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参与结肠上皮电解质吸收、阴离子分泌和细胞内稳态的基底外侧离子转运体。

Basolateral ion transporters involved in colonic epithelial electrolyte absorption, anion secretion and cellular homeostasis.

机构信息

Department of Gastroenterology, Hepatology, and Endocrinology, Hannover Medical School, Germany.

出版信息

Acta Physiol (Oxf). 2011 Jan;201(1):33-46. doi: 10.1111/j.1748-1716.2010.02153.x.

Abstract

Electrolyte transporters located in the basolateral membrane of the colonic epithelium are increasingly appreciated as elaborately regulated components of specific transport functions and cellular homeostasis: During electrolyte absorption, Na(+) /K(+) ATPase, Cl⁻ conductance, Cl⁻/HCO₃⁻ exchange, K(+) /Cl⁻ cotransport and K(+) channels are candidates for basolateral Na(+) , Cl⁻ and K(+) extrusion. The process of colonic anion secretion involves basolateral Na(+) /K(+) /2Cl⁻ , and probably also Na(+) /HCO₃⁻ cotransport, as well as Na(+) /K(+) ATPase and K(+) channels to supply substrate, stabilize the membrane potential and generate driving force respectively. Together with a multitude of additional transport systems, Na(+) /H(+) exchange and Na(+) /HCO₃⁻ cotransport have been implicated in colonocyte pH(i) and volume homeostasis. The purpose of this article is to summarize recently gathered information on the molecular identity, function and regulation of the involved basolateral transport systems in native tissue. Furthermore, we discuss how these findings can help to integrate these systems into the transport function and the cellular homoeostasis of colonic epithelial cells. Finally, disturbances of basolateral electrolyte transport during disease states such as mucosal inflammation will be reviewed.

摘要

位于结肠上皮基底外侧膜的电解质转运体,作为特定转运功能和细胞内稳态的精细调控组成部分,正日益受到重视:在电解质吸收过程中,Na(+) /K(+) ATP 酶、Cl⁻电导、Cl⁻/HCO₃⁻交换、K(+) /Cl⁻共转运和 K(+) 通道是基底外侧 Na(+)、Cl⁻和 K(+)外排的候选者。结肠阴离子分泌的过程涉及基底外侧 Na(+) /K(+) /2Cl⁻,可能还涉及 Na(+) /HCO₃⁻共转运,以及 Na(+) /K(+) ATP 酶和 K(+) 通道分别提供底物、稳定膜电位和产生驱动力。Na(+) /H(+) 交换和 Na(+) /HCO₃⁻共转运与许多其他转运系统一起,参与了肠细胞 pH(i)和体积稳态的调节。本文的目的是总结最近在天然组织中涉及基底外侧转运系统的分子特性、功能和调节方面的信息。此外,我们还讨论了这些发现如何有助于将这些系统整合到结肠上皮细胞的转运功能和细胞内稳态中。最后,还将回顾疾病状态下(如黏膜炎症)基底外侧电解质转运的紊乱。

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