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基于不同涂覆工艺的纳米级抗菌聚合物涂层的对比研究。

Comparable Studies on Nanoscale Antibacterial Polymer Coatings Based on Different Coating Procedures.

作者信息

Laube Thorsten, Weisser Jürgen, Sachse Svea, Seemann Thomas, Wyrwa Ralf, Schnabelrauch Matthias

机构信息

INNOVENT e.V., Biomaterials Department, 07745 Jena, Germany.

INNOVENT e.V., Surface Technology Department, 07745 Jena, Germany.

出版信息

Nanomaterials (Basel). 2022 Feb 11;12(4):614. doi: 10.3390/nano12040614.

Abstract

The antibacterial activity of different antibiotic and metal-free thin polymer coatings was investigated. The films comprised quaternary ammonium compounds (QAC) based on a vinyl benzyl chloride (VBC) building block. Two monomeric QAC of different alkyl chain lengths were prepared, and then polymerized by two different polymerization processes to apply them onto Ti surfaces. At first, the polymeric layer was generated directly on the surface by atom transfer radical polymerization (ATRP). For comparison purposes, in a classical route a copolymerization of the QAC-containing monomers with a metal adhesion mediating phosphonate (VBPOH) monomers was carried out and the Ti surfaces were coated via drop coating. The different coatings were characterized by X-ray photoelectron spectroscopy (XPS) illustrating a thickness in the nanomolecular range. The cytocompatibility in vitro was confirmed by both live/dead and WST-1 assay. The antimicrobial activity was evaluated by two different assays (CFU and BTG, resp.,), showing for both coating processes similar results to kill bacteria on contact. These antibacterial coatings present a simple method to protect metallic devices against microbial contamination.

摘要

研究了不同的无抗生素和无金属的薄聚合物涂层的抗菌活性。这些薄膜包含基于乙烯基苄基氯(VBC)结构单元的季铵化合物(QAC)。制备了两种不同烷基链长度的单体QAC,然后通过两种不同的聚合工艺将它们聚合,以将其应用于钛表面。首先,通过原子转移自由基聚合(ATRP)在表面直接生成聚合物层。为了进行比较,采用经典方法将含QAC的单体与金属粘附介导膦酸酯(VBPOH)单体进行共聚,并通过滴涂法对钛表面进行涂层。通过X射线光电子能谱(XPS)对不同涂层进行表征,结果表明其厚度在纳米分子范围内。通过活/死细胞检测和WST-1检测证实了体外细胞相容性。通过两种不同的检测方法(分别为CFU和BTG)评估抗菌活性,结果表明两种涂层工艺在接触时杀灭细菌的效果相似。这些抗菌涂层提供了一种保护金属器械免受微生物污染的简单方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2727/8875251/7b5e2a0d65df/nanomaterials-12-00614-g001.jpg

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