Bennett M R
Biophys J. 1967 Mar;7(2):151-64. doi: 10.1016/S0006-3495(67)86581-0.
The observed shift in threshold potential, after perfusion of the squid giant axon with solutions of low ionic strength, can be predicted by assuming a fixed negative charge on the inside of the membrane. The constant field equation, together with the double-layer potential due to this charge, has been used to determine the change in resting potential during perfusion with solutions of low ionic strength. Neither the modified constant field equation nor Planck's diffusion equation can successfully predict the observed shift in resting potential. It is suggested that a positive charge distribution exists about the sodium channel on the outside of the membrane. The double-layer potential due to this positive charge, together with the independence principle, has been used to predict the relationship between sodium current and membrane potential when the ionic strength and sodium activity of the external solution are decreased. These predictions have been compared with the available experimental observations.
在用低离子强度溶液灌注枪乌贼巨大轴突后观察到的阈电位变化,可以通过假设膜内侧存在固定负电荷来预测。恒定场方程,连同由于该电荷产生的双层电位,已被用于确定在用低离子强度溶液灌注期间静息电位的变化。修正的恒定场方程和普朗克扩散方程都不能成功预测观察到的静息电位变化。有人提出,膜外侧的钠通道周围存在正电荷分布。由于这种正电荷产生的双层电位,连同独立性原理,已被用于预测当外部溶液的离子强度和钠活性降低时钠电流与膜电位之间的关系。这些预测已与现有的实验观察结果进行了比较。