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镉对小牛浦肯野纤维心脏快速钠通道的阻断作用。

Cadmium-induced blockade of the cardiac fast Na channels in calf Purkinje fibres.

作者信息

DiFrancesco D, Ferroni A, Visentin S, Zaza A

出版信息

Proc R Soc Lond B Biol Sci. 1985 Feb 22;223(1233):475-84. doi: 10.1098/rspb.1985.0013.

Abstract

The fast transient inward current elicited by depolarizations above about -60 mV in calf Purkinje fibres was found to be depressed by Cd in concentrations less than 1 mM. The Cd-sensitive current, which strongly depended on external Na, was recorded in the presence of 2 mM MnCl2 and was blocked by TTX, indicating that a contamination from slow Ca-dependent currents could be discounted. The current reduction caused by Cd was also observed in nominally Ca-free solutions. The Cd-induced depression of the fast Na current was not accompanied by changes in the current kinetic parameters, as revealed by comparing inactivation curves and peak current voltage relations at different Cd concentrations, and could be attributed to a voltage-independent channel blocking action. Half-blockade occurred at 0.182 +/- 0.06 mM (n = 4). Plots of peak current amplitude as a function of the Cd concentration showed that the cooperation of two Cd ions was required to block a single channel.

摘要

发现在小牛浦肯野纤维中,高于约 -60 mV 的去极化所引发的快速瞬态内向电流会被浓度低于 1 mM 的镉所抑制。这种对镉敏感的电流强烈依赖于细胞外钠离子,是在 2 mM 氯化锰存在的情况下记录到的,并且会被河豚毒素阻断,这表明可以排除缓慢的钙依赖性电流的污染。在名义上无钙的溶液中也观察到了镉引起的电流减少。通过比较不同镉浓度下的失活曲线和峰值电流 - 电压关系发现,镉诱导的快速钠电流抑制并未伴随着电流动力学参数的变化,这可归因于电压非依赖性的通道阻断作用。半阻断发生在 0.182 ± 0.06 mM(n = 4)。峰值电流幅度与镉浓度的关系图表明,阻断单个通道需要两个镉离子协同作用。

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