜能降低,并因此导致男性不育和/或不育。因此,必须了解H +的运输动态,以识别和抵消与病理状况引起的男性生育力降低有关的可能变化。在这里,我们将讨论SLC9家族成员在男性生殖道细胞中的表达模式和生理作用,以及H +转运的分子基础及其对男性生殖潜能的影响。

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