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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Hypotension-induced dopamine release in prefrontal cortex is mediated by local glutamatergic projections at the level of nerve terminals.
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Hypotension-induced dopamine release in prefrontal cortex is mediated by local glutamatergic projections at the level of nerve terminals.

机译:低血压诱导的前额叶皮层中的多巴胺释放是由神经末梢水平的局部谷氨酸能投射介导的。

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摘要

In a previous study it was shown that nitroprusside-induced hypotension strongly enhances the release of dopamine (DA) in the prefrontal cortex (PFC). In the present study we have further investigated the mechanism involved in this effect. Glutamate receptor antagonists were infused into the ventral tegmental area (VTA) or PFC, while DA release was measured in the ipsilateral PFC and hypotension was applied by intravenous infusion of nitroprusside. Infusion into the VTA of neither a NMDA receptor antagonist (CPP), nor a non-NMDA antagonist (DNQX) affected the hypotension-induced increase of DA in the PFC. Intracortical infusion of CPP also failed to affect significantly, whereas local infusion of DNQX inhibited the hypotension-enhanced release of DA dose-dependently. The stimulation of DA release was relatively small in the VTA as well as in the nucleus accumbens when compared with the response in the PFC. It is concluded that DA released from mesocortical neurons can be modulated by two different mechanisms: first, by glutamate afferents to the VTA that modify the nerve-impulse flow of DA neurons; and, second, by glutamate afferents to the PFC that act at the level of the DA nerve terminals. The behaviour context (arousal or stress versus hypotension) determines which type of interaction predominates.
机译:在先前的研究中表明,硝普钠引起的低血压强烈增强了额叶前皮质(PFC)中多巴胺(DA)的释放。在本研究中,我们进一步研究了这种效应所涉及的机制。将谷氨酸受体拮抗剂注入腹侧被盖区(VTA)或PFC中,同时在同侧PFC中测量DA的释放,并通过静脉输注硝普钠降低血压。将NMDA受体拮抗剂(CPP)和非NMDA拮抗剂(DNQX)注入VTA均不会影响低血压诱导的PFC中DA的升高。皮质内CPP输注也没有显着影响,而局部DNQX输注剂量依赖性地抑制DA的低血压增强释放。与PFC中的反应相比,VTA和伏隔核中DA释放的刺激相对较小。结论是,可以通过两种不同的机制来调节从中皮层神经元释放的DA:首先,通过谷氨酸传入VTA来改变DA神经元的神经冲动流;第二,谷氨酸进入PFC,作用于DA神经末梢。行为背景(听觉或压力与低血压的关系)决定了哪种类型的交互作用占主导。

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