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多细胞肝类器官:多样化特化细胞组分的生成与重要性。

Multicellular Liver Organoids: Generation and Importance of Diverse Specialized Cellular Components.

机构信息

General, Emergency and Transplant Surgery Department, ASST-Sette Laghi, 21100 Varese, Italy.

Department of Medicine and Innovation Technology (DiMIT), University of Insubria, 21100 Varese, Italy.

出版信息

Cells. 2023 May 19;12(10):1429. doi: 10.3390/cells12101429.

Abstract

Over 40,000 patients in the United States are estimated to suffer from end-stage liver disease and acute hepatic failure, for which liver transplantation is the only available therapy. Human primary hepatocytes (HPH) have not been employed as a therapeutic tool due to the difficulty in growing and expanding them in vitro, their sensitivity to cold temperatures, and tendency to dedifferentiate following two-dimensional culture. The differentiation of human-induced pluripotent stem cells (hiPSCs) into liver organoids (LO) has emerged as a potential alternative to orthotropic liver transplantation (OLT). However, several factors limit the efficiency of liver differentiation from hiPSCs, including a low proportion of differentiated cells capable of reaching a mature phenotype, the poor reproducibility of existing differentiation protocols, and insufficient long-term viability in vitro and in vivo. This review will analyze various methodologies being developed to improve hepatic differentiation from hiPSCs into liver organoids, paying particular attention to the use of endothelial cells as supportive cells for their further maturation. Here, we demonstrate why differentiated liver organoids can be used as a research tool for drug testing and disease modeling, or employed as a bridge for liver transplantation following liver failure.

摘要

据估计,美国有超过 40000 名患者患有终末期肝病和急性肝衰竭,肝移植是唯一可用的治疗方法。由于难以在体外生长和扩增、对低温敏感以及二维培养后容易去分化,人类原代肝细胞(HPH)尚未被用作治疗工具。人诱导多能干细胞(hiPSC)分化为肝类器官(LO)已成为肝移植(OLT)的潜在替代方法。然而,有几个因素限制了 hiPSC 向肝细胞的分化效率,包括能够达到成熟表型的分化细胞比例低、现有分化方案的可重复性差,以及体外和体内长期生存能力不足。本文将分析目前正在开发的各种方法,以提高 hiPSC 向肝类器官的肝分化效率,特别关注内皮细胞作为支持细胞促进其进一步成熟的应用。本文还演示了为什么分化的肝类器官可以用作药物测试和疾病建模的研究工具,或者在肝衰竭后用作肝移植的桥梁。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8e9f/10217024/a6d4cc6a7983/cells-12-01429-g001.jpg

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