Zhou Yiming, Yan Enhui, Cheng Deqin, Zhu Huiwen, Liu Zhiyuan, Chen Xi, Ma Lan, Liu Xing
The State Key Laboratory of Medical Neurobiology and MOE Frontiers Center for Brain Science, School of Basic Medical Sciences and the Institutes of Brain Science, Fudan University, Shanghai, China.
Front Behav Neurosci. 2020 Nov 16;14:558074. doi: 10.3389/fnbeh.2020.558074. eCollection 2020.
Drug-paired cues inducing memory retrieval by expressing drug-seeking behaviors present a major challenge to drug abstinence. How neural circuits coordinate for drug memory retrieval remains unclear. Here, we report that exposure of the training chamber where cocaine-conditioned place preference (CPP) was performed increased neuronal activity in the core of nucleus accumbens (AcbC), ventral CA1 (vCA1), and medial prefrontal cortex (mPFC), as shown by elevated pERK and c-Fos levels. Chemogenetic inhibition of neuronal activity in the vCA1 and AcbC, but not mPFC, reduced the time spent in the cocaine-paired compartment, suggesting that the vCA1 and AcbC are required for the retrieval of cocaine-CPP memory and are key nodes recruited for cocaine memory storage. Furthermore, chemogenetic inhibition of the AcbC-projecting vCA1 neurons, but not the AcbC-projecting mPFC neurons, decreased the expression of cocaine-CPP. Optogenetic inhibition of the vCA1-AcbC projection, but not the mPFC-AcbC projection, also reduced the preference for the cocaine-paired compartment. Taken together, the cue-induced natural recall of cocaine memory depends on vCA1-AcbC circuits. The connectivity from the vCA1 to the AcbC may store the information of the cue-cocaine reward association critically required for memory retrieval. These data thus provide insights into the neural circuit basis of retrieval of drug-related memory.
通过引发觅药行为来诱导记忆检索的药物配对线索对戒毒构成了重大挑战。神经回路如何协同进行药物记忆检索仍不清楚。在此,我们报告称,进行可卡因条件性位置偏爱(CPP)训练的实验箱暴露会增加伏隔核核心(AcbC)、腹侧海马体1区(vCA1)和内侧前额叶皮质(mPFC)的神经元活动,pERK和c-Fos水平升高表明了这一点。对vCA1和AcbC而非mPFC中的神经元活动进行化学遗传抑制,减少了在与可卡因配对的隔室中停留的时间,这表明vCA1和AcbC是可卡因CPP记忆检索所必需的,并且是参与可卡因记忆存储的关键节点。此外,对投射到AcbC的vCA1神经元而非投射到AcbC的mPFC神经元进行化学遗传抑制,会降低可卡因CPP的表现。对vCA1-AcbC投射而非mPFC-AcbC投射进行光遗传学抑制,也会降低对与可卡因配对隔室的偏爱。综上所述,线索诱导的可卡因记忆自然回忆依赖于vCA1-AcbC回路。从vCA1到AcbC的连接可能关键地存储了记忆检索所需的线索-可卡因奖赏关联信息。因此,这些数据为药物相关记忆检索的神经回路基础提供了见解。