ADELMAN W J, TAYLOR R E
Biophys J. 1964 Nov;4(6):451-63. doi: 10.1016/s0006-3495(64)86795-3.
It was observed that a reduction of the sodium chloride concentration in the external solution bathing a squid giant axon by replacement with sucrose resulted in marked decreases in the peak inward and steady-state outward currents through the axon membrane following a step decrease in membrane potential. These effects are quantitatively acounted for by the increase in series resistance resulting from the decreased conductivity of the sea water and the assumption that the sodium current obeys a relation of the form I = k(1)C(1) - k(2)C(2) where C(1), C(2) are internal and external ion activities and k(1), k(2) are independent of concentration. It is concluded that the potassium ion current is independent of the sodium concentration. That the inward current is carried by sodium ions has been confirmed. The electrical potential (or barrier height) profile in the membrane which drives sodium ions appears to be independent of sodium ion concentration or current. A specific effect of the sucrose on hyperpolarizing currents was observed and noted but not investigated in detail.
据观察,用蔗糖替代浸泡枪乌贼巨大轴突的外部溶液中的氯化钠,导致膜电位阶跃下降后,通过轴突膜的内向峰值电流和外向稳态电流显著降低。这些效应可以通过海水电导率降低导致的串联电阻增加,以及假设钠电流服从I = k(1)C(1) - k(2)C(2)的关系来定量解释,其中C(1)、C(2)分别是内部和外部离子活度,k(1)、k(2)与浓度无关。得出的结论是钾离子电流与钠浓度无关。内向电流由钠离子携带这一点已得到证实。驱动钠离子的膜中的电势(或势垒高度)分布似乎与钠离子浓度或电流无关。观察到了蔗糖对超极化电流的特定影响并做了记录,但未进行详细研究。