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Discovery of (meth)acrylate polymers that resist colonization by fungi associated with pathogenesis and biodeterioration

机译:发现(甲基)丙烯酸酯聚合物,用致病机制和生物传播者抵抗真菌的殖民化

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Fungi have major, negative socioeconomic impacts, but control with bioactive agents is increasingly restricted, while resistance is growing. Here, we describe an alternative fungal control strategy via materials operating passively (i.e., no killing effect). We screened hundreds of (meth)acrylate polymers in high throughput, identifying several that reduce attachment of the human pathogen Candida albicans , the crop pathogen Botrytis cinerea , and other fungi. Specific polymer functional groups were associated with weak attachment. Low fungal colonization materials were not toxic, supporting their passive, anti-attachment utility. We developed a candidate monomer formulation for inkjet-based 3D printing. Printed voice prosthesis components showed up to 100% reduction in C. albicans biofilm versus commercial materials. Furthermore, spray-coated leaf surfaces resisted fungal infection, with no plant toxicity. This is the first high-throughput study of polymer chemistries resisting fungal attachment. These materials are ready for incorporation in products to counteract fungal deterioration of goods, food security, and health.
机译:真菌有重大,负面的社会经济影响,但对生物活性剂的控制越来越受限制,而抵抗力正在增长。在这里,我们通过被动地操作的材料(即,没有杀伤效果)来描述替代的真菌控制策略。我们在高吞吐量中筛选了数百种(甲基)丙烯酸酯聚合物,鉴定了几种减少人病原体念珠菌,作物病原体Botrytis Cinerea和其他真菌的附着。特定的聚合物官能团与弱附件有关。低真菌定植材料没有毒性,支持其被动,防附件效用。我们开发了一种用于基于喷墨的3D印刷的候选单体配方。印刷的语音假体组分显示出C. albicans生物膜与商业材料的增加达100%。此外,喷涂的叶片表面抵抗真菌感染,没有植物毒性。这是抗真菌附着的高分子化学的第一种高通量研究。这些材料已准备好掺入产品以抵消货物,粮食安全和健康的真菌恶化。

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