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胺对龙虾口胃神经节特定细胞中瞬时钾电流的调节作用。

Amine modulation of the transient potassium current in identified cells of the lobster stomatogastric ganglion.

作者信息

Peck J H, Nakanishi S T, Yaple R, Harris-Warrick R M

机构信息

Department of Psychology, Ithaca College, Ithaca 14850, New York, USA.

出版信息

J Neurophysiol. 2001 Dec;86(6):2957-65. doi: 10.1152/jn.2001.86.6.2957.

Abstract

The pyloric network of the stomatogastric ganglion of the lobster Panulirus interruptus is a model system used to understand how motor networks change their output to produce a variety of behaviors. The transient potassium current (I(A)) shapes the activity of individual pyloric neurons by affecting their rate of postinhibitory rebound and spike frequency. We used two electrode voltage clamp to study the modulatory effects of dopamine (DA), octopamine (OCT), and serotonin (5-HT) on I(A) in the anterior burster (AB), inferior cardiac (IC), and ventricular dilator (VD) neurons of the pyloric circuit. DA significantly reduced I(A) in the AB and IC neurons and shifted their voltages of activation (V(act)) and inactivation (V(inact)) in a depolarized direction. These ionic changes contribute to the depolarization and increased firing rate of the AB and IC neurons produced by DA. Likewise, 5-HT significantly reduced I(A) and shifted V(inact) in the depolarized direction in the IC neuron, consistent with 5-HT's enhancement of IC firing. None of the amines evoked significant changes in I(A) in the VD neuron, suggesting that other currents mediate the amine effects on this neuron.

摘要

美洲龙虾(Panulirus interruptus)胃外神经节的幽门网络是一个用于理解运动网络如何改变其输出以产生多种行为的模型系统。瞬时钾电流(I(A))通过影响单个幽门神经元的抑制后反弹速率和放电频率来塑造其活动。我们使用双电极电压钳研究多巴胺(DA)、章鱼胺(OCT)和5-羟色胺(5-HT)对幽门回路中前爆发神经元(AB)、下心神经元(IC)和心室扩张神经元(VD)的I(A)的调节作用。多巴胺显著降低了AB和IC神经元中的I(A),并使其激活电压(V(act))和失活电压(V(inact))向去极化方向移动。这些离子变化导致了多巴胺引起的AB和IC神经元的去极化和放电频率增加。同样,5-羟色胺显著降低了IC神经元中的I(A),并使V(inact)向去极化方向移动,这与5-羟色胺增强IC放电一致。这些胺类物质均未引起VD神经元I(A)的显著变化,表明其他电流介导了胺类物质对该神经元的作用。

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