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对照及糖皮质激素刺激的兔降结肠中钠电流、通透性和钠活性之间的关系

Relationships among sodium current, permeability, and Na activities in control and glucocorticoid-stimulated rabbit descending colon.

作者信息

Thompson S M, Sellin J H

出版信息

J Membr Biol. 1986;92(2):121-34. doi: 10.1007/BF01870702.

Abstract

Effects of a potent synthetic glucocorticoid, methylprednisolone (MP), on transepithelial Na transport were examined in rabbit descending colon. Current-voltage (I-V) relations of the amiloride-sensitive apical Na entry pathway were measured in colonic tissues of control and MP-treated (40 mg im for 2 days) animals. Tissues were bathed mucosally by solutions of various Na activities, (Na)m, ranging from 6.2 to 75.6 mM, and serosally by a high K solution. These I-V relations conformed to the "constant field" flux equation permitting determination of the permeability of the apical membrane to Na, PmNa, and the intracellular Na activity, (Na)c. The following empirical relations were observed for both control and MP-treated tissues: Na transport increases hyperbolically with increasing (Na)m obeying simple Michaelis-Mentin kinetics; PmNa decreased hyperbolically with increasing (Na)m, but was unrelated to individual variations in (Na)c; (Na)c increased hyperbolically with (Na)m; both spontaneous and steroid-stimulated variations in Na entry rate could be attributed entirely to parallel variations in PmNa at each mucosal Na activity. Comparison of these empirical, kinetic relations between control and MP-treated tissues revealed: maximal Na current and PmNa were greater in MP tissues, but the (Na)m's at which current and PmNa were half-maximal were markedly reduced; (Na)c was significantly increased in MP tissues at each (Na)m while the (Na)m at half-maximal (Na)c was unchanged. These results provide direct evidence that glucocorticoids cause marked stimulation of Na absorption across rabbit colon primarily by increasing the Na permeability of the apical membrane. While the mechanism for the increased permeability remains to be determined, the altered relation between PmNa and (Na)m suggests possible differences in the conformation or environment of the Na channel in MP-treated tissues.

摘要

在兔降结肠中研究了一种强效合成糖皮质激素甲泼尼龙(MP)对跨上皮钠转运的影响。在对照动物和经MP处理(肌肉注射40mg,持续2天)的动物的结肠组织中,测量了对阿米洛利敏感的顶端钠进入途径的电流-电压(I-V)关系。用不同钠活性(Na)m的溶液(范围为6.2至75.6mM)对组织进行黏膜浴,并用高钾溶液进行浆膜浴。这些I-V关系符合“恒定场”通量方程,从而可以确定顶端膜对钠的通透性PmNa和细胞内钠活性(Na)c。在对照组织和经MP处理的组织中均观察到以下经验关系:钠转运随(Na)m的增加呈双曲线增加,遵循简单的米氏动力学;PmNa随(Na)m的增加呈双曲线下降,但与(Na)c的个体差异无关;(Na)c随(Na)m呈双曲线增加;在每个黏膜钠活性下,钠进入速率的自发变化和类固醇刺激的变化都完全归因于PmNa的平行变化。对照组织和经MP处理的组织之间这些经验动力学关系的比较显示:MP组织中的最大钠电流和PmNa更大,但电流和PmNa为最大值一半时的(Na)m明显降低;在每个(Na)m下,MP组织中的(Na)c显著增加,而(Na)c为最大值一半时的(Na)m不变。这些结果提供了直接证据,表明糖皮质激素主要通过增加顶端膜对钠的通透性来显著刺激兔结肠对钠的吸收。虽然通透性增加的机制尚待确定,但PmNa与(Na)m之间关系的改变表明经MP处理的组织中钠通道的构象或环境可能存在差异。

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