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人心肌细胞衍生的人心外膜细胞增强心肌细胞驱动的心脏再生。

Epicardial cells derived from human embryonic stem cells augment cardiomyocyte-driven heart regeneration.

机构信息

The Anne McLaren Laboratory, Wellcome Trust - MRC Cambridge Stem Cell Institute, University of Cambridge, Cambridge, UK.

Division of Cardiovascular Medicine, University of Cambridge, Cambridge, UK.

出版信息

Nat Biotechnol. 2019 Aug;37(8):895-906. doi: 10.1038/s41587-019-0197-9. Epub 2019 Aug 2.

Abstract

The epicardium and its derivatives provide trophic and structural support for the developing and adult heart. Here we tested the ability of human embryonic stem cell (hESC)-derived epicardium to augment the structure and function of engineered heart tissue in vitro and to improve efficacy of hESC-cardiomyocyte grafts in infarcted athymic rat hearts. Epicardial cells markedly enhanced the contractility, myofibril structure and calcium handling of human engineered heart tissues, while reducing passive stiffness compared with mesenchymal stromal cells. Transplanted epicardial cells formed persistent fibroblast grafts in infarcted hearts. Cotransplantation of hESC-derived epicardial cells and cardiomyocytes doubled graft cardiomyocyte proliferation rates in vivo, resulting in 2.6-fold greater cardiac graft size and simultaneously augmenting graft and host vascularization. Notably, cotransplantation improved systolic function compared with hearts receiving either cardiomyocytes alone, epicardial cells alone or vehicle. The ability of epicardial cells to enhance cardiac graft size and function makes them a promising adjuvant therapeutic for cardiac repair.

摘要

心外膜及其衍生物为心脏的发育和成年提供营养和结构支持。在这里,我们测试了人胚胎干细胞(hESC)衍生的心外膜增强体外工程化心脏组织的结构和功能的能力,并改善了 hESC 心肌细胞在梗死的无胸腺大鼠心脏中的移植效果。心外膜细胞明显增强了人心工程化心脏组织的收缩性、肌原纤维结构和钙处理能力,同时与间充质基质细胞相比降低了被动僵硬度。移植的心外膜细胞在梗死的心脏中形成了持久的成纤维细胞移植物。hESC 衍生的心外膜细胞和心肌细胞的共移植使体内移植物心肌细胞的增殖率增加了一倍,导致心脏移植物的大小增加了 2.6 倍,同时增加了移植物和宿主的血管化。值得注意的是,与单独接受心肌细胞、心外膜细胞或载体的心脏相比,共移植改善了收缩功能。心外膜细胞增强心脏移植物大小和功能的能力使其成为心脏修复的一种有前途的辅助治疗方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e7ae/6824587/5b6a860e614c/nihms-1532782-f0001.jpg

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