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用于神经系统疾病的体细胞重编程:技术、机制、潜在应用及挑战

Somatic Cell Reprogramming for Nervous System Diseases: Techniques, Mechanisms, Potential Applications, and Challenges.

作者信息

Chen Jiafeng, Huang Lijuan, Yang Yue, Xu Wei, Qin Qingchun, Qin Rongxing, Liang Xiaojun, Lai Xinyu, Huang Xiaoying, Xie Minshan, Chen Li

机构信息

Department of Neurology, the First Affiliated Hospital of Guangxi Medical University, Nanning 530021, China.

Key Laboratory of Longevity and Aging-Related Diseases of Chinese Ministry of Education, Nanning 530021, China.

出版信息

Brain Sci. 2023 Mar 22;13(3):524. doi: 10.3390/brainsci13030524.

Abstract

Nervous system diseases present significant challenges to the neuroscience community due to ethical and practical constraints that limit access to appropriate research materials. Somatic cell reprogramming has been proposed as a novel way to obtain neurons. Various emerging techniques have been used to reprogram mature and differentiated cells into neurons. This review provides an overview of somatic cell reprogramming for neurological research and therapy, focusing on neural reprogramming and generating different neural cell types. We examine the mechanisms involved in reprogramming and the challenges that arise. We herein summarize cell reprogramming strategies to generate neurons, including transcription factors, small molecules, and microRNAs, with a focus on different types of cells.. While reprogramming somatic cells into neurons holds the potential for understanding neurological diseases and developing therapeutic applications, its limitations and risks must be carefully considered. Here, we highlight the potential benefits of somatic cell reprogramming for neurological disease research and therapy. This review contributes to the field by providing a comprehensive overview of the various techniques used to generate neurons by cellular reprogramming and discussing their potential applications.

摘要

由于伦理和实际限制,神经系统疾病给神经科学界带来了重大挑战,这些限制阻碍了获取合适的研究材料。体细胞重编程已被提议作为一种获取神经元的新方法。各种新兴技术已被用于将成熟和分化的细胞重编程为神经元。本综述概述了用于神经学研究和治疗的体细胞重编程,重点是神经重编程和生成不同类型的神经细胞。我们研究了重编程过程中涉及的机制以及出现的挑战。我们在此总结了生成神经元的细胞重编程策略,包括转录因子、小分子和微小RNA,重点关注不同类型的细胞。虽然将体细胞重编程为神经元具有理解神经疾病和开发治疗应用的潜力,但其局限性和风险必须仔细考虑。在这里,我们强调了体细胞重编程在神经疾病研究和治疗中的潜在益处。本综述通过全面概述用于通过细胞重编程生成神经元的各种技术并讨论其潜在应用,为该领域做出了贡献。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c552/10046178/a0883b82ff33/brainsci-13-00524-g001.jpg

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