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去甲肾上腺素对脊髓原代培养物中起搏细胞的兴奋作用。

Excitatory effect of noradrenaline on pacemaker cells in spinal cord primary cultures.

作者信息

Legendre P, Dupouy B, Vincent J D

机构信息

Unité de Neurobiologie des Comportements, INSERM U.176, Domaine de Carreire, Bordeaux, France.

出版信息

Neuroscience. 1988 Feb;24(2):647-58. doi: 10.1016/0306-4522(88)90358-2.

Abstract

Intracellular recordings were made from dissociated fetal mouse spinal cord neurons in primary culture. One particular type of neuron, with a large cell body (40-50 micron) and three to five thick neurites, exhibited rhythmic electrical activity of two different types, consisting of either spontaneous burst discharges or tonic action potential firing. Both types of activity appeared to be triggered by an endogenous membrane potential oscillation. Micropressure application of noradrenaline (10(-5) M in the delivery pipette) onto the surface of such cells evoked, in a dose-dependent manner, an increase in the input resistance with a depolarization of the membrane potential. The response to NA was potential-dependent. The maximum change in input resistance was observed at membrane potential values between -60 mV and -45 mV and the response was suppressed at membrane potentials lower than -80 mV. No modification of the response was observed in the presence of 50 mM of tetraethylammonium. The extrapolated reversal potential, close to -90 mV, was modified by increasing extracellular K+ concentration and unaltered by increasing the intracellular Cl- concentration. The decrease in K+ conductance induced by noradrenaline was Ca2+-dependent and reversibly suppressed by Ba2+ (6 mM) and Cd2+ (0.1 mM). This response to noradrenaline was suppressed in the presence of muscarine (10 microM) suggesting that noradrenaline decreases a K+ conductance related to M current. The noradrenaline evoked increase in input resistance was mediated by activation of an alpha 1 receptor site. Prazosin, an alpha 1 antagonist and phentolamine, an alpha 1 alpha 2 antagonist, reversibly suppressed the response in a competitive manner. Yohimbine, a competitive alpha 2 antagonist, also blocked the response, but in a noncompetitive manner. Clonidine, an alpha 2 agonist, isoprenaline, a beta agonist and L-alprenolol, a beta antagonist, had no effect.

摘要

在原代培养中,对解离的胎鼠脊髓神经元进行细胞内记录。一种特殊类型的神经元,具有大的细胞体(40 - 50微米)和三到五条粗的神经突,表现出两种不同类型的节律性电活动,包括自发爆发性放电或强直性动作电位发放。这两种类型的活动似乎都由内源性膜电位振荡触发。将去甲肾上腺素(在给药滴管中为10(-5) M)微压施加到此类细胞表面,以剂量依赖的方式引起输入电阻增加,同时膜电位去极化。对去甲肾上腺素的反应是电位依赖性的。在膜电位值介于 - 60 mV和 - 45 mV之间时观察到输入电阻的最大变化,而在膜电位低于 - 80 mV时反应受到抑制。在存在50 mM四乙铵的情况下未观察到反应的改变。外推的反转电位接近 - 90 mV,通过增加细胞外钾离子浓度而改变,而增加细胞内氯离子浓度则未改变。去甲肾上腺素诱导的钾离子电导降低是钙离子依赖性的,并被钡离子(6 mM)和镉离子(0.1 mM)可逆性抑制。在毒蕈碱(10 microM)存在的情况下,对去甲肾上腺素的这种反应受到抑制,这表明去甲肾上腺素降低了与M电流相关的钾离子电导。去甲肾上腺素引起的输入电阻增加是由α1受体位点的激活介导的。哌唑嗪,一种α1拮抗剂,和酚妥拉明,一种α1α2拮抗剂,以竞争性方式可逆性抑制反应。育亨宾,一种竞争性α2拮抗剂,也阻断了反应,但以非竞争性方式。可乐定,一种α2激动剂,异丙肾上腺素,一种β激动剂,和L - 阿普洛尔,一种β拮抗剂,没有作用。

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