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人多能干细胞来源的心外膜祖细胞可分化为心内膜样内皮细胞。

Human pluripotent stem cell-derived epicardial progenitors can differentiate to endocardial-like endothelial cells.

作者信息

Bao Xiaoping, Bhute Vijesh J, Han Tianxiao, Qian Tongcheng, Lian Xiaojun, Palecek Sean P

机构信息

Dept. of Chemical & Biological Engineering, University of Wisconsin, Madison, WI 53706 53706, USA.

Departments of Biomedical Engineering, Biology and Huck Institutes of the Life Sciences, The Pennsylvania State University, University Park, PA 16802.

出版信息

Bioeng Transl Med. 2017 Jun;2(2):191-201. doi: 10.1002/btm2.10062. Epub 2017 May 22.

Abstract

During heart development, epicardial progenitors contribute various cardiac lineages including smooth muscle cells, cardiac fibroblasts, and endothelial cells. However, their specific contribution to the human endothelium has not yet been resolved, at least in part due to the inability to expand and maintain human primary or pluripotent stem cell (hPSC)-derived epicardial cells. Here we first generated CDH5-2A-eGFP knock-in hPSC lines and differentiated them into self-renewing WT1+ epicardial cells, which gave rise to endothelial cells upon VEGF treatment . In addition, we found that the percentage of endothelial cells correlated with WT1 expression in a WT1-2A-eGFP reporter line. The resulting endothelial cells displayed many endocardium-like endothelial cell properties, including high expression levels of endocardial-specific markers, nutrient transporters and well-organized tight junctions. These findings suggest that human epicardial progenitors may have the capacity to form endocardial endothelium during development and have implications for heart regeneration and cardiac tissue engineering.

摘要

在心脏发育过程中,心外膜祖细胞可分化为多种心脏谱系细胞,包括平滑肌细胞、心脏成纤维细胞和内皮细胞。然而,它们对人类内皮细胞的具体贡献尚未明确,至少部分原因是无法扩增和维持源自人类原代或多能干细胞(hPSC)的心外膜细胞。在此,我们首先构建了CDH5-2A-eGFP敲入hPSC系,并将其分化为可自我更新的WT1+心外膜细胞,这些细胞在接受VEGF处理后可分化为内皮细胞。此外,我们发现,在WT1-2A-eGFP报告基因系中,内皮细胞的百分比与WT1表达相关。所产生的内皮细胞表现出许多心内膜样内皮细胞特性,包括心内膜特异性标志物、营养转运蛋白的高表达水平以及组织良好的紧密连接。这些发现表明,人类心外膜祖细胞在发育过程中可能具有形成心内膜内皮的能力,这对心脏再生和心脏组织工程具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0cc9/5675097/357f87475bd0/BTM2-2-191-g001.jpg

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