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黑尾海兔特定神经元中肿瘤坏死因子对钠离子电导降低的分析。

Analysis of a decreased Na+ conductance by tumor necrosis factor in identified neurons of Aplysia kurodai.

作者信息

Sawada M, Hara N, Maeno T

机构信息

Department of Physiology, Shimane Medical University, Izumo, Japan.

出版信息

J Neurosci Res. 1991 Apr;28(4):466-73. doi: 10.1002/jnr.490280403.

Abstract

The ionic mechanisms of the effect of extracellularly ejected recombinant human tumor necrosis factor-alpha (rhTNF-alpha) on the membrane of identified neurons R9 and R10 of Aplysia kurodai was investigated with conventional voltage-clamp, micropressure ejection, and ion substitution techniques. Micropressure-ejected rhTNF caused a marked hyperpolarization in the unclamped neuron. Clamping the same neuron at it resting potential level (-60 mV) and reejecting rhTNF-alpha with the same dose produced a slow outward current [Io (TNF)] associated with a decrease in input membrane conductance. Io (TNF) was decreased by depolarization and increased by hyperpolarization. The extrapolated reversal potential of Io (TNF) was approximately +10 mV. Ion substitution and pharmacological experiments suggest that Io (TNF) in identified neurons R9 and R10 of A. kurodai is due to a decreased Na+ conductance but not due to an activation of the Na(+)-K+ pump. Our results demonstrate that the immunomodulator TNF can act directly on the nervous system as well as on the immune system.

摘要

采用传统电压钳、微压喷射和离子置换技术,研究了细胞外喷射重组人肿瘤坏死因子-α(rhTNF-α)对日本黑兔已鉴定神经元R9和R10膜的离子机制。微压喷射rhTNF可使未钳制的神经元出现明显的超极化。将同一神经元钳制在静息电位水平(-60 mV),再以相同剂量喷射rhTNF-α会产生与输入膜电导降低相关的缓慢外向电流[Io(TNF)]。Io(TNF)随去极化而降低,随超极化而增加。Io(TNF)的外推反转电位约为+10 mV。离子置换和药理学实验表明,日本黑兔已鉴定神经元R9和R10中的Io(TNF)是由于Na+电导降低,而非Na(+)-K+泵的激活。我们的结果表明,免疫调节剂TNF可直接作用于神经系统以及免疫系统。

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