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首页> 外文期刊>Molecular and Cellular Endocrinology >Physiological volume regulation by spermatozoa.
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Physiological volume regulation by spermatozoa.

机译:精子调节生理量。

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Maturing spermatozoa passing through the epididymis experience increasing osmolality in the luminal environment and mature cells are stored in fluids hyper-osmotic to serum. When ejaculated into the female tract, they encounter a hypo-osmotic challenge which initiates the process of regulatory volume decrease (RVD). Defects in RVD result in hindrance of mucus penetration in man and failure of utero-tubal passage in mice. Epididymal sperm from the mouse and cynomolgus monkey and ejaculated sperm from man and monkey have been isolated and dispersed in media with osmolalities mimicking those of uterine fluid or cervical mucus. The effects of specific and broad-spectrum ion channel blockers indicate the involvement of separate K+ and Cl- channels as well as organic osmolytes in physiological sperm RVD, with mechanisms developed during epididymal maturation. Western blotting and immuno-cytochemistry identify and localise some of these channels which play a crucial role in fertilisation in vivo and could be targets for post-testicular contraception.
机译:穿过附睾的成熟精子在管腔环境中的渗透压增加,并且成熟细胞储存在对血清高渗透压的液体中。当射入女性通道时,它们会遇到低渗挑战,从而引发调节体积减少(RVD)的过程。 RVD缺陷会导致人类黏液渗透受阻,并导致小鼠子宫输卵管通过失败。已经分离了来自小鼠和食蟹猴的附睾精子以及来自人和猴的射精的精子,并将其分散在具有与子宫液或宫颈粘液渗透压类似的渗透压的培养基中。特异性和广谱离子通道阻滞剂的作用表明生理精子RVD中涉及独立的K +和Cl-通道以及有机渗透物,其机制在附睾成熟过程中发展。 Western印迹和免疫细胞化学鉴定并定位了其中一些通道​​,这些通道在体内受精中起着至关重要的作用,并且可能成为睾丸后避孕的目标。

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