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Study of nisin adsorption on plasma-treated polymer surfaces for setting up materials with antibacterial properties

机译:研究乳链菌肽在等离子处理过的聚合物表面上的吸附作用,以建立具有抗菌性能的材料

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摘要

Setting up antibacterial materials by nisin adsorption on surfaces depends mainly on the surface properties and the surface treatments allowing the modification of such properties. In order to investigate the factors affecting such adsorption, the native low density polyethylene (LDPE) was modified using Argon/ Oxygen (Ar/O_2) plasma, nitrogen (N_2) plasma and plasma-induced grafting of acrylic acid (AA). The films were studied by various characterization techniques. The chemical surface modification was confirmed by X-ray photoelectron spectroscopy (XPS), the wettability of the surfaces was evaluated by contact angle measurements, the surface charge was determined by the zeta potential measurements, and the changes in surface topography and roughness were revealed by atomic force microscopy (AFM). Nisin was adsorbed on the native and the modified surfaces. The antibacterial activity, the nisin adsorbed amount, and the peptide distribution were compared for the four nisin-functionalized films. The highest antibacterial activity was recorded on the Ar/O_2 followed by AA then by N_2 treated films and the lowest activity was on the native film. The observed antibacterial activity was correlated to the type of the surface, hydrophobic and hydrophilic interactions, surface charge, surface topography, nisin adsorbed amount, and nisin distribution on the surfaces.
机译:通过乳链菌肽在表面上的吸附来形成抗菌材料主要取决于表面性质和允许对其性质进行修饰的表面处理。为了研究影响这种吸附的因素,使用氩气/氧气(Ar / O_2)等离子体,氮气(N_2)等离子体和等离子体诱导的丙烯酸(AA)接枝改性天然低密度聚乙烯(LDPE)。通过各种表征技术研究了这些膜。通过X射线光电子能谱(XPS)确认化学表面改性,通过接触角测量评估表面的润湿性,通过zeta电位测量确定表面电荷,并通过X射线电镜揭示表面形貌和粗糙度的变化。原子力显微镜(AFM)。乳链菌肽被吸附在天然表面和改性表面上。比较了四种乳链菌肽官能化膜的抗菌活性,乳链菌肽的吸附量和肽分布。最高的抗菌活性记录在Ar / O_2上,然后是AA,然后是N_2处理过的膜,最低的活性是在天然膜上。观察到的抗菌活性与表面类型,疏水和亲水相互作用,表面电荷,表面形貌,乳酸链球菌素的吸附量和乳酸链球菌素在表面的分布相关。

著录项

  • 来源
    《Reactive & Functional Polymers》 |2013年第11期|1473-1479|共7页
  • 作者单位

    Laboratoire ProBioGEM, Polytech'Lille, Universite Lille 1, Avenue Paul Langevin, 59655 Villeneuve d'Ascq, France,Laboratoire UMET, UMR-CNRS 8207, Ecole Nationale Superieure de Chimie de Lille, Universite Lille 1, Avenue Dimitri Mendele'iev, 59655 Villeneuve d'Ascq, France;

    Laboratoire UMET, UMR-CNRS 8207, Ecole Nationale Superieure de Chimie de Lille, Universite Lille 1, Avenue Dimitri Mendele'iev, 59655 Villeneuve d'Ascq, France;

    Unite de Catalyse et de Chimie du Solide, UMR-CNRS 8181, Ecole Nationale Superieure de Chimie de Lille, Universite Lille 1, Avenue Dimitri Mendeleiev, 59655 Villeneuve d'Ascq, France;

    Institut des Materiaux Jean Rouxel (IMN), CNRS-Universite de Nantes, 2 rue de la Houssiniere, 44322 Nantes, France;

    Institut des Materiaux Jean Rouxel (IMN), CNRS-Universite de Nantes, 2 rue de la Houssiniere, 44322 Nantes, France;

    Laboratoire ProBioGEM, Polytech'Lille, Universite Lille 1, Avenue Paul Langevin, 59655 Villeneuve d'Ascq, France;

    Laboratoire ProBioGEM, Polytech'Lille, Universite Lille 1, Avenue Paul Langevin, 59655 Villeneuve d'Ascq, France;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Functional materials; Surface properties; Peptide adsorption; Antibacterial properties; Plasma functionalization;

    机译:功能材料;表面性质肽吸附;抗菌性能;血浆功能化;

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