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上皮组织的钠耦联氯转运

Sodium-coupled chloride transport by epithelial tissues.

作者信息

Frizzell R A, Field M, Schultz S G

出版信息

Am J Physiol. 1979 Jan;236(1):F1-8. doi: 10.1152/ajprenal.1979.236.1.F1.

Abstract

There is compelling evidence that active Cl absorption by a variety of epithelia, widely distributed throughout the animal kingdom, is the result of an electrically neutral Na-coupled transport process at the luminal membrane and that the energy for transcellular Cl movement is derived from the Na gradient across that barrier. These co-transport processes are found predominantly in "leaky" or "moderately leaky" epithelia and permit these tissues to absorb Na and Cl with high degrees of efficacy. In addition, there is a growing body of evidence that cyclic AMP and Ca-induced electrogenic Cl secretion by a wide variety of epithelia may involve electrically neutral, Na-coupled Cl entry across the contraluminal membrane and that the energy for these secretory processes is derived from the Na-gradient across that barrier. A model for electrogenic Cl secretion that accounts for the available data is presented.

摘要

有确凿证据表明,广泛分布于动物界的多种上皮细胞的主动氯吸收,是由于腔面膜上的电中性钠耦联转运过程,且跨细胞氯移动的能量来自跨该屏障的钠梯度。这些共转运过程主要存在于“渗漏性”或“中等渗漏性”上皮细胞中,使这些组织能够高效吸收钠和氯。此外,越来越多的证据表明,多种上皮细胞中由环磷酸腺苷(cAMP)和钙诱导的电生性氯分泌,可能涉及通过对腔面膜的电中性、钠耦联氯进入,且这些分泌过程的能量来自跨该屏障的钠梯度。本文提出了一个解释现有数据的电生性氯分泌模型。

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