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体外脑片制备中大鼠丘脑底核神经元的电膜特性

Electrical membrane properties of rat subthalamic neurons in an in vitro slice preparation.

作者信息

Nakanishi H, Kita H, Kitai S T

机构信息

Department of Anatomy and Neurobiology, University of Tennessee, Memphis 38163.

出版信息

Brain Res. 1987 Dec 22;437(1):35-44. doi: 10.1016/0006-8993(87)91524-1.

Abstract

The electrical membrane properties of subthalamic (STH) neurons and their response characteristics to stimulation of the internal capsule (IC) were studied in an in vitro slice preparation. Most STH neurons recorded exhibited spontaneous repetitive firing. The input resistance of STH neurons was 146 +/- 48 M omega and showed both an anomalous and a delayed rectification when the membrane was hyperpolarized or depolarized by current injections. In neurons with the membrane potential less negative than 65 mV, depolarizing current pulses generated repetitive firing with the maximum frequency of up to 500 Hz. Two types of tetrodotoxin (TTX)-resistant cobalt-sensitive potentials, slow depolarizing potential and slow action potential, were observed in STH neurons. The slow depolarizing potential had a long duration (over 500 ms in some cases) and was able to trigger repetitive firing. The slow action potential had a duration of about 30 ms and triggered a burst of firing. The slow action potential was seen only when the neurons were hyperpolarized to more negative than 65 mV by a current injection. Electrical stimulation of IC evoked monosynaptic inhibitory postsynaptic potentials (IPSPs) in most of the neurons examined. The polarity of IPSPs was reversed in the depolarizing direction by intracellular injection of Cl-. Bath application of bicuculline markedly suppressed IPSPs and unmasked monosynaptic excitatory postsynaptic potentials (EPSPs). The EPSP was able to trigger a slow depolarization with repetitive firing or a slow action potential with burst of firing when the neuron was hyperpolarized by a continuous current injection. The results demonstrated that STH neurons in an in vitro preparation have spontaneous discharges, high input resistance, capability to generate high-frequency firing, and Ca potentials. The pattern of responses of STH neurons to synaptic inputs is dependent on their membrane potentials.

摘要

在体外脑片标本中研究了丘脑底核(STH)神经元的电膜特性及其对刺激内囊(IC)的反应特征。记录到的大多数STH神经元表现出自发性重复放电。STH神经元的输入电阻为146±48MΩ,当通过电流注入使膜超极化或去极化时,表现出反常整流和延迟整流。在膜电位负性小于65mV的神经元中,去极化电流脉冲可产生重复放电,最大频率可达500Hz。在STH神经元中观察到两种对河豚毒素(TTX)不敏感但对钴敏感的电位,即缓慢去极化电位和缓慢动作电位。缓慢去极化电位持续时间长(某些情况下超过500ms),能够触发重复放电。缓慢动作电位持续时间约为30ms,可触发一阵放电。仅当通过电流注入使神经元超极化至负性大于65mV时才能观察到缓慢动作电位。电刺激IC在大多数被检查的神经元中诱发单突触抑制性突触后电位(IPSPs)。通过细胞内注入Cl-,IPSPs的极性在去极化方向上发生反转。浴槽中应用荷包牡丹碱可显著抑制IPSPs并揭示出单突触兴奋性突触后电位(EPSPs)。当通过持续电流注入使神经元超极化时,EPSP能够触发伴有重复放电的缓慢去极化或伴有一阵放电的缓慢动作电位。结果表明,体外制备的STH神经元具有自发放电、高输入电阻、产生高频放电的能力以及钙电位。STH神经元对突触输入的反应模式取决于其膜电位。

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