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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Evidence for a selective prefrontal cortical GABA(B) receptor-mediated inhibition of glutamate release in the ventral tegmental area: a dual probe microdialysis study in the awake rat.
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Evidence for a selective prefrontal cortical GABA(B) receptor-mediated inhibition of glutamate release in the ventral tegmental area: a dual probe microdialysis study in the awake rat.

机译:在腹侧被盖区中选择性前额叶皮质GABA(B)受体介导的谷氨酸释放抑制的证据:清醒大鼠中的双探针微透析研究。

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Glutamate-containing pyramidal neurons in the medial prefrontal cortex (mPfc) project to the ventral tegmental area (VTA) where they synapse on mesocorticolimbic dopamine containing cell bodies and GABA interneurons. In the present study we employed dual probe microdialysis in intact conscious rat brain to investigate the effects of intra-mPfc perfusion with a depolarising concentration of potassium chloride (KCl) (100 mM, 20 min) alone and in the presence of local GABA(A) and GABA(B) receptor blockade on VTA glutamate release. Intra-mPfc KCl transiently increased VTA glutamate release (+71.48+/-14.29%, 20 min). Intra-mPfc perfusion with a concentration of the GABA(A) receptor antagonist bicuculline (10 microM, 120 min) did not influence the intra-mPfc KCl-induced increase in VTA glutamate release (+102.35+/-33.61%, 20 min). In contrast, intra-mPfc perfusion with a concentration of the GABA(B) receptor antagonist CGP35348 (100 microM, 120 min) which when given alone did not influence basal glutamate levels in the VTA was associated with an enhanced KCl-induced stimulation of VTA glutamate release (+375.19+/-89.69%, 40 min). Furthermore, this enhancement was reversed in the presence of the selective GABA(B) receptor agonist baclofen (10 microM, 120 min). The present findings suggest a key role for the prefrontal cortex in the regulation of glutamate release in the VTA. Furthermore, we demonstrate a selective cortical GABA(B) receptor-mediated inhibition of glutamate transmission in the VTA. These findings may be important in the context of abnormalities in amino acid neurotransmission at the network level in schizophrenia.
机译:内侧前额叶皮层(mPfc)中含有谷氨酸的锥体神经元投射到腹侧被盖区(VTA),在其中它们突触在含有中皮层边缘多巴胺的细胞体和GABA中神经元上。在本研究中,我们在完好无损的大鼠大脑中采用双探针微渗析法,以单独的去极化浓度的氯化钾(KCl)(100 mM,20分钟)并在存在局部GABA(A)的情况下研究mPfc内灌注的影响。 )和GABA(B)受体对VTA谷氨酸释放的阻滞作用。 mPfc内KCl瞬时增加VTA谷氨酸释放(+71.48 +/- 14.29%,20分钟)。浓度为GABA(A)受体拮抗剂双小分子的mPfc内灌注(10 microM,120分钟)不影响mPfc KCl内诱导的VTA谷氨酸释放增加(+102.35 +/- 33.61%,20分钟) 。相比之下,mPfc内灌注浓度为GABA(B)受体拮抗剂CGP35348(100 microM,120分钟)的情况(单独给予时不影响VTA中的基础谷氨酸水平)与KCl诱导的VTA刺激增强有关谷氨酸释放(+375.19 +/- 89.69%,40分钟)。此外,在选择性GABA(B)受体激动剂巴氯芬存在下,这种增强作用被逆转(10 microM,120分钟)。本研究结果表明前额叶皮层在VTA中谷氨酸释放的调节中的关键作用。此外,我们证明了选择性皮质GABA(B)受体介导的VTA中谷氨酸传递的抑制。这些发现在精神分裂症网络水平的氨基酸神经传递异常的背景下可能是重要的。

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