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Organoid technologies meet genome engineering

机译:类器官技术与基因组工程相结合

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摘要

Three‐dimensional (3D) stem cell differentiation cultures recently emerged as a novel model system for investigating human embryonic development and disease progression in vitro, complementing existing animal and two‐dimensional (2D) cell culture models. Organoids, the 3D self‐organizing structures derived from pluripotent or somatic stem cells, can recapitulate many aspects of structural organization and functionality of their in vivo organ counterparts, thus holding great promise for biomedical research and translational applications. Importantly, faithful recapitulation of disease and development processes relies on the ability to modify the genomic contents in organoid cells. The revolutionary genome engineering technologies, CRISPR/Cas9 in particular, enable investigators to generate various reporter cell lines for prompt validation of specific cell lineages as well as to introduce disease‐associated mutations for disease modeling. In this review, we provide historical overviews, and discuss technical considerations, and potential future applications of genome engineering in 3D organoid models.
机译:三维(3D)干细胞分化培养最近作为一种新型模型系统出现,用于在体外研究人类胚胎发育和疾病进展,是对现有动物和二维(2D)细胞培养模型的补充。类器官,是一种来自多能或体干细胞的3D自组织结构,可以概括其体内器官对应物的结构组织和功能的许多方面,因此对生物医学研究和翻译应用具有广阔的前景。重要的是,对疾病和发育过程的忠实总结取决于修饰类器官细胞中基因组含量的能力。革命性的基因组工程技术,特别是CRISPR / Cas9,使研究人员能够生成各种报告基因细胞系,以迅速验证特定细胞系,并引入疾病相关的突变进行疾病建模。在这篇综述中,我们提供了历史概述,并讨论了技术考虑因素以及基因组工程在3D类器官模型中的潜在未来应用。

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