生物工程胚胎模型

IF 37.6
Xufeng Xue, Yue Liu, Jianping Fu
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引用次数: 0

摘要

基于干细胞的胚胎模型概括了早期发育过程中的对称破坏、模式形成和组织形态发生,为研究包括人类在内的哺乳动物物种的发育提供了有希望的实验工具。尽管在利用培养干细胞进行胚胎建模方面取得了相当大的进展,但产生具有高保真度、效率、可控性和体内样细胞组织和组织结构的胚胎模型仍然具有挑战性。这主要是由于哺乳动物干细胞在不受控制的培养环境中自我组织和分化的内在变异性。在这篇综述中,我们认为生物工程工具可以有效地控制拓扑边界和动态化学和机械信号,可以有效地指导对称破缺,模式形成,组织形态发生和组织-组织相互作用。我们讨论了胚胎发育过程中的模式形成和形态发生,并研究了不同的胚胎模型,以强调生物工程策略在开发具有更高效率、可重复性、可控性、复杂性和体内相关性的模型中的重要性。基于干细胞的胚胎模型可以概括从着床前到早期器官发生的组织模式和形态发生事件等发育过程。这篇综述讨论了如何利用生物工程方法来产生更有效、可控、可复制和可扩展的胚胎模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Bioengineering embryo models

Bioengineering embryo models
Stem cell-based embryo models, which recapitulate symmetry breaking, pattern formation and tissue morphogenesis during early development, provide promising experimental tools to study the development of mammalian species, including humans. Despite considerable progress in embryo modelling using cultured stem cells, generating embryo models with high fidelity, efficiency, controllability, and in vivo-like cellular organization and tissue architecture remains challenging. This is largely due to intrinsic variabilities in self-organization and differentiation of mammalian stem cells in uncontrolled culture environments. In this Review, we argue that bioengineering tools, which are powerful for controlling topological boundaries and dynamic chemical and mechanical signals, can efficiently guide symmetry breaking, pattern formation, tissue morphogenesis and tissue–tissue interactions. We discuss pattern formation and morphogenesis during embryonic development and examine different embryo models to highlight the importance of bioengineering strategies in developing models with improved efficiency, reproducibility, controllability, complexity and in vivo relevance. Stem cell-based embryo models can recapitulate developmental processes such as tissue patterning and morphogenetic events from pre-implantation to early organogenesis. This Review discusses how bioengineering approaches can be used to generate more efficient, controllable, reproducible and scalable embryo models.
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