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A controlled release system for simultaneous delivery of three human perivascular stem cell-derived factors for tissue repair and regeneration

机译:一种控制释放系统,用于同时递送三种人血管周围干细胞衍生因子的组织修复和再生

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摘要

Transplanted stem/progenitor cells improve tissue healing and regeneration anatomically and functionally, mostly due to their secreted trophic factors. However, harsh conditions at the site of injury, including hypoxia, oxidative and inflammatory stress, increased fibrosis and insufficient angiogenesis, and in some cases immunological response or incompatibility, are detrimental to stem cell survival. To overcome the complexity and deficiencies of stem cell therapy, the coacervate delivery platform is deemed promising because it offers controlled and sustained release using heparin to recapitulate the binding and stabilization of extracellular proteins by heparan sulphates in native tissues. Here we show that recombinant alternatives of three key factors [vascular endothelial growth factor (VEGF), monocyte chemoattractant protein-1 (MCP-1) and interleukin-6 (IL-6)], commonly produced by perivascular stem cells under various stress conditions, can be successfully incorporated into a heparin-based coacervate. We characterized the release profile of the triply incorporated factors from the complex coacervate. The coacervate-released factors were able to exert their desired biological activities in vitro: VEGF stimulated human umbilical vein endothelial cell proliferation, MCP-1 elevated macrophage migration and IL-6 increased IgM production by IL-6-dependent cell line. Thus, a controlled release system can be used for simultaneous delivery of three stem cell-derived factors and could be useful for tissue repair and regenerative medicine.
机译:移植的茎/祖细胞在解剖学和功能上改善组织愈合和再生,主要是由于它们分泌的营养因素。然而,损伤部位的恶劣条件,包括缺氧,氧化和炎症胁迫,增加纤维化和血管生成不足,以及在某些情况下,免疫应答或不相容性,对干细胞存活是有害的。为了克服干细胞疗法的复杂性和缺陷,凝聚性递送平台被认为是有前途的,因为它提供了使用肝素的控制和持续释放,以通过在天然组织中通过普康肝素硫酸盐进行细胞外蛋白的结合和稳定性。在这里,我们显示三个关键因素的重组替代方法[血管内皮生长因子(VEGF),单核细胞化学蛋白-1(MCP-1)和白细胞介素-6(IL-6)],通常在各种应激条件下由血管血管干细胞产生,可以成功地掺入肝素的凝聚体中。我们以复杂的凝聚酸盐特征在于三种掺入因子的释放曲线。凝聚释放的因子能够在体外发挥所需的生物活性:VEGF刺激的人脐静脉内皮细胞增殖,MCP-1升高的巨噬细胞迁移和IL-6通过IL-6依赖性细胞系增加IgM产生。因此,控制释放系统可用于同时递送三种干细胞衍生的因子,可用于组织修复和再生医学。

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