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Polyelectrolyte Multilayer Nanocoating Dramatically Reduces Bacterial Adhesion to Polyester Fabric

机译:聚电解质多层纳米涂层可显着降低细菌对聚酯织物的附着力

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摘要

Bacterial adhesion to textiles is thought to contribute to odor and infection. Alternately exposing polyester fabric to aqueous solutions of poly(diallyldimethylammonium chloride) (PDDA) and poly(acrylic acid) (PAA) is shown here to create a nanocoating that dramatically reduces bacterial adhesion. Ten PDDA/PAA bilayers (BL) are 180 nm thick and only increase the weight of the polyester by 2.5%. The increased surface roughness and high degree of PAA ionization leads to a surface with a negative charge that causes a reduction in adhesion of Staphylococcus aureus by 50% when compared to uncoated fabric, after rinsing with sterilized water, because of electrostatic repulsion. S. aureus bacterial adhesion was quantified using bioluminescent radiance measured before and after rinsing, revealing 99% of applied bacteria were removed with a ten bilayer PDDA/PAA nanocoating. The ease of processing, and benign nature of the polymers used, should make this technology useful for rendering textiles antifouling on an industrial scale.
机译:细菌对纺织品的粘附被认为会导致气味和感染。此处显示了将聚酯纤维交替暴露在聚二烯丙基二甲基氯化铵(PDDA)和聚丙烯酸(PAA)的水溶液中,可形成能大大降低细菌粘附力的纳米涂层。十个PDDA / PAA双层(BL)的厚度为180 nm,只会使聚酯的重量增加2.5%。增加的表面粗糙度和较高的PAA电离度会导致表面带有负电荷,与未涂覆的织物相比,由于静电排斥,与未涂覆的织物相比,该表面的金黄色葡萄球菌的粘附力降低了50%。使用漂洗之前和之后测量的生物发光辐射度对金黄色葡萄球菌的细菌粘附进行定量,结果表明,使用十个双层PDDA / PAA纳米涂层可以去除99%的应用细菌。易于加工以及所用聚合物的良性,应使该技术可用于在工业规模上使纺织品防污。

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