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鱿鱼巨大轴突中钠失活的时间进程。

The time course of sodium inactivation in squid giant axons.

作者信息

Gillespie J I, Meves H

出版信息

J Physiol. 1980 Feb;299:289-307. doi: 10.1113/jphysiol.1980.sp013125.

Abstract
  1. The time course of Na inactivation was studied in intact and perfused squid giant axons under voltage-clamp conditions. 2. The pulse programme consisted of a conditioning pulse of varying duration, followed after an interval of 3-8 msec by test pulse. The measurements were done in sea water with 1/3 or 1/5 of the normal Na concentration. In most experiments a 100 microseconds conditioning pulse was sufficient to reduce INa peak elicited by the test pulse. In some experiments even a 50 microseconds conditioning pulse produced a clear reversible decrease of INa peak. We conclude that the upper limit for an initial delay in the development of inactivation is 50-100 microseconds; this applies to temperatures between 0 and 13 degrees C and membrane potentials between -40 and 15 mV. The decrease of INa peak with increasing duration of the conditioning pulse was consistent with an exponential decay starting at 50 or 100 microseconds. 3. With large Na currents in full Na sea water the time course of inactivation became sigmoid. This is attributed to a long-lasting tail of inward current which follows the conditioning pulse and produces a voltage drop across the series resistance. 4. If the conditioning pulse and the test pulse were not separated by an interval, INa peak showed a sigmoid dependence on the duration of the conditioning pulse. This phenomenon is predicted by the equations of Hodgkin & Huxley (1952) as first pointed out by Kniffki, Siemen & Vogel (1978). With sufficiently strong conditioning pulses INa peak could even increase in size.
摘要
  1. 在电压钳制条件下,研究了完整的和经灌注的枪乌贼巨大轴突中钠失活的时间进程。2. 脉冲程序包括一个持续时间可变的条件脉冲,在3 - 8毫秒的间隔后跟随一个测试脉冲。测量是在正常钠浓度的1/3或1/5的海水中进行的。在大多数实验中,一个100微秒的条件脉冲足以降低测试脉冲引发的钠电流峰值。在一些实验中,即使是一个50微秒的条件脉冲也会使钠电流峰值产生明显的可逆下降。我们得出结论,失活发展初始延迟的上限是50 - 100微秒;这适用于0至13摄氏度的温度以及 - 40至15毫伏的膜电位。随着条件脉冲持续时间的增加,钠电流峰值的下降与从50或100微秒开始的指数衰减一致。3. 在全钠海水中有大的钠电流时,失活的时间进程呈S形。这归因于跟随条件脉冲的内向电流的持久尾电流,并在串联电阻上产生电压降。4. 如果条件脉冲和测试脉冲没有被一个间隔分开,钠电流峰值对条件脉冲的持续时间呈S形依赖。如Kniffki、Siemen和Vogel(1978)首次指出的,这种现象由Hodgkin和Huxley(1952)的方程预测。使用足够强的条件脉冲时,钠电流峰值甚至可能增大。

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