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首页> 外文期刊>Alcoholism: Clinical and experimental research >Glutamate-dopamine cotransmission and reward processing in addiction.
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Glutamate-dopamine cotransmission and reward processing in addiction.

机译:谷氨酸-多巴胺共传递和成瘾中的奖赏处理。

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While Dale's principle of "one neuron, one neurotransmitter" has undergone revisions to incorporate evidence of the corelease of atypical neurotransmitters such as neuropeptides, the corelease of classical neurotransmitters has only recently been realized. Surprisingly, numerous studies now indicate that the corelease of neurotransmitters in the mammalian central nervous system is not an obscure and rare phenomenon but is widespread and involves most classical neurotransmitters systems. However, the suggestion that glutamate can be coreleased with dopamine (DA) has remained controversial. Furthermore, glutamate-DA cotransmission has not yet been seriously considered in the context of the neurocircuitry of addiction. If glutamate is in fact coreleased with DA as some evidence now suggests, this may have significant implications for advancing our understanding of the interactive role that these 2 neurotransmitters play in cognitive and reward processes. In this commentary, we review the evidence for and against glutamate as a cotransmitter and discuss the potential role of glutamate-DA corelease in addiction. In particular, we describe a recently proposed model in which coreleased glutamate transmits a temporally precise prediction error signal of reward described by Schultz et al., whereas the function of coreleased DA is to exert prolonged modulatory influences on neuronal activity. In addition, we suggest that as alcohol consumption transitions from recreational use to addiction, there is a corresponding transition in the reward valence signal from better than predicted to worse than predicted.
机译:戴尔的“一种神经元,一种神经递质”的原理已经过修订,以纳入非典型神经递质(如神经肽)共释放的证据,而经典神经递质的共释放直到最近才实现。出人意料的是,现在许多研究表明,在哺乳动物中枢神经系统中神经递质的共释放不是一种晦涩罕见的现象,而是普遍存在的,并且涉及大多数经典的神经递质系统。然而,关于谷氨酸可以与多巴胺(DA)共同释放的建议仍然存在争议。此外,在成瘾的神经回路中,尚未认真考虑谷氨酸-DA共传递。如果谷氨酸实际上与DA共释放,正如一些证据表明的那样,这可能对我们进一步理解这两种神经递质在认知和奖励过程中所起的交互作用具有重要意义。在这篇评论中,我们回顾了支持和反对谷氨酸作为共递质的证据,并讨论了谷氨酸-DA共释放在成瘾中的潜在作用。特别地,我们描述了一种最近提出的模型,其中共释放的谷氨酸盐传输由Schultz等人描述的时间精确的奖励预测误差信号,而共释放的DA的功能是对神经元活动施加延长的调节作用。此外,我们建议,随着饮酒量从娱乐用途向成瘾的转变,奖励价信号中会有相应的变化,从好于预期到差于预期。

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