Gadsby D C, Cranefield P F
J Gen Physiol. 1979 Jun;73(6):819-37. doi: 10.1085/jgp.73.6.819.
Thin canine cardiac Purkinje fibers in a fast flow chamber were exposed to K-free fluid for 15 s to 6 min to initiate "sodium loading," then returned to K-containing fluid to stimulate the sodium pump. The electrophysiological effects of enhanced pump activity may result from extracellular K depletion caused by enhanced cellular uptake of K or from an increase in the current generated as a result of unequal pumped movements of Na and K, or from both. The effects of pump stimulation were therefore studied under three conditions in which lowering the external K concentration ([K]0) causes changes opposite to those expected from an increase in pump current. First, the resting potential of Purkinje fibers may have either a "high" value of a "low" (less negative) value: at the low level of potential, experimental reduction of [K]0 causes depolarization, whereas an increase in pump current should cause hyperpolarization. Second, in regularly stimulated Purkinje fibers, lowering [K]0 prolongs the action potential, whereas an increase in outward pump current should shorten it. Finally, lowering [K]0 enhances spontaneous "pacemaker" activity in Purkinje fibers, whereas an increase in outward pump current should reduce or abolish spontaneous activity. Under all three conditions, we find that the effects of temporary stimulation of the sodium pump are those expected from a transient increase in outward pump current, not those expected from K depletion.
将细的犬心脏浦肯野纤维置于快速流动腔中,暴露于无钾溶液15秒至6分钟以引发“钠负荷”,然后再回到含钾溶液中以刺激钠泵。增强的泵活性的电生理效应可能源于细胞对钾摄取增加导致的细胞外钾耗竭,或源于钠和钾泵出运动不均等导致的电流增加,或两者皆有。因此,在三种条件下研究了泵刺激的效应,在这三种条件下降低细胞外钾浓度([K]0)会导致与泵电流增加预期相反的变化。首先,浦肯野纤维的静息电位可能具有“高”值或“低”(较不负值)值:在低电位水平时,实验性降低[K]0会导致去极化,而泵电流增加应导致超极化。其次,在定期刺激的浦肯野纤维中,降低[K]0会延长动作电位,而外向泵电流增加应使其缩短。最后,降低[K]0会增强浦肯野纤维中的自发“起搏”活动,而外向泵电流增加应减少或消除自发活动。在所有这三种条件下,我们发现临时刺激钠泵的效应是外向泵电流短暂增加所预期的效应,而非钾耗竭所预期的效应。