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Polydopamine-mediated immobilization of PALM and DNAse to create an anti-adhesive and antimicrobial bi-functional coating

机译:聚多巴胺介导的PALM和DNAse的固定化,以创建抗粘连和抗菌双功能涂层

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摘要

The development of novel approaches to prevent biomaterial-associated infections are in great demand in modern healthcare. A mussel-inspired coating strategy was applied to introduce both anti-adhesive and antimicrobial functionalities on silicone material. Substrates were immersed in an alkaline solution of dopamine to form a thin layer of polydopamine and then transferred into a solution containing different proportions of the antimicrobial lipopetide PALM-KGK-NH2 and the enzyme DNAse I. Surface characterization confirmed the immobilization of both compounds onto silicone. The immobilization efficiency of peptide was about 65 % and peptide did no detach from the surface for up to 5 days. The mono-functional enzymatic coating prevented Staphylococcus aureus adhesion while the coating functionalized with the lipopetide killed most of the adhered cells. Combination of both compounds resulted in a bi-functional coating able to prevent bacterial adhesion and kill the adherent ones. Moreover, cells adhered to these modified surfaces exhibited the same antibiotic susceptibility pattern as cells adhered to unmodified surfaces, suggesting no resistance development. In conclusion, silicone functionalization with enzymes and antimicrobial peptides holds great potential in the development of biomaterials to prevent biomaterial-associated infections.
机译:在现代医疗保健中,迫切需要开发新颖的方法来预防与生物材料相关的感染。应用了贻贝启发的涂层策略,以在有机硅材料上引入抗粘和抗菌功能。将基质浸入多巴胺的碱性溶液中以形成聚多巴胺的薄层,然后将其转移至包含不同比例的抗脂肽PALM-KGK-NH2和DNAse酶I的溶液中。表面表征证实了这两种化合物均已固定在有机硅上。肽的固定效率约为65%,并且肽在长达5天的时间内没有从表面脱落。单功能酶涂层可防止金黄色葡萄球菌粘附,而用脂肽功能化的涂层可杀死大多数粘附细胞。两种化合物的组合产生双功能涂层,该涂层能够防止细菌粘附并杀死粘附的涂层。而且,粘附在这些修饰表面上的细胞表现出与粘附在未修饰表面上相同的抗生素敏感性模式,表明没有耐药性发展。总之,用酶和抗菌肽进行有机硅官能化在生物材料的开发中具有巨大的潜力,可以预防与生物材料相关的感染。

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