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[钠泵抑制在神经元中的后果及其与缺氧缺血所致细胞损伤的病理生理学的相关性]

[The consequences of sodium pump inhibition in the neurons and its relevance to the physiopathology of the cell damage produced by anoxic ischemia].

作者信息

Alvarez Leefmans F J, Merediz Alonso G, Fernández Calderón J R

机构信息

Departamento de Neurobiología, Instituto Mexicano de Psiquitría.

出版信息

Gac Med Mex. 1994 Sep-Oct;130(5):347-54.

PMID:7607364
Abstract

The effect of altering the transmembrane electrochemical Na+ gradient on total membrane conductance (Gm) of Helix aspersa neurones was investigated with intracellular microelectrode recording techniques. Replacement of extracellular Na+ with an impermeant cation (glucamine) produced a modest and short lived decrease in Gm (4.6 +/- 2.9%) followed by a prominent and sustained increase of it (30.3 +/- 10.5%). The latter effect was accompanied by membrane hyperpolarization. These results suggest that removal of external Na+ leads to an increase in [Ca++]i probably through the Na+/Ca++ exchanger operating in reverse mode. The resulting rise in [Ca++]i would be sufficient to produce an increase in membrane permeability to K+. Inhibition of the Na+ pump with ouabain results in a similar increase in Gm, suggesting a rise in [Ca++]i through the Na+/Ca++ exchanger and voltage-sensitive Ca++ channels. Mathematical modelling of Na+/Ca++ exchange in these neurones showed that modest increments in [Na+]i produce significant increases in [Ca++]i in agreement with [Na+]i and [Ca++] measurements performed with fluorescent indicators and ion-selective microelectrode techniques. The results are discussed in relation with the cellular changes occurring in ischemic-anoxic nervous tissue.

摘要

采用细胞内微电极记录技术,研究了改变跨膜电化学钠离子梯度对普通花园蜗牛神经元总膜电导(Gm)的影响。用一种非渗透性阳离子(葡糖胺)替代细胞外钠离子,使Gm出现适度且短暂的降低(4.6±2.9%),随后显著且持续升高(30.3±10.5%)。后一种效应伴随着膜超极化。这些结果表明,去除细胞外钠离子可能通过反向运行的钠/钙交换器导致细胞内钙离子浓度([Ca++]i)升高。由此产生的[Ca++]i升高足以使膜对钾离子的通透性增加。用哇巴因抑制钠泵会使Gm出现类似升高,表明通过钠/钙交换器和电压敏感性钙通道使[Ca++]i升高。对这些神经元中钠/钙交换进行数学建模表明,细胞内钠离子浓度([Na+]i)适度增加会使[Ca++]i显著增加,这与用荧光指示剂和离子选择性微电极技术进行的[Na+]i和[Ca++]测量结果一致。结合缺血缺氧神经组织中发生的细胞变化对结果进行了讨论。

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