Rojas E, Canessa-Fischer M
J Gen Physiol. 1968 Aug;52(2):240-57. doi: 10.1085/jgp.52.2.240.
Sodium movements in internally perfused giant axons from the squid Dosidicus gigas were studied with varying internal sodium concentrations and with fluoride as the internal anion. It was found that as the internal concentration of sodium was increased from 2 to 200 mM the resting sodium efflux increased from 0.09 to 34.0 pmoles/cm(2)sec and the average resting sodium influx increased from 42.9 to 64.5 pmoles/cm(2)sec but this last change was not statistically significant. When perfusing with a mixture of 500 mM K glutamate and 100 mM Na glutamate the resting efflux was 10 +/- 3 pmoles/cm(2)sec and 41 +/- 10 pmoles/cm(2)sec for sodium influx. Increasing the internal sodium concentration also increased both the extra influx and the extra efflux of sodium due to impulse propagation. At any given internal sodium concentration the net extra influx was about 5 pmoles/cm(2)impulse. This finding supports the notion that the inward current generated in a propagated action potential can be completely accounted for by movements of sodium.
研究了在不同内部钠浓度以及以氟化物作为内部阴离子的情况下,来自茎柔鱼(Dosidicus gigas)的内部灌注巨型轴突中的钠运动。结果发现,随着内部钠浓度从2 mM增加到200 mM,静息钠外流从0.09皮摩尔/平方厘米·秒增加到34.0皮摩尔/平方厘米·秒,平均静息钠内流从42.9皮摩尔/平方厘米·秒增加到64.5皮摩尔/平方厘米·秒,但最后这一变化在统计学上不显著。当用500 mM谷氨酸钾和100 mM谷氨酸钠的混合物进行灌注时,静息外流为10±3皮摩尔/平方厘米·秒,钠内流为41±10皮摩尔/平方厘米·秒。增加内部钠浓度也会增加由于冲动传播导致的额外钠内流和额外钠外流。在任何给定的内部钠浓度下,净额外内流约为5皮摩尔/平方厘米·冲动。这一发现支持了这样一种观点,即传播的动作电位中产生的内向电流可以完全由钠的运动来解释。