Engineering multiscale structural orders for high-fidelity embryoids and organoids.

Engineering multiscale structural orders for high-fidelity embryoids and organoids.
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DOI:
10.1016/j.stem.2022.04.003
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发表时间:
2022-05-05
期刊:
影响因子:
23.9
通讯作者:
Fu, Jianping
Fu, Jianping
中科院分区:
医学1区
文献类型:
--
作者:
Shao, Yue;Fu, Jianping

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类胚胎和类器官为人类生物学和医学带来了巨大的希望。在此,我们讨论了用于开发高保真胚胎和类器官的概念和技术框架,这些胚胎和类器官显示组织和器官水平的表型和功能,这是解码发育程序和改善翻译应用所迫切需要的。本文通过对哺乳动物胚胎发育过程中输入信号层次的剖析,综述了近年来在类胚和类器官多尺度结构重建方面的研究进展。还讨论了用于组织和器官水平的细胞组织和微环境的多尺度,多模态结构工程的生物工程工具,以提出综合的,生物工程导向的方法来实现下一代,高保真的胚状体和类器官。在这篇综述中,Shao和Fu概述了在类胚和类器官中重建多尺度结构顺序的最新进展,并讨论了用于创新生物工程导向方法以实现下一代高保真类胚和类器官的概念和技术框架。
Embryoids and organoids hold great promise for human biology and medicine. Herein, we discuss conceptual and technological frameworks useful for developing high-fidelity embryoids and organoids that display tissue- and organ-level phenotypes and functions, which are critically needed for decoding developmental programs and improving translational applications. Through dissecting the layers of inputs controlling mammalian embryogenesis, we review recent progress in reconstructing multiscale structural orders in embryoids and organoids. Bioengineering tools useful for multiscale, multimodal structural engineering of tissue- and organ-level cellular organization and microenvironment are also discussed to present integrative, bioengineering-directed approaches to achieve next-generation, high-fidelity embryoids and organoids. In this review, Shao and Fu outline recent progress in reconstructing multiscale structural orders in embryoids and organoids, and discuss conceptual and technological frameworks useful for innovating bioengineering-directed approaches to achieve next-generation, high-fidelity embryoids and organoids
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