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Hematopoietic Stem Cell Cytokines and Fibroblast Growth factor-2 Stimulate Human Endothelial Cell-Pericyte Tube Co-Assembly in 3D Fibrin Matrices under Serum-Free Defined Conditions

机译:在无血清条件下造血干细胞细胞因子和成纤维细胞生长因子2刺激3D纤维蛋白基质中人内皮细胞-周细胞管的协同装配。

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摘要

We describe a novel 3D fibrin matrix model using recombinant hematopoietic stem cell cytokines under serum-free defined conditions which promotes the assembly of human endothelial cell (EC) tubes with co-associated pericytes. Individual ECs and pericytes are randomly mixed together and EC tubes form that is accompanied by pericyte recruitment to the EC tube abluminal surface over a 3-5 day period. These morphogenic processes are stimulated by a combination of the hematopoietic stem cell cytokines, stem cell factor, interleukin-3, stromal derived factor-1α, and Flt-3 ligand which are added in conjunction with fibroblast growth factor (FGF)-2 into the fibrin matrix. In contrast, this tube morphogenic response does not occur under serum-free defined conditions when VEGF and FGF-2 are added together in the fibrin matrices. We recently demonstrated that VEGF and FGF-2 are able to prime EC tube morphogenic responses (i.e. added overnight prior to the morphogenic assay) to hematopoietic stem cell cytokines in collagen matrices and, interestingly, they also prime EC tube morphogenesis in 3D fibrin matrices. EC-pericyte interactions in 3D fibrin matrices leads to marked vascular basement membrane assembly as demonstrated using immunofluorescence and transmission electron microscopy. Furthermore, we show that hematopoietic stem cell cytokines and pericytes stimulate EC sprouting in fibrin matrices in a manner dependent on the α5β1 integrin. This novel co-culture system, under serum-free defined conditions, allows for a molecular analysis of EC tube assembly, pericyte recruitment and maturation events in a critical ECM environment (i.e. fibrin matrices) that regulates angiogenic events in postnatal life.
机译:我们描述了一种新型的3D纤维蛋白基质模型,该模型使用重组造血干细胞细胞因子在无血清的确定条件下促进了人类内皮细胞(EC)管与相关细胞的组装。各个EC和周细胞随机混合在一起,形成EC管,并在3-5天的时间内伴随周细胞募集到EC管腔表面。造血干细胞细胞因子,干细胞因子,白细胞介素-3,基质衍生因子-1α和Flt-3配体的组合刺激了这些形态发生过程,并与成纤维细胞生长因子(FGF)-2一起加入了纤维蛋白基质。相反,当在纤维蛋白基质中同时添加VEGF和FGF-2时,在无血清的条件下不会发生这种管形态发生反应。我们最近证明,VEGF和FGF-2能够引发胶原蛋白基质中对造血干细胞细胞因子的EC管形态发生反应(即在形态形成测定之前添加过夜),并且有趣的是,它们还引发3D纤维蛋白基质中EC管形态发生。 3D纤维蛋白基质中的EC-周细胞相互作用导致显着的血管基底膜组装,如使用免疫荧光和透射电子显微镜所证实的。此外,我们显示造血干细胞细胞因子和周细胞以依赖于α5β1整联蛋白的方式刺激血纤蛋白基质中的EC萌发。这种新型的共培养系统可在无血清的条件下进行分子分析,以分析EC管组装,周细胞募集和成熟事件的关键ECM环境(即纤维蛋白基质),从而调节产后生命中的血管生成事件。

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