Hybrid nanolayers of star polymers and silver nanoparticles with antibacterial activity

材料科学 甲基丙烯酸酯 银纳米粒子 共价键 聚合物 乙二醇 化学工程 石英晶体微天平 纳米颗粒 抗菌活性 高分子化学 表面改性 逐层 图层(电子) 化学 纳米技术 有机化学 单体 复合材料 吸附 工程类 生物 细菌 遗传学
作者
Paulina Teper,Natalia Oleszko-Torbus,Marcelina Bochenek,Barbara Hajduk,Jerzy Kubacki,Łukasz Jałowiecki,Grażyna Płaza,Agnieszka Kowalczuk,Barbara Mendrek
出处
期刊:Colloids and Surfaces B: Biointerfaces [Elsevier]
卷期号:213: 112404-112404 被引量:7
标识
DOI:10.1016/j.colsurfb.2022.112404
摘要

The aim of this study was to obtain stable star polymer layers with incorporated silver nanoparticles (AgNPs) and to study the antimicrobial activity of these hybrid materials. In this work, a novel approach regarding the synthesis of AgNPs directly by the star polymer layer is presented. Nanolayers of poly( N,N′ -dimethylaminoethyl methacrylate) and hydroxyl-bearing poly[oligo(ethylene glycol) methacrylate] (P(DMAEMA-co-OEGMA-OH)) stars, covalently bound with solid supports, were obtained through chemical reaction of hydroxyl groups in the star arms with substrate modified with imidazole derivative. Quantitative chemical composition analysis and tracking of the changes in the morphology and wettability after every step of surface modification confirmed the covalent attachment of stars with the support. In the next step, the polymer nanolayers were modified with AgNPs formed in situ using only amine groups of the star arms and followed by the crystal quartz microbalance (QCM). The analysis of the layer thickness and affinity to water, both with the shape, size and amount of silver incorporated into the layer, confirmed the efficacy of AgNPs formation. The amount of silver incorporated into layers was correlated with the molar masses of the grafted stars, and a possible location of AgNPs within layers was shown. The antibacterial activity tests of prepared nanolayers showed that obtained hybrid materials were highly effective against both gram-positive and gram-negative bacteria strains. This study shows that the obtained layers are promising as stable coatings for antibacterial applications. • Polycationic stars were covalently bounded to solid supports. • For the first time, AgNPs were synthesized directly by a star polymer layer. • Silver nanoparticles were located on the surface and in the deeper parts of layers. • The obtained hybrid nanomaterials revealed 100% antibacterial activity after 24 h.
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