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Tailoring Macromolecular Structure of Cationic Polymers towards Efficient Contact Active Antimicrobial Surfaces

机译:针对有效接触活性抗菌表面定制阳离子聚合物的大分子结构

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摘要

The aim of this work is the preparation of contact active antimicrobial films by blending copolymers with quaternary ammonium salts and polyacrylonitrile as matrix material. A series of copolymers based on acrylonitrile and methacrylic monomers with quaternizable groups were designed with the purpose of investigating the influence of their chemical and structural characteristics on the antimicrobial activity of these surfaces. The biocide activity of these systems was studied against different microorganisms, such as the Gram-positive bacteria Staphylococcus aureus and the Gram-negative bacteria Pseudomona aeruginosa and the yeast Candida parapsilosis. The results confirmed that parameters such as flexibility and polarity of the antimicrobial polymers immobilized on the surfaces strongly affect the efficiency against microorganisms. In contrast to the behavior of copolymers in water solution, when they are tethered to the surface, the active cationic groups are less accessible and then, the mobility of the side chain is critical for a good contact with the microorganism. Blend films composed of copolymers with high positive charge density and chain mobility present up to a more than 99.999% killing efficiency against the studied microorganisms.
机译:这项工作的目的是通过将共聚物与季铵盐和聚丙烯腈作为基质材料共混来制备接触活性抗菌膜。设计了一系列基于丙烯腈和具有季铵化基团的甲基丙烯酸单体的共聚物,目的是研究它们的化学和结构特征对这些表面抗菌活性的影响。研究了这些系统对不同微生物(如革兰氏阳性细菌金黄色葡萄球菌和革兰氏阴性细菌铜绿假单胞菌和酵母假丝酵母)的杀生物活性。结果证实,诸如固定在表面上的抗微生物聚合物的柔韧性和极性之类的参数极大地影响了抗微生物的效率。与共聚物在水溶液中的行为相反,当它们束缚在表面上时,活性阳离子基团较难接近,因此,侧链的迁移性对于与微生物的良好接触至关重要。由具有高正电荷密度和链迁移率的共聚物组成的共混膜对被研究微生物的杀灭效率高达99.999%。

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