首页> 美国卫生研究院文献>The Journal of Physiology >The action of alcohols and other non-ionic surface active substances on the sodium current of the squid giant axon.
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The action of alcohols and other non-ionic surface active substances on the sodium current of the squid giant axon.

机译:醇和其他非离子表面活性物质对鱿鱼巨轴突钠电流的作用。

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摘要

The effects of several n-alkanols and n-alkyl oxyethylene alcohols, methyl octanoate, glycerol 1-monooctanoate and dioctanoyl phosphatidylcholine on the ionic currents and electrical capacity of the squid giant axon membrane have been examined. The peak inward current in voltage-clamped axons was reduced reversibly by each substance. For n-pentanol to n-decanol the concentrations required to suppress the peak inward current by 50% were determined. From these data, it was estimated that the standard free energy per CH2 for adsorption to the site of action was -3.04 kJ mole-1, as compared with -3.11 kJ mole-1 for adsorption into phospholipid bilayers or an n-alkane/aqueous solution interface. The membrane capacity at 100 kHz was not greatly by any of the test substances at concentrations which reduced the inward current by 50%. Na currents under voltage clamp were recorded in intracellularly perfused axons before, during and sometimes after exposure to the test substances and the records were fitted with equations similar to those proposed by Hodgkin & Huxley (1952). Shifts in the curves of the steady-state activation and inactivation parameters (m infinity and h infinity) against membrane potential, changes in the peak heights of the activation and inactivation time constants (tau m and tau h) and reductions in the maximum Na conductance (gNa) have been tabulated. All of the test substances shifted the voltage dependence of the steady-state activation in the depolarizing direction and lowered the peak time constants for both activation and inactivation. The origins of these effects, and of the differences in the present results from those of the hydrocarbons (Haydon & Urban, 1983), have been discussed in terms of the physico-chemical properties of the two groups of substances and with reference to their effects on artificial membranes.
机译:考察了几种正烷醇和正烷基氧乙烯醇,辛酸甲酯,1-单辛酸甘油酯和二辛酰基磷脂酰胆碱对鱿鱼巨轴突膜离子电流和电容量的影响。每种物质都会使电压钳制轴突中的最大内向电流降低。对于正戊醇至正癸醇,确定了将峰值内向电流抑制50%所需的浓度。根据这些数据,估计每个CH2吸附到作用位点的标准自由能为-3.04 kJ mole-1,而吸附到磷脂双层或正构烷烃/水溶液中的标准自由能为-3.11 kJ mole-1。解决方案界面。对于任何一种测试物质来说,在100 kHz的膜容量下,其内向电流降低了50%。在暴露于测试物质之前,之中和之后,在细胞内灌注的轴突中记录了电压钳下的Na电流,并且记录中的方程与Hodgkin&Huxley(1952)提出的方程相似。稳态活化和失活参数(m无穷大和h无穷大)的曲线相对于膜电势的变化,活化和失活时间常数的峰值高度的变化(tau m和tau h)以及最大Na电导的降低(gNa)已制成表格。所有的测试物质都在去极化方向上改变了稳态激活的电压依赖性,并降低了激活和失活的峰值时间常数。这些影响的起源以及目前与碳氢化合物的影响之间的差异(Haydon和Urban,1983年)已根据两组物质的物理化学性质及其影响进行了讨论。在人造膜上。

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