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Oviductal high concentration of K+suppresses hyperpolarization but does not prevent hyperactivation, acrosome reaction andin vitrofertilization in hamsters

电容 顶体反应 过度活跃 超极化(物理学) 精子 膜电位 仓鼠 人类受精 化学 输卵管 去极化 生物物理学 细胞生物学 男科 内分泌学 生物 生物化学 解剖 医学 立体化学 核磁共振波谱
作者
Gen L. Takei,Hiroe Kon
出处
期刊:Zygote [Cambridge University Press]
卷期号:29 (1): 66-74 被引量:4
标识
DOI:10.1017/s0967199420000532
摘要

Summary Mammalian sperm have to undergo capacitation to be fertilization competent. Capacitated sperm in vitro show hyperpolarization of the membrane potential. It has been reported that in mouse membrane hyperpolarization is necessary for the acrosome reaction. We recently found that the fluid of the hamster oviduct, where fertilization occurs, contained a high potassium (K + ) concentration (~20 mEq/l). This high K + concentration could depolarize the membrane potential and prevent the acrosome reaction/fertilization. Conversely, some beneficial effects on capacitation of high K + concentration or a high K/Na ratio were also reported. In the present study, we investigated the effects of oviduct high K + concentration on hamster sperm capacitation-associated events and fertilization. The present study confirmed that, in hamster sperm, membrane potential was hyperpolarized upon in vitro capacitation, indicating that capacitation-associated hyperpolarization is a universal phenomenon among mammalian species. An increase in KCl concentration in the medium to 20 mM significantly depolarized the membrane potential and suppressed hyperpolarization when in the presence of >101 mM NaCl. However, an increase in the KCl concentration to 20 mM did not significantly affect the percentage of motile sperm, hyperactivation or the acrosome reaction. No effect of 20 mM KCl on in vitro fertilization was observed. In addition, no correlative changes in hyperactivation and the acrosome reaction with K/Na ratio were observed. These results suggested that in hamsters the oviduct K + concentration suppressed hyperpolarization but had no effect on capacitation and in vitro fertilization. Our results raised a question over the physiological significance of capacitation-associated hyperpolarization.
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