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膜动作电位期间钠和钾电导的变化。

Sodium and potassium conductance changes during a membrane action potential.

作者信息

Bezanilla F, Rojas E, Taylor R E

出版信息

J Physiol. 1970 Dec;211(3):729-51. doi: 10.1113/jphysiol.1970.sp009301.

Abstract
  1. A method for turning a membrane potential control system on and off in less than 10 musec is described. This method was used to record membrane currents in perfused giant axons from Dosidicus gigas and Loligo forbesi after turning on the voltage clamp system at various times during the course of a membrane action potential.2. The membrane current measured just after the capacity charging transient was found to have an almost linear relation to the controlled membrane potential.3. The total membrane conductance taken from these current-voltage curves was found to have a time course during the action potential similar to that found by Cole & Curtis (1939).4. The instantaneous current voltage curves were linear enough to make it possible to obtain a good estimate of the individual sodium and potassium channel conductances, either algebraically or by clamping to the sodium, or potassium, reversal potentials. Good general agreement was obtained with the predictions of the Hodgkin-Huxley equations.5. We consider these results to constitute the first direct experimental demonstration of the conductance changes to sodium and potassium during the course of an action potential.
摘要
  1. 本文描述了一种在不到10微秒的时间内开启和关闭膜电位控制系统的方法。该方法用于在膜动作电位过程中的不同时间开启电压钳系统后,记录来自茎柔鱼和福布斯氏枪乌贼的灌流巨轴突中的膜电流。

  2. 发现在电容充电瞬变之后立即测量的膜电流与受控膜电位几乎呈线性关系。

  3. 从这些电流-电压曲线得出的总膜电导在动作电位期间的时间进程与科尔和柯蒂斯(1939年)发现的相似。

  4. 瞬时电流-电压曲线足够线性,以至于可以通过代数方法或通过钳制到钠或钾的反转电位来获得对单个钠和钾通道电导的良好估计。与霍奇金-赫胥黎方程的预测结果总体上吻合良好。

  5. 我们认为这些结果构成了动作电位过程中钠和钾电导变化的首次直接实验证明。

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