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Modeling endodermal organ development and diseases using human pluripotent stem cell-derived organoids

机译:使用人多能干细胞衍生有机体模拟内胚层器官发育和疾病

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摘要

Recent advances in development of protocols for directed differentiation from human pluripotent stem cells (hPSCs) to defined lineages, in combination with 3D organoid technology, have facilitated the generation of various endoderm-derived organoids for in vitro modeling of human gastrointestinal development and associated diseases. In this review, we discuss current state-of-the-art strategies for generating hPSC-derived endodermal organoids including stomach, liver, pancreatic, small intestine, and colonic organoids. We also review the advantages of using this system to model various human diseases and evaluate the shortcomings of this technology. Finally, we emphasize how other technologies, such as genome editing and bioengineering, can be incorporated into the 3D hPSC-organoid models to generate even more robust and powerful platforms for understanding human organ development and disease modeling.
机译:关于从人类多能干细胞(HPSC)的定向分化的协议的最新进展与3D细胞体技术组合,促进了用于体外建模的人胃肠道发育和相关疾病的各种内胚层衍生的有机体的产生。在本综述中,我们讨论了当前的最先进的策略,用于产生包括胃,肝,胰腺,小肠和结肠有机体的HPSC衍生的内胚组织体。我们还审查了使用该系统模拟各种人类疾病并评估这项技术的缺点的优势。最后,我们强调了如何将其他技术(例如基因组编辑和生物工程)纳入3D HPSC器件模型,以产生更强大,强大的平台,以了解人体器官发展和疾病建模。

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