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暴露于无钠溶液中的犬心脏浦肯野纤维的两种静息电位水平。

Two levels of resting potential in canine cardiac Purkinje fibers exposed to sodium-free solutions.

作者信息

Wiggins J R, Cranefield P F

出版信息

Circ Res. 1976 Oct;39(4):466-74. doi: 10.1161/01.res.39.4.466.

Abstract

Canine cardiac Purkinje fibers exposed to sodium-free solutions containing 16 mM CaCl2, 20 mM tetraethylammonium chloride, 108 mM tetramethylammonium chloride, and 2.7 mM KCl may be quiescent at a resting potential of either -50 mV or -90 mV. The membrane potential of these fibers can be switched from -50 mV to -90 mV by a hyperpolarizing current pulse and from -90 mV to -50 mV by a depolarizing current pulse. The transition from -50 mV to -90 mV depends on a voltage-dependent increase in potassium conductance, that conductance being low at -50 mV and high at -90 mV. A reduction in potassium conductance causes the fiber to depolarize from -90 mV to -50 mV because of the presence of an inward current which apparently is carried mainly by Ca. Fibers that show a high resting potential cannot be excited except by depolarizing stimuli strong enough to move the membrane from -90 mV to a threshold potential of about -40 mV. Fibers that show a low resting potential are more easily excited and may show rhythmic activity sustained by afterpotentials that appear only if the low membrane potential is accompanied by a low potassium conductance. Slow changes in membrane potential also are seen; these changes may result from movements of chloride.

摘要

暴露于含有16 mM氯化钙、20 mM四乙氯化铵、108 mM四甲氯化铵和2.7 mM氯化钾的无钠溶液中的犬心脏浦肯野纤维,在 -50 mV或 -90 mV的静息电位下可能处于静止状态。这些纤维的膜电位可通过超极化电流脉冲从 -50 mV切换到 -90 mV,并通过去极化电流脉冲从 -90 mV切换到 -50 mV。从 -50 mV到 -90 mV的转变取决于钾电导的电压依赖性增加,该电导在 -50 mV时较低,在 -90 mV时较高。钾电导的降低会导致纤维从 -90 mV去极化到 -50 mV,这是因为存在一种内向电流,该电流显然主要由钙携带。表现出高静息电位的纤维除非受到足够强的去极化刺激,使膜从 -90 mV移动到约 -40 mV的阈电位,否则无法被兴奋。表现出低静息电位的纤维更容易被兴奋,并且可能表现出节律性活动,这种活动由后电位维持,而后电位仅在低膜电位伴随着低钾电导时才会出现。膜电位的缓慢变化也可见;这些变化可能是由氯离子的移动引起的。

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