Optogenetics in chronic neurodegenerative diseases, controlling the brain with light: A systematic review

IF 2.9 3区 医学 Q2 NEUROSCIENCES Journal of Neuroscience Research Pub Date : 2024-04-08 DOI:10.1002/jnr.25321
Rojine El Hajj, Tareq Al Sagheer, Nissrine Ballout
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Abstract

Neurodegenerative diseases are progressive disorders characterized by synaptic loss and neuronal death. Optogenetics combines optical and genetic methods to control the activity of specific cell types. The efficacy of this approach in neurodegenerative diseases has been investigated in many reviews, however, none of them tackled it systematically. Our study aimed to review systematically the findings of optogenetics and its potential applications in animal models of chronic neurodegenerative diseases and compare it with deep brain stimulation and designer receptors exclusively activated by designer drugs techniques. The search strategy was performed based on the PRISMA guidelines and the risk of bias was assessed following the Systematic Review Centre for Laboratory Animal Experimentation tool. A total of 247 articles were found, of which 53 were suitable for the qualitative analysis. Our data revealed that optogenetic manipulation of distinct neurons in the brain is efficient in rescuing memory impairment, alleviating neuroinflammation, and reducing plaque pathology in Alzheimer's disease. Similarly, this technique shows an advanced understanding of the contribution of various neurons involved in the basal ganglia pathways with Parkinson's disease motor symptoms and pathology. However, the optogenetic application using animal models of Huntington's disease, multiple sclerosis, and amyotrophic lateral sclerosis was limited. Optogenetics is a promising technique that enhanced our knowledge in the research of neurodegenerative diseases and addressed potential therapeutic solutions for managing these diseases' symptoms and delaying their progression. Nevertheless, advanced investigations should be considered to improve optogenetic tools' efficacy and safety to pave the way for their translatability to the clinic.

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光遗传学在慢性神经退行性疾病中的应用,用光控制大脑:系统综述
神经退行性疾病是以突触丧失和神经元死亡为特征的渐进性疾病。光遗传学结合了光学和遗传学方法来控制特定细胞类型的活动。许多综述都对这种方法在神经退行性疾病中的疗效进行了研究,但没有一篇综述系统地探讨了这一问题。我们的研究旨在系统回顾光遗传学的研究成果及其在慢性神经退行性疾病动物模型中的潜在应用,并将其与脑深部刺激和通过设计药物技术专门激活的设计受体进行比较。检索策略根据 PRISMA 指南执行,偏倚风险根据实验动物实验系统综述中心工具进行评估。共找到 247 篇文章,其中 53 篇适合进行定性分析。我们的数据显示,对大脑中不同神经元的光遗传学操作能有效挽救阿尔茨海默病的记忆损伤、减轻神经炎症并减少斑块病理变化。同样,这项技术也显示了对基底神经节通路中各种神经元对帕金森病运动症状和病理的贡献的深入理解。然而,利用亨廷顿氏病、多发性硬化症和肌萎缩侧索硬化症动物模型进行的光遗传学应用还很有限。光遗传学是一种前景广阔的技术,它增进了我们对神经退行性疾病的研究,并为控制这些疾病的症状和延缓其进展提供了潜在的治疗方案。尽管如此,我们仍应考虑开展更深入的研究,以提高光遗传学工具的有效性和安全性,从而为将其应用于临床铺平道路。
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来源期刊
Journal of Neuroscience Research
Journal of Neuroscience Research 医学-神经科学
CiteScore
9.50
自引率
2.40%
发文量
145
审稿时长
1 months
期刊介绍: The Journal of Neuroscience Research (JNR) publishes novel research results that will advance our understanding of the development, function and pathophysiology of the nervous system, using molecular, cellular, systems, and translational approaches. JNR covers both basic research and clinical aspects of neurology, neuropathology, psychiatry or psychology. The journal focuses on uncovering the intricacies of brain structure and function. Research published in JNR covers all species from invertebrates to humans, and the reports inform the readers about the function and organization of the nervous system, with emphasis on how disease modifies the function and organization.
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