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Potential utility of optogenetics in the study of depression

机译:光遗传学在抑郁症研究中的潜在用途

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Novel antidepressants are needed to enhance the health and quality of life of the hundreds of millions of depressed individuals worldwide who remain inadequately treated with today's approaches. In reality, no new class of antidepressant medication has been introduced in over 50 years. This insufficiency of current drug treatments is evident to those eager to pursue invasive experimental options like that of deep brain stimulation. Encouragingly, human brain imaging studies and animal work implicate strong relationships between depressive symptoms and patterns of brain activity, which are now open to more empirical assessments using optogenetics. Recent advances in optogenetics permit control over specific subtypes of neurons or their afferent or efferent projections and can greatly further our understanding of the neural mechanisms involved in depression and the mechanism of action of deep brain stimulation and perhaps chemical antidepressants. Here, we discuss how optogenetic tools are being used to answer a broad range of molecular, cellular, and circuit-level questions pertaining to depression that, up until now, have been resistant to other experimental approaches. The emergence of optogenetic technology, when combined with the best-validated animal models of depression, will dramatically increase knowledge about the basic neurobiology of depression, as well as facilitate the development of more effective antidepressant treatments.
机译:需要新型的抗抑郁药来增强全球数亿抑郁症患者的健康和生活质量,这些患者仍然无法用当今的方法治疗。实际上,在过去的50多年中没有引入任何新的抗抑郁药物。对于渴望追求侵入性实验选择(如深部脑刺激治疗)的人们来说,当前的药物治疗不足是显而易见的。令人鼓舞的是,人脑影像学研究和动物工作暗示了抑郁症状与大脑活动模式之间的密切关系,现在人们可以使用光遗传学进行更多的经验评估。光遗传学的最新进展允许控制神经元的特定亚型或其传入或传出的投射,并且可以极大地增进我们对与抑郁有关的神经机制以及深部脑刺激和化学抗抑郁药的作用机制的理解。在这里,我们讨论了光遗传学工具如何用于回答与抑郁症有关的广泛的分子,细胞和电路水平的问题,这些问题迄今为止一直对其他实验方法具有抵抗力。光遗传学技术的出现,与经过最佳验证的抑郁症动物模型相结合,将大大增加对抑郁症基本神经生物学的了解,并有助于开发更有效的抗抑郁药。

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