Yang J, Zorumski C F
Department of Anesthesiology, Washington University School of Medicine, St. Louis, MO 63110.
J Neurobiol. 1990 Jun;21(4):661-71. doi: 10.1002/neu.480210413.
Dissociated embryonic chick dorsal root ganglion (DRG) neurons maintained in culture exhibit a mixed Na+/Ca2+ action potential. The characteristic "shoulder" on the repolarizing phase is due to the relatively prolonged inward Ca2+ current. DRG neurons grown in an elevated K+ medium (25 versus. 5 mM) lack the plateau phase of the action potential. Voltage-clamp analysis showed that this plastic change in action potential duration is not due to the loss of the inward Ca2+ current but is partly due to the appearance of a Ca2(+)-dependent, 4-aminopyridine-(4-AP)-sensitive transient outward current. Faster activation of the purely voltage-dependent delayed rectifier outward current also contributes to the rapid repolarization observed in neurons cultured in elevated K+ medium.
培养的解离鸡胚背根神经节(DRG)神经元表现出混合的Na+/Ca2+动作电位。复极化阶段的特征性“肩部”是由于相对延长的内向Ca2+电流所致。在高钾培养基(25 mM对5 mM)中生长的DRG神经元缺乏动作电位的平台期。电压钳分析表明,动作电位持续时间的这种可塑性变化不是由于内向Ca2+电流的丧失,而是部分归因于一种Ca2+依赖性、4-氨基吡啶-(4-AP)敏感的瞬时外向电流的出现。纯电压依赖性延迟整流外向电流的更快激活也有助于在高钾培养基中培养的神经元中观察到的快速复极化。