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美西螈胃窦黏膜胃表面上皮基底外侧氯离子转运的特征

Characteristics of basolateral Cl- transport by gastric surface epithelium in Necturus antral mucosa.

作者信息

Soybel D I, Davis M B, Cheung L Y

机构信息

Department of Surgery, Yale University School of Medicine, West Haven, Connecticut.

出版信息

Am J Physiol. 1993 May;264(5 Pt 1):G910-20. doi: 10.1152/ajpgi.1993.264.5.G910.

Abstract

Conventional and ion-selective microelectrodes were used to characterize transport of Cl- across the basolateral cell membranes of gastric surface epithelium in isolated preparations of gastric antrum of Necturus. Conventional, voltage-sensing electrodes were used to evaluate changes in membrane potentials and resistances during removal of Cl- from the nutrient perfusate. Liquid ion exchanger Cl(-)-selective microelectrodes were constructed and validated to measure intracellular Cl- activity (aiCl). Our data indicate that 1) aiCl (range 12-25 mM) is close to that predicted if Cl- is distributed across the cell membranes by electrochemical equilibrium, 2) aiCl is not influenced by changes in luminal Cl- content but is susceptible to changes in nutrient Cl- content, 3) Cl- conductances cannot be detected in the basolateral membrane and changes in membrane potentials do not influence aiCl, and 4) Cl- accumulation across the basolateral membrane depends on Na+ and the level of [K+] in the nutrient solution. Inhibition of K(+)-dependent Cl- accumulation, in the absence of nutrient Na+ or in the presence of the inhibitor bumetanide, was demonstrated. These findings suggest that basolateral Na(+)-K(+)-Cl- cotransport is important in regulating cell Cl- levels in surface cells of the gastric antrum in Necturus.

摘要

使用传统微电极和离子选择性微电极来表征在美西螈胃窦分离制剂中氯离子跨胃表面上皮基底外侧细胞膜的转运。使用传统的电压感应电极来评估在从营养灌流液中去除氯离子期间膜电位和电阻的变化。构建并验证了液体离子交换剂氯离子选择性微电极,以测量细胞内氯离子活性(aiCl)。我们的数据表明:1)aiCl(范围为12 - 25 mM)接近如果氯离子通过电化学平衡分布在细胞膜上所预测的值;2)aiCl不受管腔氯离子含量变化的影响,但易受营养物氯离子含量变化的影响;3)在基底外侧膜中未检测到氯离子电导,并且膜电位的变化不影响aiCl;4)氯离子跨基底外侧膜的积累取决于钠离子和营养液中钾离子的水平。在没有营养物钠离子或存在抑制剂布美他尼的情况下,证实了对钾离子依赖性氯离子积累的抑制作用。这些发现表明,基底外侧钠钾氯共转运在调节美西螈胃窦表面细胞中的细胞氯离子水平方面很重要。

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