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Using c-fos to study neuronal ensembles in corticostriatal circuitry of addiction

机译:使用c-fos研究成瘾皮质上皮回路中的神经元集成

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摘要

Learned associations between drugs and environment play an important role in addiction and are thought to be encoded within specific patterns of sparsely distributed neurons called neuronal ensembles. This hypothesis is supported by correlational data from in vivo electrophysiology and cellular imaging studies in relapse models in rodents. In particular, cellular imaging with the immediate early gene c-fos and its protein product Fos has been used to identify sparsely distributed neurons that were strongly activated during conditioned drug behaviors such as drug self-administration and context- and cue-induced reinstatement of drug seeking. Here we review how Fos and the c-fos promoter have been employed to demonstrate causal roles for Fos-expressing neuronal ensembles in prefrontal cortex and nucleus accumbens in conditioned drug behaviors. This work has allowed identification of unique molecular and electrophysiological alterations within Fos-expressing neuronal ensembles that may contribute to the development and expression of learned associations in addiction.
机译:习得的药物与环境之间的关联在成瘾中起着重要作用,并且被认为是在稀疏分布的神经元特定模式(称为神经元合奏)中编码的。啮齿类动物复发模型中的体内电生理学和细胞成像研究的相关数据支持了这一假设。特别是,具有立即早期基因c-fos及其蛋白产物Fos的细胞成像已被用于识别稀疏分布的神经元,这些神经元在条件性药物行为(如药物自我给药以及情境和提示诱导的药物恢复)中被强烈激活寻找。在这里,我们回顾了如何使用Fos和c-fos启动子来证明在条件性药物行为中前额叶皮层和伏隔核中Fos表达神经元集合的因果作用。这项工作已允许识别表达Fos的神经元整合体内独特的分子和电生理学改变,这些改变可能有助于成瘾中学习的联想的发展和表达。

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