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首页> 外文期刊>Journal of Thrombosis and Thrombolysis >Exposure to platelets promotes functional properties of endothelial progenitor cells
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Exposure to platelets promotes functional properties of endothelial progenitor cells

机译:暴露于血小板可促进内皮祖细胞的功能特性

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Recent evidence indicates that endothelial progenitor cells (EPCs) have an important role in the process of repair following vascular injury, and that platelets mediate their recruitment to sites of injury. Platelets and EPCs can interact and bind directly. However, there is limited information on the effect of platelets on EPC function following this interaction. We, therefore, aimed to assess the in vitro effect of platelets on functional properties of EPCs. Human EPCs were isolated from donated Buffy coats and purified on a magnetic separation column specific for CD133. They were incubated either on fibronectin matrix, or co-incubated with washed platelets (isolated from healthy volunteers), for 7 days. Number of EPC colony forming units (CFU) was quantified, and endothelial cell lineage confirmed by immunostaining. Functional properties of the cultured cells were evaluated by MTT—proliferation assay and migration assay using the Boyden chamber. Co-incubation of EPCs with platelets compared to incubation of EPCs alone (on fibronectin matrix) resulted in higher number of CFUs after 7 days (6.5 ± 1.3 vs. 3.5 ± 0.5 CFUs/well, respectively, P = 0.005). In addition, co-incubation of EPCs with platelets versus EPCs alone was associated with higher proportion of living cells, by the MTT assay (0.2 ± 0.01 vs. 0.12 ± 0.04 MTT 570 nm respectively, P = 0.003), and higher number of migrated EPCs, assessed by the migration assay (1400 ± 212 vs. 580 ± 180 migrated cells/2000 cells, respectively, P < 0.0001). In vitro exposure to platelets promotes the capacity of EPCs to form colonies, proliferate and migrate. Therefore, the interaction with platelets appears to augment EPC functional properties.
机译:最近的证据表明,内皮祖细胞(EPC)在血管损伤后的修复过程中具有重要作用,并且血小板介导了其募集到损伤部位。血小板和EPC可以直接相互作用并结合。然而,在这种相互作用之后,关于血小板对EPC功能的影响的信息有限。因此,我们旨在评估血小板对EPC功能特性的体外作用。从捐赠的Buffy外套中分离出人EPC,并在对CD133有特异性的磁分离柱上进行纯化。将它们在纤连蛋白基质上孵育,或与洗涤过的血小板(从健康志愿者中分离)共同孵育7天。量化EPC集落形成单位(CFU)的数量,并通过免疫染色确认内皮细胞谱系。使用Boyden室通过MTT增殖分析和迁移分析评估培养细胞的功能特性。与单独的EPC孵育(在纤连蛋白基质上)相比,EPC与血小板的共孵育导致7天后CFU数量更高(分别为6.5±1.3 vs. 3.5±0.5 CFU /孔,P = 0.005)。此外,通过MTT分析(分别为0.2±0.01 vs. 0.12±0.04 MTT 570 nm,P = 0.003),将EPC与血小板和单独的EPC共同孵育与活细胞比例更高有关,并且迁移的数量更高EPC,通过迁移分析评估(分别为1400±212对580±180个迁移的细胞/ 2000个细胞,P <0.0001)。体外暴露于血小板可增强EPC形成菌落,增殖和迁移的能力。因此,与血小板的相互作用似乎增强了EPC的功能特性。

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