Behfar Atta, Perez-Terzic Carmen, Faustino Randolph S, Arrell D Kent, Hodgson Denice M, Yamada Satsuki, Puceat Michel, Niederländer Nicolas, Alekseev Alexey E, Zingman Leonid V, Terzic Andre
Marriott Heart Disease Research Program, Division of Cardiovascular Diseases, Department of Medicine, Mayo Clinic, Rochester, MN 55905, USA.
J Exp Med. 2007 Feb 19;204(2):405-20. doi: 10.1084/jem.20061916. Epub 2007 Feb 5.
Embryonic stem cells have the distinct potential for tissue regeneration, including cardiac repair. Their propensity for multilineage differentiation carries, however, the liability of neoplastic growth, impeding therapeutic application. Here, the tumorigenic threat associated with embryonic stem cell transplantation was suppressed by cardiac-restricted transgenic expression of the reprogramming cytokine TNF-alpha, enhancing the cardiogenic competence of recipient heart. The in vivo aptitude of TNF-alpha to promote cardiac differentiation was recapitulated in embryoid bodies in vitro. The procardiogenic action required an intact endoderm and was mediated by secreted cardio-inductive signals. Resolved TNF-alpha-induced endoderm-derived factors, combined in a cocktail, secured guided differentiation of embryonic stem cells in monolayers produce cardiac progenitors termed cardiopoietic cells. Characterized by a down-regulation of oncogenic markers, up-regulation, and nuclear translocation of cardiac transcription factors, this predetermined population yielded functional cardiomyocyte progeny. Recruited cardiopoietic cells delivered in infarcted hearts generated cardiomyocytes that proliferated into scar tissue, integrating with host myocardium for tumor-free repair. Thus, cardiopoietic programming establishes a strategy to hone stem cell pluripotency, offering a tumor-resistant approach for regeneration.
胚胎干细胞具有独特的组织再生潜力,包括心脏修复。然而,它们多谱系分化的倾向伴随着肿瘤生长的风险,阻碍了其治疗应用。在此,通过心脏特异性转基因表达重编程细胞因子TNF-α,抑制了与胚胎干细胞移植相关的致瘤威胁,增强了受体心脏的心肌生成能力。TNF-α在体外胚胎体中重现了其促进心脏分化的体内能力。促心肌生成作用需要完整的内胚层,并由分泌的心脏诱导信号介导。解析出的TNF-α诱导的内胚层衍生因子组合成一种混合物,确保了单层胚胎干细胞的定向分化,产生了称为心脏生成细胞的心脏祖细胞。该预先确定的细胞群体以致癌标志物的下调、心脏转录因子的上调和核转位为特征,产生了功能性心肌细胞后代。在梗死心脏中递送的募集到的心脏生成细胞产生了增殖进入瘢痕组织的心肌细胞,与宿主心肌整合以实现无肿瘤修复。因此,心脏生成编程建立了一种优化干细胞多能性的策略,为再生提供了一种抗肿瘤方法。