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Illuminating circuitry relevant to psychiatric disorders with optogenetics

机译:用光遗传学照明与精神疾病有关的电路

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The brain's remarkable capacity to generate cognition and behavior is mediated by an extraordinarily complex set of neural interactions that remain largely mysterious. This complexity poses a significant challenge in developing therapeutic interventions to ameliorate psychiatric disease. Accordingly, few new classes of drugs have been made available for patients with mental illness since the 1950s. Optogenetics offers the ability to selectively manipulate individual neural circuit elements that underlie disease-relevant behaviors and is currently accelerating the pace of preclinical research into neurobiological mechanisms of disease. In this review, we highlight recent findings from studies that employ optogenetic approaches to gain insight into normal and aberrant brain function relevant to mental illness. Emerging data from these efforts offers an exquisitely detailed picture of disease-relevant neural circuits in action, and hints at the potential of optogenetics to open up entirely new avenues in the treatment of psychiatric disorders.
机译:大脑产生认知和行为的非凡能力是由极其复杂的神经相互作用集介导的,这些神经相互作用在很大程度上仍然是神秘的。这种复杂性在开发改善精神疾病的治疗性干预方面提出了重大挑战。因此,自1950年代以来,很少有新类别的药物可供精神疾病患者使用。光遗传学提供选择性地操纵与疾病相关的行为基础的单个神经回路元件的能力,并且目前正在加速对疾病的神经生物学机制进行临床前研究的步伐。在这篇综述中,我们重点介绍了采用光遗传学方法进行研究的最新发现,以深入了解与精神疾病相关的正常和异常脑功能。这些努力的最新数据提供了与疾病相关的神经回路的作用的详细描述,并暗示了光遗传学有可能为治疗精神疾病开辟全新的途径。

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