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Nanoscale characteristics of antibacterial cationic polymeric brushes and single bacterium interactions probed by force microscopy

机译:抗菌阳离子聚合物刷的纳米级特征和用力显微镜探测的单细菌相互作用

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摘要

Cationic brushes are powerful molecules for antibacterial purposes with permanent activity and mobility. Therefore, clarifying the characteristics of the brush structure and related interactions with microbial cells becomes important. In this study, two different molecular weight (M-n: 1800 and 60 000) polyethyleneimine (PEI) molecules were grafted on a polyurethane (PU) surface. Moreover, an alkylation step was performed to enhance the antibacterial efficiency by increasing the polycationic character of the PEI brushes. The surface potential of the PEI brushes was raised with an additional alkylation step. Nanoscale characterization of the PEI brushes on PU surfaces was examined in terms of topography, roughness, and surface potentials by Kelvin Probe Force Microscopy (KPFM). The nanomechanical behaviour of the PEI brushes was investigated in Milli-Q water and phosphate buffer saline by Atomic Force Microscopy (AFM). The nanomechanical properties were directly affected by the incubation medium and surface properties. Additionally, polymeric brush-single bacterium interactions were probed by Single Cell Force Spectroscopy (SCFS). The antibacterial activity of the PEI brushes was probed at a single bacterium level with the Escherichia coli K-12 bacteria species. As a result, rupture forces between E. coli K-12 and the alkylated PEI grafted surface were calculated to identify the bacterial adhesion process at piconewton force sensitivity. It was found that, alkylated high molecular weight PEI brushes show the lowest rupture force (56.1 pN) with the lowest binding percentage (%5) against single bacterial cells. This study indicated that, increasing the chain length, charge (alkyl groups) and mobility of PEI brushes decreases the binding percentage and force at a single bacterium level, synergistically.
机译:阳离子刷是具有永久性活性和移动性的抗菌目的的强力分子。因此,阐明刷子结构的特性和与微生物细胞的相关相互作用变得重要。在该研究中,将两种不同的分子量(M-N:1800和60 000)聚乙基亚胺(PEI)分子移植在聚氨酯(PU)表面上。此外,进行烷基化步骤以通过增加PEI刷的聚处理特性来增强抗菌效率。用另外的烷基化步骤升高PEI刷的表面电位。在Kelvin探针力显微镜(KPFM)的地形,粗糙度和表面电位方面检查了PU表面上PEI刷子的纳米级表征。通过原子力显微镜(AFM)在毫级水和磷酸盐缓冲盐水中研究了PEI刷的纳米力学行为。纳米力学性能直接受培养介质和表面性质的影响。另外,通过单细胞力谱(SCFS)探测聚合物刷单缩细胞相互作用。用大肠杆菌K-12细菌种类探测PEI刷子的抗菌活性。结果,计算了大肠杆菌K-12和烷基化的PEI接枝表面之间的破裂力以鉴定Piconewton力敏感性的细菌粘附过程。发现,烷基化的高分子量PEI刷子显示出对单细菌细胞的最低结合百分比(%5)的最低破裂力(56.1pn)。该研究表明,增加链长,电荷(烷基)和PEI刷的迁移率降低了单一细菌水平的结合百分比和力,协同作用。

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  • 来源
    《RSC Advances》 |2016年第21期|共8页
  • 作者单位

    Hacettepe Univ Dept Basic Pharmaceut Sci Fac Pharm TR-06100 Ankara Turkey;

    Johannes Kepler Univ Linz Inst Biophys A-4020 Linz Austria;

    Johannes Kepler Univ Linz Inst Biophys A-4020 Linz Austria;

    Hacettepe Univ Inst Grad Studies Sci &

    Engn Grad Dept Nanotechnol &

    Nanomed TR-06640 Ankara Turkey;

    Hacettepe Univ Inst Grad Studies Sci &

    Engn Grad Dept Nanotechnol &

    Nanomed TR-06640 Ankara Turkey;

    Hacettepe Univ Dept Basic Pharmaceut Sci Fac Pharm TR-06100 Ankara Turkey;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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