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新生大鼠三叉神经运动神经元的电压依赖性钙电流:5-羟色胺受体的调节作用

Voltage-dependent calcium currents in trigeminal motoneurons of early postnatal rats: modulation by 5-HT receptors.

作者信息

Hsiao Chie-Fang, Wu Nanping, Chandler Scott H

机构信息

Department of Physiological Science, University of California, 2859 Slichter Hall, Los Angeles, California 90095-1568, USA.

出版信息

J Neurophysiol. 2005 Sep;94(3):2063-72. doi: 10.1152/jn.00178.2005. Epub 2005 Jun 22.

Abstract

Trigeminal motoneurons relay the final output signals generated within the oral-motor pattern generating circuit(s) to muscles for execution of various motor patterns. In recent years, these motoneurons were shown to possess voltage dependent nonlinear membrane properties that allow them to actively participate in sculpting their final output. A complete understanding of the factors controlling trigeminal motoneuronal (TMN) discharge during oral-motor activity requires, at a minimum, a detailed understanding of the palette of ion channels responsible for membrane excitability and a determination of whether these ion channels are targets for modulation. Toward that end, we studied in detail the properties of calcium channels in TMNs and their susceptibility to modulation by 5-HT in rat brain slices. We found that based on pharmacological and voltage-dependent properties, high-voltage-activated (HVA) N-type [omega-conotoxin GVIA (omega-CgTX)]-sensitive, and to a lesser extent P/Q-type [omega-agatoxin IVA (omega-Aga IVA)]-sensitive, calcium channels make up the majority of the whole cell calcium current. 5-HT (5.0 microM) decreased HVA current by 31.3 +/- 2.2%, and the majority of this suppression resulted from reduction of current flow through N- and P/Q-type calcium channels. In contrast, 5-HT had no effect on low-voltage-activated (LVA) current amplitude in TMNs. HVA calcium current inhibition was mimicked by 5-CT, a 5-HT1 receptor agonist, and by R(+)-8-hydroxydipropylaminotetralin hydrobromide (8-OH-DPAT), a specific 5-HT1A agonist. The effects of 5-HT were blocked by the 5-HT1A antagonist 1-(2-methoxyphenyl)-4-[4-(2-phthalimido)butyl]piperazine hydrobromide (NAN-190) but not by ketanserin, a 5-HT(2/1C) antagonist. Under current clamp, omega-CgTX and 5-HT were most effective in suppressing the mAHP and both increased the spike frequency and input/output gain in response to current injection. Calcium current modulation by 5-HT1A receptors likely is an important mechanism to fine tune the input/output gain of TMNs in response to small incoming synaptic inputs and accounts for some of the previously reported effects of 5-HT on TMN excitability during tonic and burst activity during oral-motor behavior.

摘要

三叉神经运动神经元将口面部运动模式产生回路中产生的最终输出信号传递给肌肉,以执行各种运动模式。近年来,这些运动神经元被证明具有电压依赖性非线性膜特性,这使它们能够积极参与塑造其最终输出。要全面了解控制口面部运动活动期间三叉神经运动神经元(TMN)放电的因素,至少需要详细了解负责膜兴奋性的离子通道组合,并确定这些离子通道是否为调制靶点。为此,我们在大鼠脑片中详细研究了TMN中钙通道的特性及其对5-羟色胺(5-HT)调制的敏感性。我们发现,根据药理学和电压依赖性特性,高电压激活(HVA)的N型[ω-芋螺毒素GVIA(ω-CgTX)]敏感型以及程度较轻的P/Q型[ω-阿加毒素IVA(ω-Aga IVA)]敏感型钙通道构成了全细胞钙电流的大部分。5-HT(5.0微摩尔)使HVA电流降低了31.3±2.2%,这种抑制作用主要是由于通过N型和P/Q型钙通道的电流减少所致。相比之下,5-HT对TMN中的低电压激活(LVA)电流幅度没有影响。HVA钙电流抑制作用可被5-HT1受体激动剂5-羧色胺(5-CT)以及特异性5-HT1A激动剂R(+)-8-羟基二丙基氨基四氢萘溴化物(8-OH-DPAT)模拟。5-HT 的作用可被5-HT1A拮抗剂1-(2-甲氧基苯基)-4-[4-(2-邻苯二甲酰亚胺基)丁基]哌嗪溴化物(NAN-190)阻断,但不能被5-HT(2/1C)拮抗剂酮色林阻断。在电流钳制下,ω-CgTX和5-HT在抑制慢后超极化(mAHP)方面最为有效,并且两者都增加了对电流注入的放电频率和输入/输出增益。5-HT1A受体对钙电流的调制可能是一种重要机制,可微调TMN的输入/输出增益,以响应小的传入突触输入,并解释了先前报道的5-HT对口面部运动行为中紧张性和爆发性活动期间TMN兴奋性的一些影响。

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