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Surface Area to Volume Ratio of Electrospun Polydioxanone Templates Regulates the Adsorption of Soluble Proteins from Human Serum

机译:静电纺丝聚二恶烷酮模板的表面积与体积比可调节人血清中可溶性蛋白的吸附

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摘要

Neutrophils, the first cells that interact with surface-adsorbed proteins on biomaterials, have been increasingly recognized as critical maestros in the foreign body response for guided tissue regeneration. Recent research has shown that small diameter (SD) fibers of electrospun tissue regeneration templates, which have a high surface area to volume ratio (SAVR), enhance the release of neutrophil extracellular traps (NETs) compared to large diameter (LD) fibers, resulting in impaired tissue regeneration. In this study, we evaluated the adsorption of eight human serum proteins on the surface of electrospun templates to investigate how protein adsorption may regulate the release of NETs. Electrospun polydioxanone templates made from SD fibers with high SAVR and LD fibers with low SAVR, were incubated with 0.2% human serum and in situ protein adsorption was quantified with infrared-based immunodetection. Of the detected proteins, IgM and vitronectin adsorbed at low levels, suggesting that they do not play a central role in the release of NETs. Contrastingly, albumin and IgG adsorbed rapidly to the surface of the templates. One-hundred to 200 times more IgG adsorbed on the templates compared to albumin, with significantly greater adsorption occurring on the SD templates with high SAVR. Given that neutrophils express receptors that interact with IgG during phagocytosis and NET release, these results suggest that SAVR-dependent adsorption of IgG on the SD electrospun templates may contribute to the up-regulated release of NETs. Overall, this study may aid in the design of immunomodulatory biomaterials that regulate NET release and thus the potential for neutrophil-driven tissue regeneration.
机译:中性粒细胞是第一种与生物材料上的表面吸附蛋白相互作用的细胞,已被越来越多地认为是异物对引导组织再生的关键性动物。最新研究表明,与大直径(LD)纤维相比,具有高表面积与体积比(SAVR)的小直径(SD)电纺组织再生模板纤维可增强中性粒细胞胞外捕获物(NETs)的释放,组织再生受损。在这项研究中,我们评估了八种人血清蛋白在电纺模板表面的吸附,以研究蛋白吸附如何调节NETs的释放。将具有高SAVR的SD纤维和具有低SAVR的LD纤维制成的电纺聚二恶烷酮模板与0.2%的人血清孵育,并通过基于红外的免疫检测对原位蛋白吸附进行定量。在检测到的蛋白质中,IgM和玻连蛋白的吸附水平很低,表明它们在NETs的释放中不发挥核心作用。相反,白蛋白和IgG迅速吸附到模板表面。与白蛋白相比,模板上吸附的IgG多一百倍至200倍,而具有高SAVR的SD模板上的吸附明显更大。鉴于嗜中性粒细胞表达在吞噬作用和NET释放过程中与IgG相互作用的受体,这些结果表明,SD电纺模板上SAVR依赖的IgG吸附可能有助于NETs的上调释放。总的来说,这项研究可能有助于设计调节NET释放并因此具有中性粒细胞驱动的组织再生潜能的免疫调节生物材料。

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