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Different concepts for creating antibacterial yet biocompatible surfaces: Adding bactericidal element, grafting therapeutic agent through COOH plasma polymer and their combination

机译:产生抗菌又生物相容性表面的不同概念:添加杀菌元素,通过COOH等离子体聚合物嫁接治疗剂及其组合

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摘要

Antibacterial coatings have become a rapidly developing field of research, strongly stimulated by the increasing urgency of identifying alternatives to the traditional administration of antibiotics. Such coatings can be deposited onto implants and other medical devices and prevent the inflammations caused by hospital-acquired infections. Nevertheless, the design of antibacterial yet biocompatible and bioactive surfaces is a challenge that biological community has faced for many years but the "materials of dream" have not yet been developed. In this work, the biocompatible yet antibacterial multi-layered films were prepared by a combination of magnetron sputtering (TiCaPCON film), ion implantation (Ag-doped TiCaPCON film), plasma polymerization (COOH layer), and the final immobilization of gentamicin (GM) and heparin (Hepa) molecules. The layer chemistry was thoroughly investigated by means of FTIR and X-ray photoelectron spectroscopies. It was found that the immobilization of therapeutic components occurs throughout the entire thickness of the plasma-deposited COOH layer. The influence of each type of bactericide (Ag+ ions, GM, and Hepa) on antibacterial activity and cell proliferation was analyzed. Our films were cytocompatible and demonstrated superior bactericidal efficiency toward antibioticresistant bacterial E. coli K261 strain. Increased toxicity while using the combination of Ag nanoparticles and COOH plasma polymer is discussed.
机译:抗菌涂料已成为一种迅速发展的研究领域,强烈刺激了鉴定传统抗生素施用替代品的替代品的迫切性刺激。这种涂层可以沉积在植入物和其他医疗装置上,并防止由医院获得的感染引起的炎症。尽管如此,抗菌又生物相容性和生物活性表面的设计是一种挑战,即生物群体面临多年,但尚未开发出“梦想材料”。在这项工作中,通过磁控溅射(TiCapcon膜),离子注入(Ag掺杂TiCapcon膜),血浆聚合(CoOH层)和庆大霉素的最终固定来制备生物相容性但抗菌多层膜的组合制备(GM )和肝素(HEPA)分子。通过FTIR和X射线光电子能谱彻底研究了层化学。发现在沉积的芯片层的整个厚度的整个厚度中发生治疗组分的固定。分析了每种杀菌剂(Ag +离子,GM和HEPA)对抗菌活性和细胞增殖的影响。我们的薄膜是细胞锁定的,并对抗生素细菌大肠杆菌K261菌株展示了卓越的杀菌效率。讨论了使用Ag纳米颗粒和COOH血浆聚合物的组合同时增加的毒性。

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  • 来源
    《Applied Surface Science》 |2021年第1期|149751.1-149751.11|共11页
  • 作者单位

    Natl Univ Sci & Technol MISIS Leninsky Prospect 4 Moscow 119049 Russia;

    Natl Univ Sci & Technol MISIS Leninsky Prospect 4 Moscow 119049 Russia;

    Natl Univ Sci & Technol MISIS Leninsky Prospect 4 Moscow 119049 Russia;

    Natl Univ Sci & Technol MISIS Leninsky Prospect 4 Moscow 119049 Russia;

    Natl Univ Sci & Technol MISIS Leninsky Prospect 4 Moscow 119049 Russia;

    Natl Univ Sci & Technol MISIS Leninsky Prospect 4 Moscow 119049 Russia|Russian Acad Sci Vernadsky Inst Geochem & Analyt Chem Kosygin Str 19 Moscow 119991 Russia;

    Brno Univ Technol CEITEC Cent European Inst Technol Purkynova 123 Brno Czech Republic|Brno Univ Technol Inst Phys Engn Tech 2896-2 Brno 61669 Czech Republic;

    Minist Hlth Russian Federat NN Blokhin Med Res Ctr Oncol Kashirskoe Shosse 24 Moscow 115478 Russia;

    Minist Hlth Russian Federat NN Blokhin Med Res Ctr Oncol Kashirskoe Shosse 24 Moscow 115478 Russia;

    State Res Ctr Appl Microbiol & Biotechnol Obolensk 142279 Moscow Region Russia;

    State Res Ctr Appl Microbiol & Biotechnol Obolensk 142279 Moscow Region Russia|Fed Autonomous Sci Inst Eastern Ctr State Plannin Moscow Russia;

    Univ Luxembourg Dept Phys & Mat Sci Lab Phys Adv Mat LPM L-1511 Luxembourg Luxembourg;

    Natl Univ Sci & Technol MISIS Leninsky Prospect 4 Moscow 119049 Russia;

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

    Antibacterial surfaces; Plasma; Gentamicin; Silver; Heparin; XPS;

    机译:抗菌表面;血浆;庆大霉素;银;肝素;XPS;

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