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紧密上皮细胞对钾离子积累的微电极研究:II. 抑制跨上皮钠离子转运对耗尽后再积累的影响。

Microelectrode study of K+ accumulation by tight epithelia: II. Effect of inhibiting transepithelial Na+ transport on reaccumulation following depletion.

作者信息

DeLong J, Civan M M

出版信息

J Membr Biol. 1983;74(2):155-64. doi: 10.1007/BF01870504.

Abstract

The effects of restoring serosal potassium to potassium-depleted toad urinary bladders have been re-examined using double-barrelled microelectrodes. The data confirm the existence of a time-lag phenomenon, a dissociation between potassium reaccumulation and restoration of short-circuit current. Returning serosal potassium stimulates an increase in intracellular potassium activity 21-26 min before any increase can be detected in short-circuit current. The reaccumulation of potassium has been further studied using split frog skin, a far more suitable preparation for electrophysiologic study than toad bladder. Under baseline short-circuited conditions, potassium is accumulated against an electrochemical gradient of 22 +/- 4 mV. Reaccumulation of potassium by potassium-depleted tissues can be blocked by inhibiting the Na,K-exchange pump with high concentrations of ouabain. On the other hand, blocking apical sodium entry by the addition of 10(-4) M amiloride to the outer bathing medium does not interfere with reaccumulation of potassium. The data support the concept that the time-lag phenomenon of toad bladder reflects stimulation of potassium reaccumulation by the sodium pump in exchange for the extrusion of excess cell sodium collected during the period of potassium depletion. This reaccumulation of potassium can proceed before the entry of significant added amounts of sodium across the apical plasma membrane.

摘要

使用双管微电极重新研究了将浆膜钾恢复到缺钾蟾蜍膀胱中的效果。数据证实了存在时间滞后现象,即钾的重新积累与短路电流恢复之间的分离。恢复浆膜钾会在短路电流出现任何增加之前21 - 26分钟刺激细胞内钾活性增加。使用分离的蛙皮对钾的重新积累进行了进一步研究,蛙皮是一种比蟾蜍膀胱更适合电生理研究的标本。在基线短路条件下,钾逆着22±4 mV的电化学梯度积累。高浓度哇巴因抑制钠钾交换泵可阻断缺钾组织对钾的重新积累。另一方面,在外部浴液中添加10(-4) M氨氯地平阻断顶端钠进入并不干扰钾的重新积累。数据支持这样的概念,即蟾蜍膀胱的时间滞后现象反映了钠泵刺激钾的重新积累,以交换在缺钾期间积累的过量细胞内钠的排出。在大量额外的钠通过顶端质膜进入之前,钾的这种重新积累就可以进行。

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