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Peptide-Functionalized Polyoligo(ethylene glycol) methacrylate Brushes on Dopamine-Coated Stainless Steel for Controlled Cell Adhesion

机译:多巴胺涂层不锈钢上的肽官能化聚甲基丙烯酸乙二醇酯刷用于控制细胞粘附

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摘要

The modification of the surface of surgical implants with cell adhesion ligands has emerged as a promising approach to improve biomaterial-host interactions. However, these approaches are limited by the non-specific adsorption of biomolecules and uncontrolled presentation of desired bioactive ligands on implant surfaces. This leads to sub-optimal integration with host tissue and delayed healing. Here we present a strategy to grow non-fouling polymer brushes of oligo(ethylene glycol) methacrylate by atom transfer radical polymerization from dopamine-functionalized clinical grade 316 stainless steel. These brushes prevent non-specific adsorption of proteins and attachment of cells. Subsequently, the brushes can be modified with covalently tethered adhesive peptides that provide controlled cell adhesion. This approach may therefore have broad application to promote bone growth and improvements in osseointegration.
机译:用细胞粘附配体修饰外科植入物的表面已成为改善生物材料与宿主相互作用的一种有前途的方法。但是,这些方法受到生物分子的非特异性吸附和植入物表面上所需生物活性配体的不受控制呈现的限制。这导致与宿主组织的整合欠佳并延迟了愈合。在这里,我们提出一种通过多巴胺官能化的临床级316不锈钢的原子转移自由基聚合来生长低聚(乙二醇)甲基丙烯酸低聚物聚合物刷的策略。这些刷子可防止蛋白质的非特异性吸附和细胞附着。随后,可用共价连接的粘附肽修饰刷子,以提供受控的细胞粘附。因此,该方法可能具有广泛的应用,以促进骨生长和骨整合的改善。

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