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Slow recovery of sodium current and gating current from inactivation.

机译:灭活后钠电流和门控电流的恢复缓慢。

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摘要

1. Asymmetrical displacement currents ('gating currents') and Na currents have been recorded in intracellularly perfused squid giant axons with the voltage-clamp method. Inactivation of the currents by a long-lasting depolarization to -30 mV and subsequent removal of inactivation have been studied at temperatures of 0-5-3 degrees and 8-9 degrees C. 2. The asymmetrical displacement current, recorded with the divided pulse procedure, was markedly reduced by a 1-5-800 msec depolarization to -30 mV; a 3 min depolarization led to almost complete blockage. 3. Recovery of the asymmetrical displacement current from a 3 min depolarization to -30 mV was slow (20-40% recovery after 50-800 msec at -70 mV and 8-9 degrees C); full recovery from a long-lasting depolarization took several minutes. 4. Recovery of the Na current followed a similar time course (20% recovery after 50-800 msec at -70 mV and 8-9 degrees C); the time constant of full recovery was 2-3-5 min. 5. Slow recovery was also demonstrated by recording the displacement currents associated with single depolarizing pulses. 6. The results are consistent with the idea that the asymmetrical displacement current is related to the function of the Na gates.
机译:1.用电压钳方法在细胞内灌注的鱿鱼巨轴突中记录了不对称位移电流(“门控电流”)和Na电流。通过在0-5-3摄氏度和8-9摄氏度的温度下研究了通过长期去极化至-30 mV使电流失活以及随后消除失活的方法。2.用分频脉冲记录的不对称位移电流程序通过1-5-800毫秒去极化显着降低至-30毫伏; 3分钟去极化导致几乎完全阻塞。 3.非对称位移电流从3分钟去极化恢复到-30 mV的速度很慢(在-70 mV和8-9摄氏度下50-800毫秒后恢复20-40%);从持久的去极化中完全恢复需要几分钟。 4. Na电流的恢复遵循类似的时间过程(在-70 mV和8-9摄氏度下50-800毫秒后,Na电流恢复20%);完全恢复的时间常数为2-3-5分钟。 5.还通过记录与单个去极化脉冲相关的位移电流来证明恢复缓慢。 6.结果与非对称位移电流与Na门的功能有关的想法是一致的。

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