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CD34+ cells augment endothelial cell differentiation of CD14+ endothelial progenitor cells in vitro

机译:CD34 +细胞在体外增强CD14 +内皮祖细胞的内皮细胞分化

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摘要

Neovascularization by endothelial progenitor cells (EPC) for the treatment of ischaemic diseases has been a topic of intense research. The CD34+ cell is often designated as EPC, because it contributes to repair of ischaemic injuries through neovascularization. However, incorporation of CD34+ cells into the neovasculature is limited, suggesting another role which could be paracrine. CD14+ cells can also differentiate into endothelial cells and contribute to neovascularization. However, the low proliferative capacity of CD14+ cell‐derived endothelial cells hampers their use as therapeutic cells. We made the assumption that an interaction between CD34+ and CD14+ cells augments endothelial differentiation of the CD14+ cells. In vitro, the influence of CD34+ cells on the endothelial differentiation capacity of CD14+ cells was investigated. Endothelial differentiation was analysed by expression of endothelial cell markers CD31, CD144, von Willebrand Factor and endothelial Nitric Oxide Synthase. Furthermore, we assessed proliferative capacity and endothelial cell function of the cells in culture. In monocultures, 63% of the CD14+‐derived cells adopted an endothelial cell phenotype, whereas in CD34+/CD14+ co‐cultures 95% of the cells showed endothelial cell differentiation. Proliferation increased up to 12% in the CD34+/CD14+ co‐cultures compared to both monocultures. CD34‐conditioned medium also increased endothelial differentiation of CD14+ cells. This effect was abrogated by hepatocyte growth factor neutralizing antibodies, but not by interleukin‐8 and monocyte chemoattractant protein‐1 neutralizing antibodies. We show that co‐culturing of CD34+ and CD14+ cells results in a proliferating population of functional endothelial cells, which may be suitable for treatment of ischaemic diseases such as myocardial infarction.
机译:内皮祖细胞(EPC)的新血管形成用于治疗缺血性疾病一直是研究的热点。 CD34 + 细胞通常被称为EPC,因为它通过新血管形成有助于修复缺血性损伤。然而,将CD34 + 细胞掺入新脉管系统是有限的,这提示了另一种可能是旁分泌的作用。 CD14 + 细胞也可以分化为内皮细胞,并有助于新血管形成。然而,CD14 + 细胞来源的内皮细胞的低增殖能力阻碍了它们作为治疗细胞的用途。我们假设CD34 + 和CD14 + 细胞之间的相互作用会增强CD14 + 细胞的内皮分化。在体外,研究了CD34 + 细胞对CD14 + 细胞内皮分化能力的影响。通过内皮细胞标志物CD31,CD144,von Willebrand因子和内皮型一氧化氮合酶的表达分析内皮分化。此外,我们评估了培养细胞的增殖能力和内皮细胞功能。在单一培养物中,CD14 + 来源的细胞中有63%采用了内皮细胞表型,而在CD34 + / CD14 + 中共培养物95 %的细胞显示内皮细胞分化。与两种单培养相比,CD34 + / CD14 + 共培养物中的增殖增加高达12%。 CD34条件培养基还可以增加CD14 + 细胞的内皮细胞分化。肝细胞生长因子中和抗体消除了这种作用,但白细胞介素8和单核细胞趋化蛋白-1中和抗体没有消除这种作用。我们发现,CD34 + 和CD14 + 细胞的共培养会导致功能性内皮细胞数量激增,这可能适合治疗缺血性疾病,例如心肌梗塞。

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