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Combinatorial discovery of polymers resistant to bacterial attachment

机译:到细菌附着性聚合物的组合发现

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摘要

Bacterial attachment and subsequent biofilm formation pose key challenges to the optimal performance of medical devices. In this study, we determined the attachment of selected bacterial species to hundreds of polymeric materials in a high-throughput microarray format. Using this method, we identified a group of structurally related materials comprising ester and cyclic hydrocarbon moieties that substantially reduced the attachment of pathogenic bacteria (Pseudomonas aeruginosa, Staphylococcus aureus and Escherichia coli). Coating silicone with these ‘hit’ materials achieved up to a 30-fold (96.7%) reduction in the surface area covered by bacteria compared with a commercial silver hydrogel coating in vitro, and the same material coatings were effective at reducing bacterial attachment in vivo in a mouse implant infection model. These polymers represent a class of materials that reduce the attachment of bacteria that could not have been predicted to have this property from the current understanding of bacteria-surface interactions.
机译:细菌附着和随后的生物膜形成对医疗器械的最佳性能提出了关键挑战。在这项研究中,我们确定了以高通量微阵列格式将选定细菌种类附着到数百种聚合物材料上。使用这种方法,我们确定了一组结构相关的材料,包括酯和环状烃部分,这些物质大大减少了病原细菌(铜绿假单胞菌,金黄色葡萄球菌和大肠杆菌)的附着。与体外商业化的银水凝胶涂层相比,用这些“命中”材料涂覆有机硅可将细菌覆盖的表面积减少多达30倍(96.7%),并且相同的材料涂层可有效减少体内细菌附着在小鼠植入物感染模型中这些聚合物代表一类减少细菌附着的材料,根据目前对细菌-表面相互作用的理解,这无法预测出具有这种特性。

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