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Evidence for two transient sodium currents in the frog node of Ranvier.

机译:Ranvier的青蛙节点中存在两个瞬时钠电流的证据。

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摘要

Na current (INa) was monitored in isolated voltage-clamped frog nodes of Ranvier in order to analyse the pharmacological and kinetic properties of fast and slow phases of inactivation. Niflumic acid (0.1-10 mM) and tetrodotoxin (0.3-30 nM) did not alter fast and slow inactivation time courses but preferentially reduced the amplitude of the fast phase of inactivation. The block of both phases of inactivation by niflumic acid and tetrodotoxin was well described if one assumed that more than one molecule of drug reacted with one channel. Fast and slow currents, corresponding respectively to fast and slow phases of inactivation, reversed at different potentials, had different threshold voltages of activation and the slopes of their steady-state inactivation curves were different. The recovery from inactivation of the compound INa could be described by the sum of two exponentials (plus a delay) corresponding respectively to fast and slow currents. When calculated from INa recorded without and with niflumic acid or tetrodotoxin, the slow current activated about three times more slowly than the fast current. Large prehyperpolarizations delayed both the activation and the inactivation of the fast current but only the activation of the slow current. Lowering the temperature decreased the fast current but increased the slow current. We conclude that the inactivatable Na current of the nodal membrane is made up of two components (INa,f and INa,s) corresponding to two different and interconvertible forms of the Na channel.
机译:在孤立的Ranvier电压钳制的青蛙节点中监测Na电流(INa),以分析失活的快速和慢速阶段的药理和动力学特性。尼氟酸(0.1-10 mM)和河豚毒素(0.3-30 nM)不会改变快速灭活时间和缓慢灭活时间,但会优先降低快速灭活的幅度。如果人们认为一种以上的药物分子与一个通道反应,则可以很好地描述尼古丁酸和河豚毒素灭活两个阶段的阻滞作用。分别对应于灭活的快慢相的慢速电流和慢速电流在不同的电位下反转,具有不同的激活阈值电压,其稳态灭活曲线的斜率也不同。可以通过分别对应于快电流和慢电流的两个指数的总和(加上延迟)来描述化合物INa失活的恢复。从没有和有氟尿酸或河豚毒素的记录的INa计算,慢电流的激活速度比快电流的激活速度快三倍。大的超极化会延迟快电流的激活和失活,但只会延迟慢电流的激活。降低温度会降低快电流,但会增加慢电流。我们得出的结论是,节点膜的不可激活的Na电流由对应于Na通道的两种不同且可相互转换的形式的两个分量(INa,f和INa,s)组成。

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