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Blocking effects of the anaesthetic etomidate on human brain sodium channels.

机译:麻醉依托咪酯对人脑钠通道的阻滞作用。

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摘要

Sodium channels from human brain tissue were incorporated into voltage-clamped planar lipid bilayers in presence of batrachotoxin and exposed to increasing concentrations of the intravenous anaesthetic drug etomidate (0.03-1.02 mM). Etomidate interacted with the sodium-conducting pathway of the channel causing a concentration-dependent block of the time-averaged sodium conductance (computer fit of the concentration-response curve: half-maximal blocking concentration, EC50, 0.19 mM; maximal block, block(max), 38%). This block of sodium-conductance resulted from two distinct effects (I) major effect: reduction of the sodium-channel amplitude and (II) minor effect: reduction of the fractional channel open-time. These results were observed at concentrations above clinically-relevant serum concentrations (up to 0.01 mM), suggesting only a limited role for human brain sodium channels in the mechanism of action of etomidate during clinical anaesthesia.
机译:来自人脑组织的钠通道在存在巴曲毒素的情况下被并入电压钳制的平面脂质双层中,并暴露于浓度不断增加的静脉麻醉药依托咪酯(0.03-1.02 mM)中。依托咪酯与通道的钠传导途径相互作用,引起时间平均钠电导的浓度依赖性传导阻滞(浓度-响应曲线的计算机拟合:最大阻滞浓度的一半,EC50,0.19 mM;最大阻滞,阻滞(最高),38%)。钠电导的这种阻滞是由两个不同的影响引起的:(I)主要影响:钠通道振幅的减小和(II)次要影响:分数通道打开时间的减小。在高于临床相关血清浓度(最高0.01 mM)的浓度下观察到这些结果,表明在临床麻醉期间人脑钠通道在依托咪酯的作用机制中仅发挥有限的作用。

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