被盖腹侧区
光遗传学
多巴胺能
神经科学
心理学
多巴胺
多巴胺能途径
脑刺激奖励
奖励制度
药品
机制(生物学)
社会行为
药物滥用
中边缘通路
有条件地点偏好
伏隔核
基底神经节
生物神经网络
社会关系
上瘾
精神分裂症(面向对象编程)
生物
钙显像
抗抑郁药
中缝核
行为神经科学
作者
Wei Zheng,Xiaoxing Liu,Tangsheng Lu,Xinyou Lv,Xuefang Guan,Yifan Yu,Xue Li,Zhe Wang,Kai Yuan,Jeffrey W. Grimm,Trevor W. Robbins,J. Shi,Li Lü,Yan-Xue Xue
标识
DOI:10.1038/s41467-026-71357-4
摘要
Drugs of abuse promote substance use disorder (SUD) by hijacking mesolimbic circuits that normally process natural rewards. Among these, social rewards exhibit therapeutic potential, but the underlying neural substrates remain unclear. Using a multimodal approach integrating in vivo single-neuron calcium imaging, optogenetic manipulation, and electrophysiology in male rats, we identified two distinct dopaminergic ensembles in the ventral tegmental area (VTA) that respectively encode social reward and drug seeking. Notably, these antagonistic ensembles exert reciprocal influence through competitive interactions that shape behavioral outcomes. Furthermore, circuit mapping revealed divergent connectivity patterns, with social reward-responsive dopaminergic ensembles receiving preferential input from the dorsal raphe nucleus (DRN). Activation of the DRN-VTA pathway recapitulates the protective effects of social reward against drug seeking. In this study, we uncovered a dynamic competition between functionally specialized dopaminergic ensembles through which social reward attenuates drug seeking, offering insights that may inform development of novel strategies for SUD treatment. Social rewards hold therapeutic potential for alleviating drug relapse, yet the neural substrates remain unclear. Here, authors show that social reward and drug relapse activate distinct dopaminergic populations within the VTA, which dynamically compete to regulate behavioral outcomes.
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