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Peptide-Loaded Microgels as Antimicrobial and Anti-Inflammatory Surface Coatings

机译:肽加载的微凝胶作为抗微生物和抗炎表面涂料

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摘要

Here we report on covalently immobilized poly(ethyl acrylate-co-methacrylic acid) microgels loaded with the host defense peptide KYE28 (KYEITTIHNLFRKLTHRL-FRRNFGYTLR), which is derived from human heparin cofactor II, as well as its poly(ethylene glycol)-conjugated (PEGylated) version, KYE28PEG. Peptide loading and release, as well as the consequences of these processes on the microgel and peptide properties, were studied by in situ ellipsometry, confocal microscopy, zeta potential measurements, and circular dichroism spectroscopy. The results show that the microgel peptide interactions are electrostatically dominated, thus promoted at higher microgel charge density, while PEGylation suppresses peptide binding. PEGylation also enhances the alpha-helix induction observed for KYE28 upon microgel incorporation. Additionally, peptide release is facilitated at physiological salt concentration, particularly so for KYE28PEG, which illustrates the importance of electrostatic interactions. In vitro studies on Escherichia coli show that the microgel-modified surfaces display potent antifouling properties in both the absence and presence of the incorporated peptide. While contact killing dominates at low ionic strength for the peptide-loaded microgels, released peptides also provide antimicrobial activity in bulk at a high ionic strength. Additionally, KYE28- and KYE28PEG-loaded microgels display anti-inflammatory effects on human monocytes. Taken together, these results not only show that surface-bound microgels offer an interesting approach for local drug delivery of host defense peptides but also illustrate the need to achieve high surface loads of peptides for efficient biological effects.
机译:在这里,我们向负载的共价固定的聚(乙基丙烯酸酯 - 共甲基丙烯酸酸)微凝胶衍生自人肝素辅因子II,以及其聚(乙二醇) - 共同(乙二醇)的衍生物(Pegymated)版本,Kye28PEG。通过原位椭偏针,共聚焦显微镜,Zeta电位测量和圆形二色性光谱研究,研究了肽加载和释放以及这些方法对微凝胶和肽性质的后果。结果表明,微凝胶肽相互作用是静电占主导的,因此在更高的微凝胶充电密度下促进,而聚乙二醇化抑制肽结合。在微凝胶掺入时,聚乙二醇化还增强了Kye28观察到的α-螺旋诱导。另外,在生理盐浓度下促进肽释放,特别是对于Kye28PEG,其表示静电相互作用的重要性。对大肠杆菌的体外研究表明,微凝胶改性表面在掺入肽的不存在和存在中显示有效的防污性能。虽然在低离子强度下接触杀死肽的微凝胶的杀灭主导地位,但是释放的肽还在高离子强度的体积中提供抗微生物活性。此外,Kye28和Kye28PEG的微凝胶显示对人单核细胞的抗炎作用。总之,这些结果不仅表明表面结合的微凝胶提供了宿主防毒肽的当地药物递送的有趣方法,而且还说明了实现高效肽的高表面负荷以获得有效的生物学效应。

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