光遗传学:破解和治疗神经系统疾病的关键

Fuzhou Wang
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引用次数: 1

摘要

光遗传学是生物学的一个新兴分支,它结合遗传学和光学来实现生物体内特定细胞的精确光控制。这是一种研究可兴奋细胞的方法,它使用嵌入细胞膜并被光(即“opto”)激活的蛋白质。这种蛋白质(视蛋白)存在于大多数动物的视网膜中,也存在于一些植物中,如绿藻。为了将光活化蛋白整合到神经元膜中,需要将从其他生物获得的视紫红质基因引入神经元,因此是“遗传学”。光遗传学在现代神经生物学领域应用广泛,在神经回路、行为、中枢神经系统疾病、精神障碍等机制的研究中发挥着重要作用。本文结合光遗传学技术的发展,介绍其优化和定位表达,不仅为光遗传学的研究和发展提供参考,也为神经系统疾病的深入研究和治疗提供可能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optogenetics: The Key to Deciphering and Curing Neurological Diseases
Optogenetics is an emerging branch of biology that combines genetics and optics to achieve precise light control of specific cells in organisms. It is a method of studying excitable cells that uses proteins that are embedded in the cell membrane and are activated by light (i.e. “opto”). Such proteins (opsins) are found in most animals in the retina of the eyes, as well as in some plants, such as green algae. In order to integrate photoactivated proteins into neuronal membranes, it is necessary to introduce rhodopsin genes obtained from other organisms into neurons, hence the “genetics”. Optogenetics is widely used in the field of modern neurobiology, and plays an essential role in the study of the mechanism of neural circuits, behaviors, central nervous system diseases, and mental disorders. Based on the development of optogenetics technology, this paper introduces its optimization and localization expression, which not only provides references for the research and development of optogenetics, but also provides the possibility for in-depth research and treatment of neurological diseases.
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