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Endothelial progenitor cells derived from CD34 cells form cooperative vascular networks

机译:源自CD34细胞的内皮祖细胞形成协同血管网络

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Studies were conducted to investigate whether endothelial progenitor cells (EPCs) derived from CD34~+ cells could differentiate to endothelial- and smooth muscle-like cells, respectively. Differentiation was induced by either basic fibroblast growth factor (bFGF) or platelet-derived growth factor-BB (PDGF-BB). Further, the contribution of these cells to cooperative blood vessel formation was examined. Immunofluorescence microscopy and Western blot analysis were used to assess vascular smooth muscle (SMC) or endothelial (EC) cell differentiation. SMC (α-SM actin and calponin) or EC (CD31 and von Willebrand factor, vWF) markers showed significant expression. In contrast, expression of the stem/progenitor cell marker CD133 gradually decreased. To quantify the percentage of positive cells of smooth muscle cell marker and endothelial cell marker, flow cytometric analysis was performed, and the results demonstrated that up to 83.76% of PDGF-BB treated-cells were positive for α-SMA marker and up to 89.27% of bFGF-treated cells were positive for vWF marker. To assess functional properties of the endothelial- and smooth muscle-like cells and to demonstrate an association of the two cell types in vascular structures, we evaluated the capacity of these cells to form angiogenesis-like networks on Matrigel. Both endothelial-like cells plated in isolation and co-cultured with smooth muscle-like cells showed formation of vascular networks on Matrigel while smooth muscle-like cells alone did not. Co-culture of fluorescently labeled endothelial- (PKH26, red fluorochrome) and smooth muscle-like cells (PKH67, green fluorochrome) revealed that these cells formed cooperative networks of tubular structures on Matrigel. Collectively, our findings suggest that EPCs can differentiate into both smooth muscle- and endothelial-like cells and contribute to the development of cooperative vascular networks. Notably, this differentiation could also provide a stable foundation for maintenance of the newly formed vascular networks.
机译:进行了研究以研究源自CD34〜+细胞的内皮祖细胞(EPC)是否可以分别分化为内皮样和平滑肌样细胞。分化是由碱性成纤维细胞生长因子(bFGF)或血小板衍生生长因子BB(PDGF-BB)诱导的。此外,检查了这些细胞对协同血管形成的贡献。免疫荧光显微镜和蛋白质印迹分析用于评估血管平滑肌(SMC)或内皮(EC)细胞分化。 SMC(α-SM肌动蛋白和钙蛋白)或EC(CD31和von Willebrand因子,vWF)标记物表达显着。相反,干/祖细胞标志物CD133的表达逐渐降低。为了定量分析平滑肌细胞标记物和内皮细胞标记物的阳性细胞百分比,进行了流式细胞仪分析,结果表明,PDGF-BB处理的细胞中,高达83.76%的α-SMA标记物呈阳性,高达89.27。 bFGF处理的细胞的%为vWF标记阳性。为了评估内皮和平滑肌样细胞的功能特性,并证明两种细胞类型在血管结构中的关联,我们评估了这些细胞在基质胶上形成血管生成样网络的能力。分离铺板并与平滑肌样细胞共培养的两种内皮样细胞均显示在基质胶上形成了血管网络,而单独的平滑肌样细胞则没有。荧光标记的内皮细胞(PKH26,红色荧光染料)和平滑肌样细胞(PKH67,绿色荧光染料)的共培养表明,这些细胞在基质胶上形成了管状结构的协作网络。总的来说,我们的发现表明EPCs可以分化为平滑肌和内皮样细胞,并有助于合作性血管网络的发展。值得注意的是,这种分化也可以为维持新形成的血管网络提供稳定的基础。

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