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Design Principles for Pluripotent Stem Cell-Derived Organoid Engineering

机译:多能干细胞衍生的类器官工程的设计原理

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摘要

Human morphogenesis is a complex process involving distinct microenvironmental and physical signals that are manipulated in space and time to give rise to complex tissues and organs. Advances in pluripotent stem cell (PSC) technology have promoted the in vitro recreation of processes involved in human morphogenesis. The development of organoids from human PSCs represents one reliable source for modeling a large spectrum of human disorders, as well as a promising approach for drug screening and toxicological tests. Based on the “self-organization” capacity of stem cells, different PSC-derived organoids have been created; however, considerable differences between in vitro-generated PSC-derived organoids and their in vivo counterparts have been reported. Advances in the bioengineering field have allowed the manipulation of different components, including cellular and noncellular factors, to better mimic the in vivo microenvironment. In this review, we focus on different examples of bioengineering approaches used to promote the self-organization of stem cells, including assembly, patterning, and morphogenesis in vitro, contributing to tissue-like structure formation.
机译:人类形态发生是一个复杂的过程,涉及不同的微环境和物理信号,这些信号在空间和时间上受到操纵以产生复杂的组织和器官。多能干细胞(PSC)技术的进步促进了人类形态发生过程的体外再生。从人类PSC中开发类器官代表了一种可靠的来源,可用于对各种人类疾病进行建模,同时也是一种有前途的药物筛选和毒理学测试方法。基于干细胞的“自组织”能力,已经创建了不同的PSC衍生的类器官。但是,已经报道了体外产生的PSC衍生的类器官和其体内对应物之间的显着差异。生物工程领域的进步已允许操纵包括细胞和非细胞因子在内的不同成分,以更好地模拟体内微环境。在这篇综述中,我们集中于用于促进干细胞自组织的生物工程方法的不同实例,包括体外的组装,模式和形态发生,从而有助于组织样结构的形成。

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