ADELMAN W J, DALTON J C
J Gen Physiol. 1960 Jan;43(3):609-19. doi: 10.1085/jgp.43.3.609.
Experiments were performed on the lobster giant axon to determine the relation between intracellular spike amplitude and external calcium ion concentration. Action potential decline in low external calcium is greatly accelerated by simultaneous removal of external sodium ion. Correlation of the time course of spike decline in low calcium-low sodium solution with the time courses of spike decline in low calcium alone and in low sodium alone indicates that the effect of simultaneous removal of both ions is significantly greater than the sum of the individual effects. For a given time of treatment, spike amplitude was a function of external calcium concentration. While spike height is proportional to the log of the external calcium concentration over the range 2.5 to 50 millimolar, the proportionality constant is dependent upon the sodium concentration. Under the conditions of low external sodium (50 per cent reduction) the slope of the linear relationship between the spike height and the log of the external calcium concentration is about 5 times greater than in normal external sodium. Decreasing external calcium concentration and simultaneously increasing external potassium concentration produce a greater spike reduction than the arithmetic sum of spike reductions in low calcium alone and in high potassium alone. It is suggested that calcium interacts strongly with sodium and potassium in the spike-generating mechanism. A theoretical basis for these results is discussed.
在龙虾巨轴突上进行了实验,以确定细胞内动作电位幅度与细胞外钙离子浓度之间的关系。在低细胞外钙的情况下,同时去除细胞外钠离子会大大加速动作电位的下降。低钙 - 低钠溶液中动作电位下降的时间进程与单独低钙和单独低钠溶液中动作电位下降的时间进程的相关性表明,同时去除两种离子的效果明显大于各自单独作用的总和。对于给定的处理时间,动作电位幅度是细胞外钙浓度的函数。在2.5至50毫摩尔的范围内,动作电位高度与细胞外钙浓度的对数成正比,比例常数取决于钠浓度。在低细胞外钠(降低50%)的条件下,动作电位高度与细胞外钙浓度对数之间的线性关系斜率比正常细胞外钠时大约大5倍。降低细胞外钙浓度并同时增加细胞外钾浓度所导致的动作电位降低幅度,比单独低钙和单独高钾时动作电位降低幅度的算术和更大。这表明在动作电位产生机制中,钙与钠和钾有强烈的相互作用。讨论了这些结果的理论基础。