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首页> 外文期刊>Bioconjugate Chemistry >Direct Loading and Tunable Release of Antibiotics from Polyelectrolyte Multilayers To Reduce Bacterial Adhesion and Biofilm Formation
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Direct Loading and Tunable Release of Antibiotics from Polyelectrolyte Multilayers To Reduce Bacterial Adhesion and Biofilm Formation

机译:从聚电解质多层中直接加载和可调释放抗生素,以减少细菌粘附和生物膜形成

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摘要

Bacteria adhesion on the surface of biomaterials and following biofilm formation are important problems in biomedical applications. The charged antibiotics with small molar mass can hardly deposit alternately with polymers into multilayered films to load the drug. Herein, the (poly(acrylic acid)-gentamicin/poly(ethylenimine))(n) ((PAA-GS/PEI)(n)) multilayer film was designed and constructed via a layer-by-layer self-assembly method. Low molar mass GS cations were first combined with polyanion PAA and self-assembled with PEI to form multilayer films showing exponential growth behavior. The GS dosage could be adjusted by changing the layer number of films. Furthermore, the thermal cross-linking method was used to control the release rate of GS in PBS buffer. Owing to the diffusion of GS, a zone of inhibition of about 7.0 mm showed the efficient disinfection activity of the multilayer film. It could also be seen from the biofilm inhibition assay that the multilayer film effectively inhibited bacterial adhesion and biofilm formation. As the drug loading dosage was 160 mu g/cm(2), the multilayer films showed very low cytotoxicity against human lens epithelial cells. The present work provides an easy way to load GS into multilayer films which can be applied to surface modification of implants and biomedical devices.
机译:细菌在生物材料表面上的粘附以及生物膜的形成是生物医学应用中的重要问题。摩尔质量小的带电抗生素很难与聚合物交替沉积到多层膜中以加载药物。在此,通过逐层自组装方法设计并构造了(聚(丙烯酸)-庆大霉素/聚(乙烯亚胺))(n)((PAA-GS / PEI)(n))多层膜。首先将低摩尔质量的GS阳离子与聚阴离子PAA结合,并与PEI自组装以形成显示出指数增长行为的多层膜。 GS剂量可以通过改变膜的层数来调节。此外,热交联方法用于控制GS在PBS缓冲液中的释放速率。由于GS的扩散,约7.0mm的抑制区显示出多层膜的有效消毒活性。从生物膜抑制测定中还可以看出,多层膜有效地抑制了细菌粘附和生物膜形成。由于载药量为160μg / cm(2),多层膜对人晶状体上皮细胞的细胞毒性非常低。本工作提供了一种将GS装载到多层膜中的简便方法,该方法可应用于植入物和生物医学设备的表面改性。

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