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采用遗传修饰小鼠胚胎干细胞构建有血供的心脏组织

Construction of vascularized cardiac tissue from genetically modified mouse embryonic stem cells
2012-07-13 09:23点击:5次发表评论
作者:He, W.ab, Ye, L.a, Li, S.a, Liu, H.a, Wu, B.a, Wan
机构: 军事医学科学院生物工程研究所细胞工程重点实验室
期刊: J HEART LUNG TRANSPL2012年2月2期31卷

Department of Cell Engineering, Institute of Biotechnology, Academy of Military Medical Sciences, 20 Dongdajie Street, Fengtai District, Beijing 100071, China

Background: The aim of myocardial tissue engineering is to repair or regenerate damaged myocardium with engineered cardiac tissue constructed by a combination of cells and scaffolds in vitro. However, this strategy has been hampered by the lack of cardiomyocytes and the significant cell death after transplantation in vivo. Methods: In this study we explored the feasibility of in vitro construction of vascularized cardiac muscle using genetically modified mouse embryonic stem cells (ESCs) transfected by pMHC-neo/SV40-hygro. A stirred bioreactor was used to facilitate the formation of a large number of ESC-derived cardiomyocytes, which were then mixed with human umbilical vein endothelial cells (HUVECs) and mouse embryonic fibroblasts (MEFs) in a liquid collagen scaffold to construct highly vascularized cardiac tissue in vitro. Results: The resulting tissue constructs were transplanted into dorsal subcutaneous sites of nude mice. Tumor formation was not detected in all samples and vascularized cardiac tissue could survive after transplantation. Vascularization of the implanted cardiac muscle was significantly enhanced by the addition of HUVECs and MEFs, which resulted in a thicker myocardium. The combination of genetically modified ESCs and stirred bioreactor cultivation not only benefited the large-scale production of pure ESC-derived cardiomyocytes, but also effectively controlled the potential risk of undifferentiated ESCs. Conclusions: Using liquid collagen as scaffold, the enriched cardiomyocytes derived from genetically modified ESCs mixed with HUVECs and MEFs in 3-dimensional culture resulted in highly vascularized cardiac tissues. © 2012 International Society for Heart and Lung Transplantation. All rights reserved.

Chen, Z.; Department of Cell Engineering, Institute of Biotechnology, Academy of Military Medical Sciences, 20 Dongdajie Street, Fengtai District, Beijing 100071, China; email: chenzl23@sina.com

通讯作者:Chen, Z.; Department of Cell Engineering, Institute of Biotechnology, Academy of Military Medical Sciences, 20 Dongdajie Street, Fengtai District, Beijing 100071, China; email: chenzl23@sina.com
学科代码:呼吸病学   关键词:采用遗传修饰小鼠胚胎干细胞构建有血供的心脏组织
来源: Scopus
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