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Contribution of TRPV channels to osmosensory transduction, thirst, and vasopressin release

机译:TRPV通道对渗透感传导,口渴和加压素释放的贡献

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Systemic osmoregulation is an integrated physiological process through which water intake and excretion are continuously balanced against salt intake and excretion to maintain the osmolality of the extracellular fluid near an optimal 'set-point' value. The behaviors (that is, thirst and sodium appetite) and renal responses (diuresis and natriuresis) that are modulated to mediate osmoregulatory homeostasis are mainly controlled by the nervous system. Appropriate regulation of these parameters depends in large part on specialized osmosensitive neurons, termed osmoreceptors, which convert changes in plasma osmolality into electrical signals that ultimately modulate effector functions to achieve homeostasis. Previous work has shown that mechanosensitive cation channels expressed in osmoreceptor neurons play a key role in the process of osmosensory transduction. Although the molecular identity of these channels remains unknown, a growing body of evidence, reviewed here, indicates that members of the transient receptor potential vanilloid family of ion channels may contribute to osmosensory transduction and to homeostatic responses implicated in the control of water balance.
机译:全身渗透调节是一个综合的生理过程,通过该过程,水分摄入和排泄与盐分摄入和排泄不断地保持平衡,以使细胞外液的重量克分子渗透压浓度保持在最佳“设定点”值附近。调节以介导渗透调节性稳态的行为(即口渴和食欲不振)和肾反应(利尿和利尿)主要受神经系统控制。这些参数的适当调节在很大程度上取决于称为渗透压感受器的特定渗透敏感神经元,其将血浆渗透压的变化转换为电信号,最终调节效应器功能以实现体内平衡。先前的工作表明,渗透压感受器神经元中表达的机械敏感阳离子通道在渗透传感转导过程中起关键作用。尽管这些通道的分子身份仍然未知,但本文中回顾的越来越多的证据表明,离子通道的瞬时受体电位类香草素家族的成员可能有助于渗透传感转导和涉及水平衡控制的体内稳态反应。

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