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哺乳动物细胞中的钠离子电流和门控电流。

Sodium ionic and gating currents in mammalian cells.

作者信息

Moran O, Conti F

机构信息

Scuola Internazionale Superiore de Studi Avanzati, Trieste, Italy.

出版信息

Eur Biophys J. 1990;18(1):25-32. doi: 10.1007/BF00185417.

Abstract

Ionic and gating currents from voltage-gated sodium channels were recorded in mouse neuroblastoma cells using the path-clamp technique. Displacement currents were measured from whole-cell recordings. The gating charge displaced during step depolarizations increased with the applied membrane potential and reached saturating levels above 20 mV. Prolonged large depolarizations produced partial immobilization of the gating charge, and only about one third of the displaced charge was quickly reversed upon return to negative holding potentials. The activation and inactivation properties of macroscopic sodium currents were characterized by voltage-clamp analysis of large outside-out patches and the single-channel conductance was estimated from non-stationary noise analysis. The general properties of the sodium channels in mouse neuroblastoma cells are very similar to those previously reported for various preparations of invertebrate and vertebrate nerve cells.

摘要

使用膜片钳技术在小鼠神经母细胞瘤细胞中记录电压门控钠通道的离子电流和门控电流。从全细胞记录中测量位移电流。在阶跃去极化过程中位移的门控电荷随施加的膜电位增加,并在高于20 mV时达到饱和水平。长时间的大去极化导致门控电荷部分固定,并且在回到负的保持电位时,只有约三分之一的位移电荷迅速反转。通过对大的外向膜片进行电压钳分析来表征宏观钠电流的激活和失活特性,并通过非平稳噪声分析估计单通道电导。小鼠神经母细胞瘤细胞中钠通道的一般特性与先前报道的各种无脊椎动物和脊椎动物神经细胞制剂的特性非常相似。

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