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3D brain Organoids derived from pluripotent stem cells: promising experimental models for brain development and neurodegenerative disorders

机译:源自多能干细胞的3D脑类器官素:关于脑发育和神经退行性疾病的有前途的实验模型

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摘要

Three-dimensional (3D) brain organoids derived from human pluripotent stem cells (hPSCs), including embryonic stem cells (ESCs) and induced pluripotent stem cells (iPSCs), appear to recapitulate the brain’s 3D cytoarchitectural arrangement and provide new opportunities to explore disease pathogenesis in the human brain. Human iPSC (hiPSC) reprogramming methods, combined with 3D brain organoid tools, may allow patient-derived organoids to serve as a preclinical platform to bridge the translational gap between animal models and human clinical trials. Studies using patient-derived brain organoids have already revealed novel insights into molecular and genetic mechanisms of certain complex human neurological disorders such as microcephaly, autism, and Alzheimer’s disease. Furthermore, the combination of hiPSC technology and small-molecule high-throughput screening (HTS) facilitates the development of novel pharmacotherapeutic strategies, while transcriptome sequencing enables the transcriptional profiling of patient-derived brain organoids. Finally, the addition of CRISPR/Cas9 genome editing provides incredible potential for personalized cell replacement therapy with genetically corrected hiPSCs. This review describes the history and current state of 3D brain organoid differentiation strategies, a survey of applications of organoids towards studies of neurodevelopmental and neurodegenerative disorders, and the challenges associated with their use as in vitro models of neurological disorders.
机译:源自人类多能干细胞(hPSC)(包括胚胎干细胞(ESC)和诱导性多能干细胞(iPSC))的三维(3D)脑类器官似乎可以概括大脑的3D细胞结构安排,并提供探索疾病发病机理的新机会在人脑中。人类iPSC(hiPSC)重编程方法与3D脑类器官工具相结合,可以使患者来源的类器官充当临床前平台,以弥合动物模型与人类临床试验之间的翻译鸿沟。使用源自患者的大脑类器官的研究已经揭示了对某些复杂的人类神经系统疾病(例如小头畸形,自闭症和阿尔茨海默氏病)的分子和遗传机制的新颖见解。此外,hiPSC技术与小分子高通量筛选(HTS)的结合促进了新型药物治疗策略的发展,而转录组测序可对患者衍生的脑器官进行转录分析。最后,CRISPR / Cas9基因组编辑功能的增加为通过基因校正的hiPSC进行个性化细胞替代疗法提供了不可思议的潜力。这篇综述描述了3D脑类器官分化策略的历史和当前状态,类器官在神经发育和神经退行性疾病研究中的应用调查以及与将其用作神经系统疾病的体外模型相关的挑战。

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