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Graphene oxide coatings prevent Candida albicans biofilm formation with a controlled release of curcumin-loaded nanocomposites

机译:石墨烯氧化物涂层防止念珠菌蛋白化合物的姜黄素纳米复合材料的控制释放

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Aim: Fabrication of graphene oxide (GO)-based medical devices coatings that limit adhesion of Candida albicans, a main issue of healthcare-associated infections. Methods: The GO composites noncovalently functionalized with curcumin (CU), a hydrophobic molecule with active antimicrobial action, polyethylene glycol (PEG) that hinders the absorption of biomolecules or a combination of CU and PEG (GO-CU-PEG) were drop-casted on surfaces and antifungal efficacy was assessed. Results: We demonstrate that GO-CU-PEG coatings can reduce fungal adhesion, proliferation and biofilm formation. Furthermore, in an aqueous environment, surfaces release curcumin-PEG nanocomposites that have a minimum inhibitory concentration of 9.25 mu g/ml against C. albicans. Conclusion: Prevention of early cell adhesion and creation of a proximal environment unfavorable for growth make these GO-supported biomaterials attractive for innovative medical device manufacturing.
机译:目的:氧化石墨烯(GO)的制造,其基于医疗器械的涂层,其限制念珠菌与医疗相关感染的主要问题的粘附性。 方法:通过姜黄素(Cu),疏水分子与活性抗菌作用的疏水分子,阻碍生物分子的吸收或Cu和PEG(Go-Cu-PEG)的组合的聚乙二醇(PEG),疏水分子,渗透铸造 在表面和抗真菌效力上进行评估。 结果:我们证明了Go-Cu-PEG涂层可以降低真菌粘附,增殖和生物膜形成。 此外,在含水环境中,表面释放姜黄素-PEG纳米复合材料,其对C.醛醛糖醛糖的最小抑制浓度为9.25μg/ ml。 结论:预防早期细胞粘附和创造近端环境不利的生长使得这些用于创新医疗器械制造的近期生物材料具有吸引力。

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