首页> 美国卫生研究院文献>The Journal of Neuroscience >Ventromedial Prefrontal Cortex Pyramidal Cells Have a Temporal Dynamic Role in Recall and Extinction of Cocaine-Associated Memory
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Ventromedial Prefrontal Cortex Pyramidal Cells Have a Temporal Dynamic Role in Recall and Extinction of Cocaine-Associated Memory

机译:前内侧前额叶皮层锥体细胞在可卡因相关记忆的召回和消灭中具有时间动态作用

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摘要

In addicts, associative memories related to the rewarding effects of drugs of abuse can evoke powerful craving and drug seeking urges, but effective treatment to suppress these memories is not available. Detailed insight into the neural circuitry that mediates expression of drug-associated memory is therefore of crucial importance. Substantial evidence from rodent models of addictive behavior points to the involvement of the ventromedial prefrontal cortex (vmPFC) in conditioned drug seeking, but specific knowledge of the temporal role of vmPFC pyramidal cells is lacking. To this end, we used an optogenetics approach to probe the involvement of vmPFC pyramidal cells in expression of a recent and remote conditioned cocaine memory. In mice, we expressed Channelrhodopsin-2 (ChR2) or Halorhodopsin (eNpHR3.0) in pyramidal cells of the vmPFC and studied the effect of activation or inhibition of these cells during expression of a cocaine-contextual memory on days 1–2 (recent) and ∼3 weeks (remote) after conditioning. Whereas optical activation of pyramidal cells facilitated extinction of remote memory, without affecting recent memory, inhibition of pyramidal cells acutely impaired recall of recent cocaine memory, without affecting recall of remote memory. In addition, we found that silencing pyramidal cells blocked extinction learning at the remote memory time-point. We provide causal evidence of a critical time-dependent switch in the contribution of vmPFC pyramidal cells to recall and extinction of cocaine-associated memory, indicating that the circuitry that controls expression of cocaine memories reorganizes over time.
机译:在成瘾者中,与滥用药物的奖励作用有关的联想记忆会引起强烈的渴望和寻求毒品的冲动,但是尚无有效的方法来抑制这些记忆。因此,深入研究介导药物相关记忆表达的神经回路至关重要。来自成瘾行为的啮齿动物模型的大量证据表明腹侧前额叶皮层(vmPFC)参与条件性药物寻找,但缺少对vmPFC锥体细胞的暂时性作用的专门知识。为此,我们使用了光遗传学方法来探究vmPFC锥体细胞在近期和远程条件可卡因记忆中的表达。在小鼠中,我们在vmPFC的锥体细胞中表达Channelrhodopsin-2(ChR2)或Halorhodopsin(eNpHR3.0),并研究了可卡因语境记忆在第1-2天表达过程中这些细胞的激活或抑制作用(最近)和调理后约3周(远程)。锥体细胞的光活化促进了远端记忆的消失,而又不影响最近的记忆,而锥体细胞的抑制则严重损害了最近可卡因记忆的记忆,而不影响远端记忆的记忆。此外,我们发现沉默的锥体细胞在远程记忆时间点阻止了灭绝学习。我们提供了关键的时间依赖性开关在vmPFC锥体细胞对召回和消灭可卡因相关记忆的贡献中的因果证据,表明控制可卡因记忆表达的电路会随着时间重新组织。

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