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哺乳动物近端肾小管中的氯离子转运

Chloride transport in the mammalian proximal tubule.

作者信息

Schild L, Giebisch G, Karniski L, Aronson P S

出版信息

Pflugers Arch. 1986;407 Suppl 2:S156-9. doi: 10.1007/BF00584945.

Abstract

Possible transport mechanisms of chloride across the mammalian proximal tubule include both active and passive components and, accordingly, transcellular and intercellular transport routes. Experiments are described in which the possibility of electroneutral anion exchange across the apical cell membrane of proximal tubule cells is evaluated. Experiments in brushborder vesicles of the rabbit kidney cortex have shown the existence of a chloride/formate exchange process. In addition, evidence is presented that formic acid is crossing the brushborder membrane of rabbit renal cortex by non-ionic diffusion. A transport schema is developed in which formate/chloride exchange and sodium/hydrogen exchange in parallel with recycling of formic acid by non-ionic diffusion can account for the electroneutral transport of sodium chloride. Perfusion studies in isolated rabbit straight and convoluted tubules show significant transport stimulation by submillimolar concentrations of formate. Thus, chloride/formate exchange is a possible mechanism for active, transcellular chloride movement across the mammalian proximal tubule.

摘要

氯离子跨哺乳动物近端小管的可能转运机制包括主动和被动成分,相应地也包括跨细胞和细胞间转运途径。本文描述了评估近端小管细胞顶端细胞膜上是否存在电中性阴离子交换的实验。兔肾皮质刷状缘小泡实验表明存在氯离子/甲酸根交换过程。此外,有证据表明甲酸通过非离子扩散穿过兔肾皮质的刷状缘膜。我们提出了一种转运模式,其中甲酸根/氯离子交换和钠/氢交换与甲酸通过非离子扩散的循环同时发生,可以解释氯化钠的电中性转运。对分离的兔直小管和曲小管进行的灌注研究表明,亚毫摩尔浓度的甲酸可显著刺激转运。因此,氯离子/甲酸根交换是氯离子跨哺乳动物近端小管进行主动跨细胞转运的一种可能机制。

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