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美西螈膀胱的电生理学:II. 基底外侧膜的时间依赖性电流-电压关系

Electrophysiology of Necturus urinary bladder: II. Time-dependent current-voltage relations of the basolateral membranes.

作者信息

Schultz S G, Thompson S M, Hudson R, Thomas S R, Suzuki Y

出版信息

J Membr Biol. 1984;79(3):257-69. doi: 10.1007/BF01871064.

Abstract

As reported previously (S.R. Thomas et al., J. Membrane Biol. 73:157-175, 1983) the current-voltage (I-V) relations of the Na-entry step across the apical membrane of short-circuited Necturus urinary bladder in the presence of varying mucosal Na concentrations are (i) time-independent between 20-90 msec and (ii) conform to the Goldman-Hodgkin-Katz constant field flux equation for a single cation over a wide range of voltages. In contrast, the I-V relations of the basolateral membrane under these conditions are (i) essentially linear between the steady-state, short-circuited condition and the reversal potential (Es); and (ii) are decidedly time-dependent with Es increasing and the slope conductance, gs, decreasing between 20 and 90 msec after displacing the transepithelial electrical potential difference. Evidence is presented that this time-dependence cannot be attributed entirely to the electrical capacitance of the tissue. The values of gs determined at 20 msec are linear functions of the short-circuit current, Isc, confirming the relations reported previously, which were obtained using a more indirect approach. The values of Es determined at 20 msec are significantly lower than any reasonable estimate of the electromotive force for K across the basolateral membrane, indicating that this barrier possesses a significant conductance to other ions which may exceed that to K. In addition, these values increase linearly with decreasing Isc and approach the value of the electrical potential difference across the basolateral membrane observed when Na entry across the apical membrane is blocked with amiloride or when Na is removed from the mucosal solution. A possible explanation for the time-dependence of Es and gs is offered and the implications of these findings regarding the interpretation of previous microelectrophysiologic studies of epithelia are discussed.

摘要

如先前报道(S.R. 托马斯等人,《膜生物学杂志》73:157 - 175,1983年),在不同黏膜钠浓度存在的情况下,跨短路的美西螈膀胱顶端膜的钠进入步骤的电流 - 电压(I - V)关系为:(i)在20 - 90毫秒之间与时间无关;(ii)在很宽的电压范围内符合单一阳离子的戈德曼 - 霍奇金 - 卡茨恒定场通量方程。相比之下,在这些条件下基底外侧膜的I - V关系为:(i)在稳态、短路条件和反转电位(Es)之间基本呈线性;(ii)在跨上皮电势差发生位移后20至90毫秒之间,Es明显随时间变化,斜率电导gs减小。有证据表明,这种时间依赖性不能完全归因于组织的电容。在20毫秒时测定的gs值是短路电流Isc的线性函数,证实了先前报道的关系,先前的关系是通过更间接的方法获得的。在20毫秒时测定的Es值明显低于对跨基底外侧膜的钾电动势的任何合理估计值,这表明该屏障对其他离子具有显著的电导,可能超过对钾的电导。此外,这些值随着Isc的降低而线性增加,并接近当用氨氯吡脒阻断顶端膜的钠进入或从黏膜溶液中去除钠时观察到的跨基底外侧膜的电势差值。本文提出了对Es和gs时间依赖性的一种可能解释,并讨论了这些发现对先前上皮细胞微电生理研究解释的影响。

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