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新兴的肝脏类器官平台与技术。

Emerging liver organoid platforms and technologies.

作者信息

Lam Do Thuy Uyen Ha, Dan Yock Young, Chan Yun-Shen, Ng Huck-Hui

机构信息

Laboratory of precision disease therapeutics, Genome Institute of Singapore, 60 Biopolis Street, Singapore, 138672, Singapore.

Department of Medicine, Yong Loo Lin School of Medicine, National University of Singapore, 10 Medical Dr, Singapore, 117597, Singapore.

出版信息

Cell Regen. 2021 Aug 3;10(1):27. doi: 10.1186/s13619-021-00089-1.

Abstract

Building human organs in a dish has been a long term goal of researchers in pursue of physiologically relevant models of human disease and for replacement of worn out and diseased organs. The liver has been an organ of interest for its central role in regulating body homeostasis as well as drug metabolism. An accurate liver replica should contain the multiple cell types found in the organ and these cells should be spatially organized to resemble tissue structures. More importantly, the in vitro model should recapitulate cellular and tissue level functions. Progress in cell culture techniques and bioengineering approaches have greatly accelerated the development of advance 3-dimensional (3D) cellular models commonly referred to as liver organoids. These 3D models described range from single to multiple cell type containing cultures with diverse applications from establishing patient-specific liver cells to modeling of chronic liver diseases and regenerative therapy. Each organoid platform is advantageous for specific applications and presents its own limitations. This review aims to provide a comprehensive summary of major liver organoid platforms and technologies developed for diverse applications.

摘要

在培养皿中构建人体器官一直是研究人员长期追求的目标,目的是建立与人类疾病生理相关的模型,以及替换受损和患病的器官。肝脏因其在调节身体内环境平衡以及药物代谢中的核心作用而备受关注。一个精确的肝脏复制品应包含该器官中发现的多种细胞类型,并且这些细胞应在空间上组织起来以类似于组织结构。更重要的是,体外模型应重现细胞和组织水平的功能。细胞培养技术和生物工程方法的进展极大地加速了先进的三维(3D)细胞模型的发展,这些模型通常被称为肝脏类器官。所描述的这些3D模型涵盖了从包含单一到多种细胞类型的培养物,具有从建立患者特异性肝细胞到慢性肝病建模和再生治疗等多种应用。每个类器官平台对于特定应用都具有优势,同时也存在自身的局限性。本综述旨在全面总结为不同应用而开发的主要肝脏类器官平台和技术。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ca02/8329140/6c672185c362/13619_2021_89_Fig1_HTML.jpg

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