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二价和三价阳离子对培养的大鼠海马神经元瞬时外向电流的调节机制

On the mechanism of modulation of transient outward current in cultured rat hippocampal neurons by di- and trivalent cations.

作者信息

Talukder G, Harrison N L

机构信息

Department of Anesthesia and Critical Care, University of Chicago, Illinois 60637.

出版信息

J Neurophysiol. 1995 Jan;73(1):73-9. doi: 10.1152/jn.1995.73.1.73.

DOI:10.1152/jn.1995.73.1.73
PMID:7714591
Abstract
  1. The mechanisms of Zn2+ modulation of transient outward current (TOC) were studied in cultured rat hippocampal neurons, using the voltage-clamp technique. In the presence of micromolar concentrations of external Zn2+, the voltage dependence of activation and inactivation was shifted to more positive membrane potentials. The gating of TOC was unaltered by internal application of Zn2+. The effect of Zn2+ were not mimicked by external Ca2+, except at very high concentrations (> 10 mM). 2. The modulatory effects of external Zn2+ on TOC gating were not reproduced, antagonized, nor enhanced by lowering external ionic strength, indicating that modulation by Zn2+ does not occur via screening of bulk surface negative charge. 3. A range of other divalent and trivalent metal ions also was studied, and several were found to modulate the transient outward current when added to the extracellular medium. In particular, Pb2+, La3+, and Gd3+ were potent modulators, showing activity in the low micromolar range. Other metal ions were weaker modulators (e.g., Cd2+) or were without activity at the concentrations tested (Fe3+, Cu2+, Ni2+). 4. The same range of ions also was tested on the delayed rectifier K+ current in cultured rat hippocampal neurons. None of the ions studied had significant effects on delayed rectifier gating, although high (> or = 100 microM) concentrations of Pb2+ and La3+ reduced maximal current amplitude, suggesting the possibility of channel block.(ABSTRACT TRUNCATED AT 250 WORDS)
摘要
  1. 运用电压钳技术,在培养的大鼠海马神经元中研究了锌离子(Zn2+)对瞬时外向电流(TOC)的调节机制。在存在微摩尔浓度的细胞外Zn2+时,激活和失活的电压依赖性向更正的膜电位偏移。内向施加Zn2+不会改变TOC的门控。除了在非常高的浓度(>10 mM)下,细胞外Ca2+不会模拟Zn2+的作用。2. 降低细胞外离子强度不会重现、拮抗或增强细胞外Zn2+对TOC门控的调节作用,这表明Zn2+的调节不是通过屏蔽表面大量负电荷来实现的。3. 还研究了一系列其他二价和三价金属离子,发现其中几种添加到细胞外培养基中时会调节瞬时外向电流。特别是,Pb2+、La3+和Gd3+是强效调节剂,在低微摩尔范围内显示出活性。其他金属离子是较弱的调节剂(例如Cd2+),或者在所测试的浓度下没有活性(Fe3+、Cu2+、Ni2+)。4. 对培养的大鼠海马神经元中的延迟整流钾电流也测试了相同范围的离子。所研究的离子均对延迟整流门控没有显著影响,尽管高(≥100 microM)浓度的Pb2+和La3+会降低最大电流幅度,提示存在通道阻断的可能性。(摘要截短于250字)

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