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Mussel-Inspired Silver-Releasing Antibacterial Hydrogels

机译:贻贝启发的银抗菌释放水凝胶

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摘要

A silver-releasing antibacterial hydrogel was developed that simultaneously allowed for silver nanoparticle formation and gel curing. Water-soluble polyethylene glycol (PEG) polymers were synthesized that contain reactive catechol moieties, inspired by mussel adhesive proteins, where the catechol containing amino acid 3,4-dihydroxyphenylalanine (DOPA) plays an important role in the ability of the mussel to adhere to almost any surface in an aqueous environment. We utilized silver nitrate to oxidize polymer catechols, leading to covalent cross-linking and hydrogel formation with simultaneous reduction of Ag(I). Silver release was sustained for periods of at least two weeks in PBS solution. Hydrogels were found to inhibit bacterial growth, consistent with the well-known antibacterial properties of silver, while not significantly affecting mammalian cell viability. In addition, thin hydrogel films were found to resist bacterial and mammalian cell attachment, consistent with the antifouling properties of PEG. We believe these materials have a strong potential for antibacterial biomaterial coatings and tissue adhesives, due to the material-independent adhesive properties of catechols.
机译:开发出银释放抗菌水凝胶,其同时允许银纳米粒子形成和凝胶固化。合成水溶性聚乙二醇(PEG)聚合物,其含有反应性儿茶学部分,受贻贝粘合剂蛋白的启发,其中含有氨基酸3,4-二羟基苯丙氨酸(DOPA)的儿茶酚在贻贝坚持的能力中起重要作用几乎在水环境中的任何表面。我们利用硝酸银来氧化聚合物儿茶酚,导致共价交联和水凝胶形成,同时还原Ag(I)。在PBS溶液中持续至少两周的银释放。发现水凝胶抑制细菌生长,与银的公知抗菌性能一致,同时不会显着影响哺乳动物细胞活力。此外,发现薄的水凝胶膜抵抗细菌和哺乳动物的细胞附着,与PEG的防污性能一致。我们认为,由于儿茶酚的材料无关的粘合性能,这些材料具有抗菌生物材料涂层和组织粘合剂的强大潜力。

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