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与普鲁卡因处理的小龙虾腹肌纤维动作电位相关的通透性变化。

Permeability changes associated with the action potential in procaine-treated crayfish abdominal muscle fibers.

作者信息

Takeda K

出版信息

J Gen Physiol. 1967 Mar;50(4):1049-74. doi: 10.1085/jgp.50.4.1049.

Abstract

Permeability changes associated with prolonged action potentials have been analyzed in procaine-treated crayfish abdominal muscle fibers. The effect of external Ca indicates that the increase in membrane conductance observed during the rising phase of the action potential is primarily due to a permeability increase for Ca. A remnant of the permeability increase may cause the succeeding plateau as shown by its high conductance and by the effect of low Mn. A delayed increase in conductance precedes the termination of the plateau phase. This is due to a delayed increase in permeability, probably for K, that is observed when depolarizing electrogenesis is eliminated. High external Ca reduces the action potential duration, the falling phase starting at a higher depolarization. These changes may be related to an earlier onset of the delayed increase in permeability, induced by a larger inside positivity in the presence of higher Ca. No "anomalous rectification" is seen in early or late I-V curves for small depolarizations. Ba may replace Ca in its role in depolarizing electrogenesis, and the first action potential induced in Ba saline has a large overshoot and a long duration. In higher Ba salines, action potentials are greatly prolonged. Long term soaking in Rb-containing or K-free saline also augments and prolongs the action potential. These changes are assumed to be related to depression of the K permeability of the membrane.

摘要

在经普鲁卡因处理的小龙虾腹部肌肉纤维中,已对与延长动作电位相关的通透性变化进行了分析。细胞外钙的作用表明,在动作电位上升阶段观察到的膜电导增加主要是由于钙的通透性增加。通透性增加的残余部分可能导致随后的平台期,这表现为其高电导以及低锰的作用。在平台期结束之前,电导会出现延迟增加。这是由于通透性延迟增加,可能是钾的通透性增加,这种情况在消除去极化电活动时可以观察到。高细胞外钙会缩短动作电位持续时间,下降阶段从更高的去极化水平开始。这些变化可能与延迟的通透性增加更早出现有关,这是由更高钙存在时更大的内向正电位所诱导的。对于小的去极化,在早期或晚期的电流-电压曲线中未观察到“反常整流”。钡可以替代钙在去极化电活动中的作用,并且在钡盐溶液中诱导的第一个动作电位具有较大的超射和较长的持续时间。在更高浓度的钡盐溶液中,动作电位会大大延长。长期浸泡在含铷或无钾的盐溶液中也会增强并延长动作电位。这些变化被认为与膜钾通透性的降低有关。

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