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光遗传学:控制癫痫、抑郁症及中枢神经系统肿瘤中神经细胞功能的新分子方法。

Optogenetics: the new molecular approach to control functions of neural cells in epilepsy, depression and tumors of the central nervous system.

作者信息

Camporeze Bruno, Manica Bruno Alcântara, Bonafé Gabriel Alves, Ferreira Jivago Jordão Camargos, Diniz Aurélio Lourenço, de Oliveira Carlos Tadeu Parisi, Mathias Junior Luis Roberto, de Aguiar Paulo Henrique Pires, Ortega Manoela Marques

机构信息

Postgraduate Program in Health Science, Laboratory of Cellular and Molecular Biology and Bioactive Compounds, São Francisco University (USF) Bragança Paulista-SP, Brazil.

Postgraduate Program in Health Science, Department of Neurosurgery, Institute of Medical Assistance of The State Public Servant (IAMSPE) São Paulo-SP, Brazil.

出版信息

Am J Cancer Res. 2018 Oct 1;8(10):1900-1918. eCollection 2018.

Abstract

The optogenetic tools have been described as valuable techniques to study neural activity through light stimulation, as well as potential neuromodulator approaches in the management of several central nervous system (CNS) diseases. Since the first bacteriorhodopsin protein described as a single-component light-activated regulator of transmembrane ion flow description, in 1980's, the focus has been on channel proteins for neurobiology; however, the advances in engineering techniques showed involvement changes in cellular biological behavior in several types of proteins involved in cell cytoskeleton regulation, motility and gene expression. Although the use of this technology has been published in many papers, a question still remains regarding real results and potential clinical applicability in CNS diseases, as well as the publications scarcity that systematically analyses the published results. Lastly, the aim of this review is to discuss the experimental results, molecular mechanisms and potential clinical applications of optogenetic tools in epilepsy and depression treatment, as well as its applicability in the treatment of CNS tumors.

摘要

光遗传学工具已被描述为通过光刺激研究神经活动的有价值技术,以及在多种中枢神经系统(CNS)疾病管理中的潜在神经调节方法。自20世纪80年代首次将细菌视紫红质蛋白描述为跨膜离子流的单组分光激活调节剂以来,神经生物学的重点一直是通道蛋白;然而,工程技术的进步表明,参与细胞骨架调节、运动和基因表达的几种蛋白质会改变细胞生物学行为。尽管这项技术的应用已在许多论文中发表,但关于其在中枢神经系统疾病中的实际结果和潜在临床适用性,以及系统分析已发表结果的文献稀缺性,仍然存在一个问题。最后,本综述的目的是讨论光遗传学工具在癫痫和抑郁症治疗中的实验结果、分子机制和潜在临床应用,以及其在中枢神经系统肿瘤治疗中的适用性。

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