首页> 美国卫生研究院文献>The Journal of General Physiology >Tracer and Nontracer Potassium Fluxes in Squid Giant Axons and the Effects of Changes in External Potassium Concentration and Membrane Potential
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Tracer and Nontracer Potassium Fluxes in Squid Giant Axons and the Effects of Changes in External Potassium Concentration and Membrane Potential

机译:鱿鱼巨型轴突中的示踪和非示踪钾通量以及外部钾浓度和膜电位变化的影响

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摘要

The efflux of labeled and unlabeled potassium ions from the squid giant axon has been measured under a variety of experimental conditions. Axons soaked in sea water containing 42K ions lost radioactivity when placed in inactive sea water according to kinetics which indicate the presence of at least two cellular compartments. A rapidly equilibrating superficial compartment, probably the Schwann cell, was observed to elevate the specific activity of 42K lost from such axons to K-free sea water for a period of hours. The extra radioactive potassium loss from such axons during stimulation, however, was shown to have a specific activity identical within error to that measured in the axoplasm at the end of the experiment. The same was shown for the extra potassium loss occurring during passage of a steady depolarizing current. Axons placed in sea water with an elevated potassium ion concentration (50 mM) showed an increased potassium efflux that was in general agreement with the accompanying increase in membrane conductance. The efflux of potassium ions observed in 50 mM K sea water at different membrane potentials did not support the theory that the potassium fluxes obey the independence principle.
机译:已经在各种实验条件下测量了鱿鱼巨轴突标记和未标记钾离子的流出。浸泡在含有 42 K离子的海水中的轴突根据动力学被置于非活性海水中时,放射性消失,这表明存在至少两个细胞室。在几个小时内,观察到快速平衡的表层室(可能是雪旺氏细胞)可将这种轴突失去的 42 K的比活性提高到无K的海水中。然而,在刺激过程中,这种轴突产生的额外放射性钾损失具有与实验结束时在腋质中测得的比活性相同的误差。对于稳定的去极化电流通过期间发生的额外钾损失也显示出相同的结果。放置在海水中的钾离子浓度(50 mM)升高的轴突显示出钾离子流量增加,这与随之而来的膜电导的增加总体上是一致的。在50 mM K海水中不同膜电位下观察到的钾离子外流不支持钾通量遵守独立性原理的理论。

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