人类多细胞肝脏模型的最新进展

Seon Ju Mun, Jaeseo Lee, Yong-Moon Shin, Vincent Eun, Youngmi Ji, M. Son
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引用次数: 0

摘要

肝脏是人体最重要的代谢器官。概括人类肝脏复杂器官结构和细胞组成的模型系统不足以研究肝脏生物学,也不足以在新药开发过程中测试毒性和有效性。最近建立的三维肝脏模型,包括球体和类器官、芯片上的器官、生物打印和脱细胞/再细胞化技术,提供了比传统的二维细胞培养模型和动物模型更好地模拟人类肝脏结构和功能特征的平台。本文综述了人类肝脏组织的结构和细胞组成,重点介绍了近年来多细胞人类肝脏模型的研究,这些模型通过实质细胞和非实质细胞的细胞通讯,概括了类似于活体的生理和形态学和功能方面的进展。我们讨论了先进的多细胞人类肝脏模型的应用、局限性和未来前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Recent advances in multicellular human liver models
The liver is the most important metabolic organ in the body. Model systems that recapitulate the complex organ structure and cell composition of the human liver are insufficient to study liver biology and to test toxicity and efficacy during new drug development. Recently established 3-dimensional liver models, including spheroids and organoids, organs-on-a-chip, bioprinting, and the decellularization/recellularization technique, have provided platforms that emulate the structural and functional characteristics of the human liver better than conventional 2-dimensional cell culture models and animal models. This review summarizes the architecture and cell compositions of human liver tissue, focusing on recent studies of multicellular human liver models that recapitulate in vivo-like physiologies with morphological and functional advances by the cellular communication of parenchymal and non-parenchymal cells. We discuss the applications, limitations, and future perspectives of advanced multicellular human liver models.
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