首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Aversive behavior induced by optogenetic inactivation of ventral tegmental area dopamine neurons is mediated by dopamine D2 receptors in the nucleus accumbens
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Aversive behavior induced by optogenetic inactivation of ventral tegmental area dopamine neurons is mediated by dopamine D2 receptors in the nucleus accumbens

机译:腹侧被盖区多巴胺神经元的光遗传学失活诱导的厌恶行为是由伏伏核中的多巴胺D2受体介导的

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摘要

Dopamine (DA) transmission from the ventral tegmental area (VTA) is critical for controlling both rewarding and aversive behaviors. The transient silencing of DA neurons is one of the responses to aversive stimuli, but its consequences and neural mechanisms regarding aversive responses and learning have largely remained elusive. Here, we report that optogenetic inactivation of VTA DA neurons promptly down-regulated DA levels and induced up-regulation of the neural activity in the nucleus accumbens (NAc) as evaluated by Fos expression. This optogenetic suppression of DA neuron firing immediately evoked aversive responses to the previously preferred dark room and led to aversive learning toward the optogenetically conditioned place. Importantly, this place aversion was abolished by knockdown of dopamine D2 receptors but not by that of D1 receptors in the NAc. Silencing of DA neurons in the VTA was thus indispensable for inducing aversive responses and learning through dopamine D2 receptors in the NAc.
机译:多巴胺(DA)从腹侧被盖区(VTA)传播对于控制奖励和厌恶行为至关重要。 DA神经元的短暂沉默是对厌恶性刺激的反应之一,但其后果以及有关厌恶性反应和学习的神经机制仍然难以捉摸。在这里,我们报告的VTA DA神经元的光遗传学失活迅速下调DA水平并诱导伏伏核(NAc)中神经活动的上调,如Fos表达所评估。 DA神经元放电的这种光遗传学抑制立即引起对先前优选暗室的厌恶反应,并导致对光遗传学条件场所的厌恶学习。重要的是,NAc中多巴胺D2受体的敲低消除了该地方的厌恶,但D1受体的敲除并未消除。因此,在VTA中沉默DA神经元对于诱导厌恶反应和通过NAc中的多巴胺D2受体学习是必不可少的。

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