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The role of scaffold microarchitecture in engineering endothelial cell immunomodulation

机译:脚手架微体系程在工程内皮细胞免疫调节中的作用

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摘要

The implantation of matrix-embedded endothelial cells (MEECs) has been reported to have great therapeutic potential in controlling the vascular response to injury and maintaining patency in arteriovenous anastomoses. While there is an appreciation of their effectiveness in clinical and animal studies, the mechanisms through which they mediate these powerful effects remain relatively unknown. In this work, we examined the hypothesis that the 3-dimensional microarchitecture of the tissue engineering scaffold was a key regulator of endothelial behavior in MEEC constructs. Notably, we found that ECs in porous collagen scaffold had a markedly altered cytoskeletal structure with oriented actin fibers and rearrangement of the focal adhesion proteins in comparison to cells grown on 2D surfaces. We examined the immunomodulatory capabilities of MEECs and discovered that they were able to reduce the recruitment of monocytes to an inflamed endothelial monolayer by 5-fold compared to EC on 2D surfaces. An analysis of secreted factors from the cells revealed an 8-fold lower release of Monocyte Chemotactic Protein-1 (MCP-1) from MEECs. Differences between 3D and 2D cultured cells were abolished in the presence of inhibitors to the focal adhesion associated signaling molecule Src suggesting that adhesion-mediated signaling is essential in controlling the potent immunomodulatory effects of MEEC.
机译:据报道,基质嵌入的内皮细胞(MEEC)的植入在控制血管对损伤的反应和维持动静脉吻合中的通畅性方面具有巨大的治疗潜力。尽管人们赞赏它们在临床和动物研究中的有效性,但它们介导这些强大作用的机制仍然相对未知。在这项工作中,我们检查了以下假设:组织工程支架的3维微体系结构是MEEC构建体中内皮行为的关键调节剂。值得注意的是,我们发现,与在2D表面上生长的细胞相比,多孔胶原蛋白支架中的EC具有定向肌动蛋白纤维和粘着斑蛋白重排的明显改变的细胞骨架结构。我们检查了MEEC的免疫调节能力,发现与2D表面上的EC相比,它们能够将单核细胞募集到发炎的内皮单层细胞减少5倍。对细胞分泌因子的分析显示,单核细胞趋化蛋白-1(MCP-1)从MEEC中的释放降低了8倍。在与粘着斑相关的信号分子Src抑制剂存在下,消除了3D和2D培养细胞之间的差异,这表明粘附介导的信号传导对于控制MEEC的有效免疫调节作用至关重要。

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