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离子跨胆囊上皮的转运。

Ion transport across the gallbladder epithelium.

作者信息

Meyer G, Guizzardi F, Rodighiero S, Manfredi R, Saino S, Sironi C, Garavaglia M L, Bazzini C, Bottà G, Portincasa P, Calamita G, Paulmichl M

机构信息

Dipartimento di Scienze Biomolecolari e Biotecnologie, Università degli Studi di Milano, Italy.

出版信息

Curr Drug Targets Immune Endocr Metabol Disord. 2005 Jun;5(2):143-51. doi: 10.2174/1568008054064805.

Abstract

The function of the gallbladder is not only to store bile, but also to concentrate it during the interdigestive phase by means of salt-dependent water reabsorption. On the contrary, secretions of water and salt take place during the digestive phase. Dysregulation of ion absorption or secretion are common in many gallbladder diseases, such as colelithiasis. Transepithelial absorptions are determined by the Na+/K+ pump on the basolateral membrane, and by several apical membrane Na(+)-coupled transporters. Among these, some isoforms of Na+/H+ and Cl-/HCO3(-) exchangers have been studied. The presence of a Na(+)-Cl(-) simport has been molecularly and functionally characterized in some animal species. The ion transepithelial secretion is mainly dependent on an apical chloride transport attributable to a CFTR-like cAMP-activated channel with high permeability to HCO3(-). The apical membrane electrical potential is one of the factors influencing anion secretion and is maintained by the activity of cAMP-dependent K+ channels. The regulation of the activity of these channels is complex, because of their sensitivity to voltage, and to intracellular calcium and pH. The coordinated interplay underlying the regulation of transporters and channels needs to be clarified yet, as well as the interactions between transporters, channels and aquaporins.

摘要

胆囊的功能不仅是储存胆汁,还在于在消化间期通过依赖盐的水重吸收来浓缩胆汁。相反,在消化期会发生水和盐的分泌。离子吸收或分泌的失调在许多胆囊疾病中很常见,如胆石症。跨上皮吸收由基底外侧膜上的Na+/K+泵以及几种顶端膜Na(+)-偶联转运体决定。其中,Na+/H+和Cl-/HCO3(-)交换体的一些亚型已得到研究。在一些动物物种中,Na(+)-Cl(-)同向转运体的存在已在分子和功能上得到表征。离子跨上皮分泌主要依赖于顶端氯离子转运,这归因于一种对HCO3(-)具有高通透性的CFTR样cAMP激活通道。顶端膜电位是影响阴离子分泌的因素之一,由cAMP依赖性K+通道的活性维持。这些通道活性的调节很复杂,因为它们对电压、细胞内钙和pH敏感。转运体和通道调节背后的协同相互作用以及转运体、通道和水通道蛋白之间的相互作用仍有待阐明。

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