首页> 外文期刊>Journal of thrombosis and haemostasis: JTH >In vitro and in vivo proliferation, differentiation and migration of cardiac endothelial progenitor cells (SCA1+/CD31+ side-population cells).
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In vitro and in vivo proliferation, differentiation and migration of cardiac endothelial progenitor cells (SCA1+/CD31+ side-population cells).

机译:心脏内皮祖细胞(SCA1 + / CD31 +侧群细胞)的体外和体内增殖,分化和迁移。

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BACKGROUND: Side-population (SP) cells are a select population identified by a capacity to efflux Hoechst dye and are enriched for stem/progenitor cell activity. Previous studies suggested that cardiac SP (CSP) cells could be divided into SCA1(+)/CD31(-) and SCA1(+)/CD31(+) CSP cells. SCA1(+)/CD31(-) CSP cells have been shown to be cardiac stem/progenitor cells. However, SCA1(+)/CD31(+) CSP cells have not been fully characterized. OBJECTIVE: The aim of the present study was to characterize SCA1(+)/CD31(+) CSP cells in the adult mouse heart, and investigate their abilities to proliferate, differentiate, vascularize and migrate in vitro and in vivo. RESULTS: Using fluorescence-activated cell sorting (FACS), RT-PCR, and assays of cell proliferation, differentiation and migration, and a murine model of myocardial infarction (MI), we showed that SCA1(+)/CD31(+) CSP cells express stem cell and endothelial-specific genes, and reside in the blood vessels. These cells were able to proliferate, differentiate, migrate and vascularize in vitro and in vivo. After MI, SDF-1alpha and CXCR4 were up-regulated in the damaged myocardium and on SCA1(+)/CD31(+) CSP cells, respectively. Our results further showed that SDF-1alpha induced migration of these cells in vitro. Importantly, we found that SCA1(+)/CD31(+) CSP cells could migrate into the ischemic region from the non-ischemic area within the myocardium and form a vascular tube-like structure after MI. CONCLUSIONS: Based on the gene expression profile, localization of SCA1(+)/CD31(+) CSP cells, and their ability to proliferate, differentiate, migrate and vascularize in vitro and in vivo, we postulate that SCA1(+)/CD31(+) CSP cells may represent endothelial progenitor cells in the mouse heart.
机译:背景:侧群(SP)细胞是通过选择流出Hoechst染料的能力鉴定的选择群体,并且富含干/祖细胞活性。先前的研究表明,心脏SP(CSP)细胞可分为SCA1(+)/ CD31(-)和SCA1(+)/ CD31(+)CSP细胞。 SCA1(+)/ CD31(-)CSP细胞已被证明是心脏干/祖细胞。但是,SCA1(+)/ CD31(+)CSP细胞尚未完全表征。目的:本研究的目的是表征成年小鼠心脏中的SCA1(+)/ CD31(+)CSP细胞,并研究它们在体外和体内增殖,分化,血管形成和迁移的能力。结果:使用荧光激活细胞分选(FACS),RT-PCR和细胞增殖,分化和迁移的测定,和心肌梗塞(MI)的小鼠模型,我们表明SCA1(+)/ CD31(+)CSP细胞表达干细胞和内皮特异性基因,并位于血管中。这些细胞能够在体外和体内增殖,分化,迁移和血管化。 MI后,SDF-1alpha和CXCR4分别在受损的心肌和SCA1(+)/ CD31(+)CSP细胞上调。我们的结果进一步表明,SDF-1alpha在体外诱导了这些细胞的迁移。重要的是,我们发现SCA1(+)/ CD31(+)CSP细胞可以从心肌内的非缺血区域迁移到缺血区域,并在MI后形成血管管状结构。结论:基于基因表达谱,SCA1(+)/ CD31(+)CSP细胞的定位及其在体外和体内增殖,分化,迁移和血管化的能力,我们推测SCA1(+)/ CD31( +)CSP细胞可能代表小鼠心脏中的内皮祖细胞。

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