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首页> 外文期刊>Polymer bulletin >A facile method to fabricate an antimicrobial coating based on poly(1-vinyl-3-allylimidazolium iodide) (PAVI) and poly(ethylene glycol) dimethyl acrylate (PEGDMA)
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A facile method to fabricate an antimicrobial coating based on poly(1-vinyl-3-allylimidazolium iodide) (PAVI) and poly(ethylene glycol) dimethyl acrylate (PEGDMA)

机译:基于聚(1-乙烯基-3-烯丙基吡啶鎓碘化物)(PAVI)和聚(乙二醇)二甲基酯(PEGDMA)的抗微生物涂层制备抗微生物涂层的容易方法

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摘要

Biomedical device-related infections have been a great concern over the past decades. In this work, cationic macromolecules poly(1-vinyl-3-allylimidazolium iodide) (PAVI) with antibactericidal ability were prepared and grafted on nose clips by surface-initiated polymerization via plasma/autoclaving method. The precursor poly(1-vinylimidazole) was synthesized by surface-initiated polymerization and then quaternarized to form polymeric quaternary ammonia salts which have been commonly used as bactericidal materials. We first synthesized a series of different formulations of cationic PAVI and hydrophilic poly(ethylene glycol) dimethyl acrylate graftings onto nose clips by thermal-initiating polymerization with covalent bonds for antimicrobial surface modification. Antibacterial test results showed that the cationic-hydrophilic coatings exhibited excellent antibacterial behaviors for multidrug-resistant bacteria such as vancomycin-resistant Enterococcus and methicillin-resistant Staphylococcus aureus. The in vitro log reduction value for could reach 6.0 and 8.6, respectively, and the in vivo log reduction value could reach 1.3 and 2.0, respectively. In vitro cytotoxicity indicated that PAVI coatings were non-leachable and exhibited no toxicity toward mammal cells. This rationally designed polycationic antimicrobial coating displayed great potential application in combating implant-associated infections on biomedical devices.
机译:与过去几十年来说,生物医学有关的感染是一个很大的问题。在这项工作中,通过表面引发的聚合通过等离子体/高压灭菌方法制备阳离子大分子聚(1-乙烯基-3-烯丙基咪唑鎓碘化物)(PAVI),并在鼻夹上嫁接鼻夹。通过表面引发的聚合合成前体聚(1-乙烯基咪唑),然后进行季铵化以形成聚合物季氨盐,其通常用作杀菌材料。我们首先通过热引发聚合与用于抗微生物表面改性的共价键的热引发聚合,将一系列不同配方的阳离子帕维和亲水性聚(乙二醇)二甲基丙烯酸酯接枝酯聚合到鼻夹中。抗菌试验结果表明,阳离子 - 亲水性涂层表现出用于多药抗性细菌的优异的抗菌性,如万古霉素抗性肠球菌和甲氧西林耐金黄色葡萄球菌。对于可以分别达到6.0和8.6的体外记录降低值,并且体内降低值分别可以达到1.3和2.0。体外细胞毒性表明,Pavi涂层是不可浸出的并且对哺乳动物细胞没有毒性。这种理性设计的聚阳离子抗微生物涂料在对抗生物医学装置上的植入物相关感染方面表现出很大的潜在应用。

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