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新奇诱发的伏隔核多巴胺升高:依赖于来自腹侧下托的冲动流和腹侧被盖区的谷氨酸能神经传递。

Novelty-evoked elevations of nucleus accumbens dopamine: dependence on impulse flow from the ventral subiculum and glutamatergic neurotransmission in the ventral tegmental area.

作者信息

Legault M, Wise R A

机构信息

Center for Studies in Behavioural Neurobiology, Department of Psychology, Concordia University, Montreal, Quebec, Canada, H3G 1M8.

出版信息

Eur J Neurosci. 2001 Feb;13(4):819-28. doi: 10.1046/j.0953-816x.2000.01448.x.

Abstract

In vivo microdialysis in freely moving rats was used to monitor novelty-evoked elevations in extracellular dopamine in the nucleus accumbens septi (NAS) and to examine the role of the ventral subiculum of the hippocampus and glutamatergic transmission in the ventral tegmental area (VTA) on these elevations. Exposure to novel stimuli evoked investigatory activity and increased nucleus accumbens dopamine. Unilateral injections of the sodium channel blocker tetrodotoxin (0.16 ng/0.5 microL) into the ventral subiculum ipsilateral to the dialysed NAS abolished novelty-evoked elevations in dopamine. Injections of tetrodotoxin into the contralateral VS did not prevent novelty-evoked elevations in nucleus accumbens dopamine. Unilateral perfusion (via microdialysis) of the ionotropic glutamate receptor antagonists kynurenic acid (1 mM) into the ipsilateral but not the contralateral VTA blocked novelty-evoked elevations in nucleus accumbens dopamine. Neither unilateral injections of tetrodotoxin nor unilateral perfusion of kynurenic acid disrupted investigatory behaviour. These data indicate that phasic elevations in nucleus accumbens dopamine evoked by exposure to unconditioned novel stimuli are dependent on impulse flow from the hippocampus and glutamatergic transmission in the VTA.

摘要

在自由活动的大鼠体内进行微透析,以监测新奇刺激诱发的伏隔核(NAS)细胞外多巴胺升高,并研究海马腹侧下托和腹侧被盖区(VTA)谷氨酸能传递在这些升高过程中的作用。暴露于新奇刺激会诱发探究活动并增加伏隔核多巴胺。向与透析的NAS同侧的腹侧下托单侧注射钠通道阻滞剂河豚毒素(0.16 ng/0.5 μL)可消除新奇刺激诱发的多巴胺升高。向对侧腹侧下托注射河豚毒素并不能阻止新奇刺激诱发的伏隔核多巴胺升高。将离子型谷氨酸受体拮抗剂犬尿氨酸(1 mM)通过微透析单侧灌注到同侧而非对侧VTA中,可阻断新奇刺激诱发的伏隔核多巴胺升高。单侧注射河豚毒素或单侧灌注犬尿氨酸均未破坏探究行为。这些数据表明,暴露于无条件新奇刺激诱发的伏隔核多巴胺阶段性升高依赖于来自海马的冲动流和VTA中的谷氨酸能传递。

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