Chen Wenqing, Li Chen, Liang Wanmin, Li Yunqi, Zou Zhuoheng, Xie Yunxuan, Liao Yangzeng, Yu Lin, Lin Qianyi, Huang Meiying, Li Zesong, Zhu Xiao
Department of Laboratory Medicine, Hangzhou Medical College, Hangzhou, China.
Zhu's Team, Guangdong Medical University, Zhanjiang, China.
Front Aging Neurosci. 2022 Apr 19;14:867863. doi: 10.3389/fnagi.2022.867863. eCollection 2022.
Optogenetic is a technique that combines optics and genetics to control specific neurons. This technique usually uses adenoviruses that encode photosensitive protein. The adenovirus may concentrate in a specific neural region. By shining light on the target nerve region, the photosensitive protein encoded by the adenovirus is controlled. Photosensitive proteins controlled by light can selectively allow ions inside and outside the cell membrane to pass through, resulting in inhibition or activation effects. Due to the high precision and minimally invasive, optogenetics has achieved good results in many fields, especially in the field of neuron functions and neural circuits. Significant advances have also been made in the study of many clinical diseases. This review focuses on the research of optogenetics in the field of neurobiology. These include how to use optogenetics to control nerve cells, study neural circuits, and treat diseases by changing the state of neurons. We hoped that this review will give a comprehensive understanding of the progress of optogenetics in the field of neurobiology.
光遗传学是一种将光学和遗传学相结合以控制特定神经元的技术。该技术通常使用编码光敏蛋白的腺病毒。腺病毒可能会集中在特定的神经区域。通过向目标神经区域照射光线,来控制腺病毒编码的光敏蛋白。受光控制的光敏蛋白可以选择性地允许细胞膜内外的离子通过,从而产生抑制或激活作用。由于具有高精度和微创性,光遗传学在许多领域都取得了良好的效果,尤其是在神经元功能和神经回路领域。在许多临床疾病的研究中也取得了重大进展。本综述重点关注光遗传学在神经生物学领域的研究。这些研究包括如何利用光遗传学控制神经细胞、研究神经回路以及通过改变神经元状态来治疗疾病。我们希望这篇综述能让人全面了解光遗传学在神经生物学领域的进展。