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Optogenetic modulation of neural circuits that underlie reward seeking

机译:奖励寻求基础的神经回路的光遗传调制

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The manifestation of complex neuropsychiatric disorders, such as drug and alcohol addiction, is thought to result from progressive maladaptive alterations in neural circuit function. Clearly, repeated drug exposure alters a distributed network of neural circuit elements. However, a more precise understanding of addiction has been hampered by an inability to control and, consequently, identify specific circuit components that underlie addictive behaviors. The development of optogenetic strategies for selectively modulating the activity of genetically defined neuronal populations has provided a means for determining the relationship between circuit function and behavior with a level of precision that has been previously unobtainable. Here, we briefly review the main optogenetic studies that have contributed to elucidate neural circuit connectivity within the ventral tegmental area and the nucleus accumbens, two brain nuclei that are essential for the manifestation of addiction-related behaviors. Additional targeted manipulation of genetically defined neural populations in these brain regions, as well as afferent and efferent structures, promises to delineate the cellular mechanisms and circuit components required for the transition from natural goal-directed behavior to compulsive reward seeking despite negative consequences.
机译:复杂的神经精神疾病的表现,例如药物和酒精成瘾,被认为是由于神经回路功能的进行性适应不良改变引起的。显然,重复的药物暴露改变了神经回路元件的分布式网络。但是,由于无法控制并因此无法确定构成成瘾行为基础的特定电路组件,因此妨碍了对成瘾的更精确理解。用于选择性地调节遗传定义的神经元群体的活动的光遗传学策略的发展提供了一种以以前无法获得的精确度确定电路功能与行为之间关系的手段。在这里,我们简要回顾了主要的光遗传学研究,这些研究有助于阐明腹侧被盖区和伏隔核(成瘾相关行为的表现至关重要的两个脑核)内的神经回路连通性。这些大脑区域以及传入和传出的结构中对遗传定义的神经群体进行的其他有针对性的操纵,有望描绘出从自然目标导向的行为向强迫性寻求奖励过渡(尽管带来负面后果)所需的细胞机制和电路成分。

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