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钡离子对离体蛙皮钠钾通透性的影响。

Ba2+-induced changes in the Na+- and K+-permeability of the isolated frog skin.

作者信息

Nielson R

出版信息

Acta Physiol Scand. 1985 May;124(1):61-70. doi: 10.1111/j.1748-1716.1985.tb07632.x.

DOI:10.1111/j.1748-1716.1985.tb07632.x
PMID:2409746
Abstract

Addition of the K+-channel blocking agent Ba2+ to the basolateral solution (in a concentration which is assumed to block the K+-flux via the K+-channels completely) resulted initially in a two-thirds reduction in the short-circuit current (SCC), followed by a complete recovery of the SCC. To examine the reason for this recovery, experiments were carried out which made it possible to calculate the Na+-permeability of the apical membrane (PaNa) and the K+-permeability of the basolateral membrane (PbK). The presence of Ba2+ had no significant effect on the cell volume and the cellular Na+- and K+-concentration. Addition of Ba2+ resulted in a depolarization of the intracellular potential (VSCC) from a control value of -76.3 +/- 2.8 mV to -15.1 +/- 1.7 mV. Although a complete recovery in the SCC was observed, VSCC did not recover. The K+-flux across the basolateral membrane was estimated from washout experiments. The washout of 42K+ (the K+-efflux) could be described by a single exponential component with a half time of 30-70 min. The addition of Ba2+ during the washout resulted in a transient decrease in 42K+-efflux from the epithelium. From VSCC and the cellular K+ and Na+-concentration and the coupling ratio of the Na-K pump, it was found that Na+-permeability of the apical membrane was 6.5 X 10(-7) cm X s-1 before the addition of Ba2+ and 1.7 X 10(-6) cm X s-1 when the SCC had recovered after the addition of Ba2+ and PbK changed from 8.8 X 10(-6) cm X s-1 to 1.5 X 10(-6) cm X s-1. Thus, the observed recovery in SCC was due to a considerable increase in Na+-permeability of the apical membrane and the presence or appearance of a small Ba2+-insensitive K+-permeability in the basolateral membrane.

摘要

向基底外侧溶液中添加钾通道阻滞剂 Ba2+(浓度假定可完全阻断通过钾通道的钾通量),最初导致短路电流(SCC)降低三分之二,随后 SCC 完全恢复。为研究这种恢复的原因,进行了实验,从而能够计算顶端膜的钠通透性(PaNa)和基底外侧膜的钾通透性(PbK)。Ba2+ 的存在对细胞体积以及细胞内钠和钾浓度无显著影响。添加 Ba2+ 导致细胞内电位(VSCC)从 -76.3 ± 2.8 mV 的对照值去极化至 -15.1 ± 1.7 mV。尽管观察到 SCC 完全恢复,但 VSCC 并未恢复。通过洗脱实验估算了跨基底外侧膜的钾通量。42K+ 的洗脱(钾外流)可用单一指数成分描述,半衰期为 30 - 70 分钟。洗脱过程中添加 Ba2+ 导致上皮细胞 42K+ 外流短暂减少。根据 VSCC、细胞内钾和钠浓度以及钠钾泵的偶联比率,发现添加 Ba2+ 前顶端膜的钠通透性为 6.5×10(-7) cm×s-1,添加 Ba2+ 后 SCC 恢复时为 1.7×10(-6) cm×s-1,而 PbK 从 8.8×10(-6) cm×s-1 变为 1.5×10(-6) cm×s-1。因此,观察到的 SCC 恢复是由于顶端膜钠通透性显著增加以及基底外侧膜中存在或出现了对 Ba2+ 不敏感的小钾通透性。

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