Gadsby D C, Cranefield P F
Proc Natl Acad Sci U S A. 1979 Apr;76(4):1783-7. doi: 10.1073/pnas.76.4.1783.
Purkinje fibers from dog hearts may have either a "high" resting potential of about -90 mV or a "low" resting potential of about -40 mV when immersed in low-Cl(-) solution containing 4 mM K(+). Brief exposure of Purkinje fibers at the low level of resting potential to K(+)-free fluid causes further depolarization, and return to K(+)-containing solution elicits a transient hyperpolarization which reaches a peak within a few seconds and then declines within a few minutes. Repeating these changes in K(+) concentration after clamping the membrane potential at its steady resting level in K(+)-containing fluid allows the changes in net membrane current presumably underlying the depolarization and transient hyperpolarization to be measured. Net inward current is recorded when the fiber is exposed to K(+)-free solution, and a transient net outward current arises when it is returned to K(+)-containing solution. The transient net outward current reflects a temporary increase in the rate of electrogenic Na(+) extrusion caused by the rise in intracellular Na(+) concentration that occurs while the sodium pump is slowed in K(+)-free fluid. Sodium extrusion remains enhanced, presumably until the internal Na(+) concentration has been brought back to its resting level. The transient outward current is completely abolished by the cardiac steroid acetylstrophanthidin, and its amplitude is increased as the prior exposure to K(+)-free fluid is prolonged. The decay of the transient outward current and the decline in intracellular Na(+) concentration both appear to follow first-order kinetics.
当狗心脏的浦肯野纤维浸入含4 mM钾的低氯溶液中时,其静息电位可能为约 -90 mV的“高”值,或约 -40 mV的“低”值。将处于低静息电位水平的浦肯野纤维短暂暴露于无钾溶液中会导致进一步去极化,而回到含钾溶液中会引发短暂的超极化,该超极化在几秒钟内达到峰值,然后在几分钟内下降。在含钾溶液中将膜电位钳制在其稳定的静息水平后,重复这些钾浓度的变化,可以测量可能是去极化和短暂超极化基础的净膜电流变化。当纤维暴露于无钾溶液时记录到净内向电流,而当它回到含钾溶液时会出现短暂的净外向电流。短暂的净外向电流反映了由于在无钾溶液中钠泵减慢时细胞内钠浓度升高而导致的电生性钠外流速率的暂时增加。钠外流持续增强,大概直到细胞内钠浓度恢复到其静息水平。短暂外向电流被强心甾乙酰洋地黄毒苷完全消除,并且随着之前暴露于无钾溶液的时间延长,其幅度会增加。短暂外向电流的衰减和细胞内钠浓度的下降似乎都遵循一级动力学。