Suppr超能文献

牛蛙交感神经节神经元中延迟整流钾电流(IK)的电生理功能

Electrophysiological function of the delayed rectifier (IK) in bullfrog sympathetic ganglion neurones.

作者信息

Goh J W, Kelly M E, Pennefather P S

机构信息

Faculty of Pharmacy, University of Toronto, Ontario, Canada.

出版信息

Pflugers Arch. 1989 Mar;413(5):482-6. doi: 10.1007/BF00594177.

Abstract

Neurones of the bullfrog sympathetic ganglion exhibit at least 5 distinct K+ currents. Two calcium-dependent K+ currents IC and IAHP, the delayed rectifier IK, the muscarinic-sensitive IM and the transient outward current IA. Each current plays a unique role in controlling the shapes and firing patterns of action potentials observed in these neurones. We have found that 3,4-diaminopyridine (DAP) (greater than 0.1 mM) will selectively block IK and IA. Concentrations as high as 2 mM have no effect on IC, IAHP or IM. Since IA is mostly inactivated at resting potentials in these cells, DAP can be used to explore the electrophysiological function of IK. Under normal conditions DAP has no effect on action potential duration or no patterns of repetitive activity. This indicates that IK is normally not involved in modulating these parameters. When IC and IAHP are blocked by removing extracellular calcium, however, inhibition of IK prolongs action potential duration, reduces a fast afterhypolarization and enhances spike frequency adaptation. When IM and IAHP are reduced by barium (1 mM), inhibition of IK by DAP has smaller effects on action potential duration and afterhyperpolarization amplitude, but still enhances spike frequency adaptation. We conclude that electrophysiological effects of blocking IK are critically dependent on the levels of other K+ currents found in these cells.

摘要

牛蛙交感神经节的神经元至少表现出5种不同的钾离子电流。两种钙依赖性钾离子电流IC和IAHP、延迟整流钾电流IK、毒蕈碱敏感性钾电流IM以及瞬时外向电流IA。每种电流在控制这些神经元中观察到的动作电位的形状和发放模式方面都起着独特的作用。我们发现,3,4-二氨基吡啶(DAP)(大于0.1 mM)将选择性阻断IK和IA。高达2 mM的浓度对IC、IAHP或IM没有影响。由于IA在这些细胞的静息电位下大多失活,DAP可用于探究IK的电生理功能。在正常情况下,DAP对动作电位持续时间或重复活动模式没有影响。这表明IK通常不参与调节这些参数。然而,当通过去除细胞外钙来阻断IC和IAHP时,抑制IK会延长动作电位持续时间,减少快速超极化后电位,并增强峰频率适应性。当通过钡(1 mM)降低IM和IAHP时,DAP对IK的抑制对动作电位持续时间和超极化后电位幅度的影响较小,但仍会增强峰频率适应性。我们得出结论,阻断IK的电生理效应严重依赖于这些细胞中发现的其他钾离子电流的水平。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验