首页> 外文期刊>Journal of vascular research >Improved Arteriogenesis with Simultaneous Skeletal Muscle Repair in Ischemic Tissue by SCL+ Multipotent Adult Progenitor Cell Clones from Peripheral Blood.
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Improved Arteriogenesis with Simultaneous Skeletal Muscle Repair in Ischemic Tissue by SCL+ Multipotent Adult Progenitor Cell Clones from Peripheral Blood.

机译:通过外周血SCL +多能成体祖细胞克隆,在缺血组织中同时进行骨骼肌修复来改善动脉生成。

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Background: The CD34- murine stem cell line RM26 cloned from peripheral blood mononuclear cells has been shown to generate hematopoietic progeny in lethally irradiated animals. The peripheral blood-derived cell clones expresses a variety of mesodermal and erythroid/myeloid transcription factors suggesting a multipotent differentiation potential like the bone marrow-derived 'multipotent adult progenitor cells' (MAP-C). Methods: SCL+ CD34- RM26 cells were transfused intravenously into mice suffering from chronic hind-limb ischemia, evaluating the effect of stem cells on collateral artery growth and simultaneous skeletal muscle repair. Results: RM26 cells are capable of differentiating in vitro into endothelial cells when cultured on the appropriate collagen matrix. Activation of the SCL stem cell enhancer (SCL+) is mediated through the binding to two Ets and one GATA site and cells start to express milieu- and growth condition-dependent levels of the endothelial markers CD31 (PECAM) and Flt-1 (VEGF-R1). Intravenously infused RM26 cells significantly improved the collateral blood flow (arteriogenesis) and neo-angiogenesis formation in a murine hind-limb ischemia transplant model. Although transplanted RM26 cells did not integrate into the growing collateral arteries, cells were found adjacent to local arteriogenesis, but instead integrated into the ischemic skeletal muscle exclusively in the affected limb for simultaneous tissue repair. Conclusion: These data suggest that molecularly primed hem-/mesangioblast-type adult progenitor cells can circulate in the peripheral blood improving perfusion of tissues with chronic ischemia and extending beyond the vascular compartment. Copyright (c) 2004 S. Karger AG, Basel.
机译:背景:从外周血单核细胞克隆的CD34鼠干细胞系RM26已显示在经致死剂量照射的动物中可产生造血后代。外周血来源的细胞克隆表达多种中胚层和类红细胞/髓样转录因子,提示其具有多能分化潜能,如骨髓来源的“多能成年祖细胞”(MAP-C)。方法:将SCL + CD34-RM26细胞静脉内输注到患有慢性后肢缺血的小鼠中,评估干细胞对侧支动脉生长和同时骨骼肌修复的影响。结果:当在适当的胶原蛋白基质上培养时,RM26细胞能够在体外分化为内皮细胞。 SCL干细胞增强剂(SCL +)的激活是通过与两个Ets和一个GATA位点的结合来介导的,细胞开始表达与环境和生长条件有关的内皮标记CD31(PECAM)和Flt-1(VEGF- R1)。在鼠后肢缺血移植模型中,静脉注射RM26细胞显着改善了侧支血流(动脉生成)和新血管生成的形成。尽管移植的RM26细胞没有整合到正在生长的侧支动脉中,但是发现这些细胞与局部动脉生成相邻,而是仅整合到患肢的局部缺血性骨骼肌中,以便同时修复组织。结论:这些数据表明,分子引发的hem //成血管细胞类型的成年祖细胞可以在外周血中循环,从而改善具有慢性缺血的组织的灌注并延伸到血管腔外。版权所有(c)2004 S.Karger AG,巴塞尔。

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