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Self-healing antimicrobial polymer coating with efficacy in the presence of organic matter

机译:在有机物存在下具有功效的自修复抗微生物聚合物涂层

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A method to prepare a self-healing, antimicrobial polymer coating that retains efficacy against Escherichia coli O157:H7 in the presence of organic matter is reported. A coating composed of branched polyethyleneimine (PEI) and styrene maleic anhydride copolymer (SMA) was applied to a maleic anhydride functionalized polypropylene support. The chemistry of the polymer coating was designed to impart hydrophobicity due to the styrene subunits, intrinsic antimicrobial character (>99.9% reduction) from the cationic primary amine groups, and enhanced antimicrobial character (>99.99% reduction) after chlorination of N-halamine forming groups. Antimicrobial effectiveness was demonstrated under conditions of increasing organic load. Up to 500 ppm horse serum, chlorinated coatings retained full antimicrobial character (>99.99% reduction). Even at 50,000 ppm of horse serum, the coating provided similar to 90% reduction as prepared, and between similar to 75% and similar to 80% reduction in the form of N-halamines. Microscopy confirmed no evidence of bacterial adhesion on the coating surface. Finally, the coating exhibited self-healing properties after exposure to acid and alkaline solutions and restoration by heat, as confirmed through spectroscopy from the rebuilding of characteristic chemical bonds. Such robust antimicrobial polymer coatings with efficacy under conditions of increasing organic load may support reducing microbial cross-contamination in food and biomedical industries. (C) 2016 Elsevier B.V. All rights reserved.
机译:报道了一种制备自修复的抗微生物聚合物涂层的方法,该涂层在有机物存在下仍能抵抗大肠杆菌O157:H7。将由支化的聚乙烯亚胺(PEI)和苯乙烯马来酸酐共聚物(SMA)组成的涂层施涂到马来酸酐官能化的聚丙烯载体上。聚合物涂层的化学成分设计为赋予疏水性,原因是苯乙烯亚基,阳离子伯胺基团的固有抗菌特性(降低了99.9%以上)和氯化N-卤代胺后增强了抗菌特性(降低了99.99%以上)。组。在增加有机负荷的条件下证明了抗菌效果。高达500 ppm的马血清,氯化涂层保留了完整的抗菌特性(减少了99.99%以上)。甚至在马血清为50,000 ppm时,涂层所制备的N-卤代胺的含量也减少了约90%,减少了约75%至约80%。显微镜证实没有证据表明细菌粘附在涂层表面。最终,该涂层在暴露于酸和碱溶液并通过加热恢复后表现出自修复性能,这是通过光谱学从特征化学键的重建得到证实的。这种在有机负荷增加的条件下具有功效的坚固的抗微生物聚合物涂层可以支持减少食品和生物医学工业中的微生物交叉污染。 (C)2016 Elsevier B.V.保留所有权利。

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