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IGF binding protein-3 regulates hematopoietic stem cell and endothelial precursor cell function during vascular development

机译:IGF结合蛋白3在血管发育过程中调节造血干细胞和内皮前体细胞功能

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摘要

We asked whether the hypoxia-regulated factor, insulin-like growth factor binding protein-3 (IGFBP3), could modulate stem cell factor receptor (c-kit+), stem cell antigen-1 (sca-1+), hematopoietic stem cell (HSC), or CD34+ endothelial precursor cell (EPC) function. Exposure of CD34+ EPCs to IGFBP3 resulted in rapid differentiation into endothelial cells and dose-dependent increases in cell migration and capillary tube formation. IGFBP3-expressing plasmid was injected into the vitreous of neonatal mice undergoing the oxygen-induced retinopathy (OIR) model. In separate studies, GFP-expressing HSCs were transfected with IGFBP3 plasmid and injected into the vitreous of OIR mice. Administering either IGFBP3 plasmid alone or HSCs transfected with the plasmid resulted in a similar reduction in areas of vasoobliteration, protection of the developing vasculature from hyperoxia-induced regression, and reduction in preretinal neovascularization compared to control plasmid or HSCs transfected with control plasmid. In conclusion, IGFBP3 mediates EPC migration, differentiation, and capillary formation in vitro. Targeted expression of IGFBP3 protects the vasculature from damage and promotes proper vascular repair after hyperoxic insult in the OIR model. IGFBP3 expression may represent a physiological adaptation to ischemia and potentially a therapeutic target for treatment of ischemic conditions.
机译:我们询问缺氧调节因子胰岛素样生长因子结合蛋白3(IGFBP3)是否可以调节干细胞因子受体(c-kit + ),干细胞抗原1(sca- 1 + ),造血干细胞(HSC)或CD34 + 内皮前体细胞(EPC)的功能。 CD34 + EPCs暴露于IGFBP3导致迅速分化为内皮细胞,并且剂量依赖性增加细胞迁移和毛细管形成。将表达IGFBP3的质粒注入经历氧诱导性视网膜病(OIR)模型的新生小鼠的玻璃体中。在单独的研究中,用IGFBP3质粒转染表达GFP的HSC,并将其注射到OIR小鼠的玻璃体中。与对照质粒或用对照质粒转染的HSC相比,单独施用IGFBP3质粒或用该质粒转染的HSC导致血管闭塞面积减少类似,保护发展中的血管免受高氧诱导的退化,并减少视网膜前新生血管形成。总之,IGFBP3在体外介导EPC迁移,分化和毛细血管形成。在OIR模型中高氧损伤后,IGFBP3的靶向表达可保护脉管系统免受损伤并促进适当的血管修复。 IGFBP3表达可能代表对缺血的生理适应性,并可能代表治疗缺血性疾病的治疗靶标。

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