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等离子体诱导的纳米结构金属银表面:对避免细菌粘附在医疗设备上的疏菌效应的研究。

Plasma-induced nanostructured metallic silver surfaces: study of bacteriophobic effect to avoid bacterial adhesion on medical devices.

作者信息

García-Bonillo Cristina, Texidó Robert, Gilabert-Porres Joan, Borrós Salvador

机构信息

Grup d'Enginyeria de Materials (GEMAT), Universitat Ramón Llull, 08017, Barcelona, Spain.

Tractivus SL, 08017, Barcelona, Spain.

出版信息

Heliyon. 2022 Oct 1;8(10):e10842. doi: 10.1016/j.heliyon.2022.e10842. eCollection 2022 Oct.

Abstract

Biofilm formation in medical devices represents one of the major problems for the healthcare system, especially those that occur on implantable silicone-based devices. To provide a general solution to avoid biofilm formation in the first stages of development, this work studied how nanostructured metallic silver coatings hinder bacteria-surface interaction by preventing bacteria adhesion. The three studied silver nanostructures ("Sharp blades", "Thick blades" and "Leaves") combined superhydrophobic behavior with a physical impediment of the coating nanostructure that produced a bacteriophobic effect avoiding the adhesion mechanism of different bacterial strains. These silver nanostructures are immobilized on stretchable substrates through a polymeric thin film of plasma-polymerized penta-fluorophenyl methacrylate. The control over the nanostructures and therefore its bacteriophobic-bactericidal effect depends on the plasma polymerization conditions of the polymer. The characterization of this bacteriophobic effect through FE-SEM microscopy, live/dead cell staining, and direct bacterial adhesion counts, provided a complete mapping of how bacteria interact with the surface in each scenario. Results revealed that the bacterial adhesion was reduced by up to six orders of magnitude in comparison with uncoated surfaces thereby constituting an effective strategy to avoid the formation of biofilm on medical materials.

摘要

医疗设备中的生物膜形成是医疗系统面临的主要问题之一,尤其是在基于硅酮的可植入设备上出现的生物膜。为了在开发的初始阶段提供避免生物膜形成的通用解决方案,本研究探讨了纳米结构金属银涂层如何通过防止细菌粘附来阻碍细菌与表面的相互作用。所研究的三种银纳米结构(“锋利叶片”、“厚叶片”和“叶片”)将超疏水行为与涂层纳米结构的物理阻碍相结合,产生了一种避菌效果,避免了不同细菌菌株的粘附机制。这些银纳米结构通过等离子体聚合的甲基丙烯酸五氟苯酯聚合物薄膜固定在可拉伸基板上。对纳米结构的控制以及由此产生的避菌 - 杀菌效果取决于聚合物的等离子体聚合条件。通过场发射扫描电子显微镜(FE-SEM)、活/死细胞染色和直接细菌粘附计数对这种避菌效果进行表征,全面描绘了每种情况下细菌与表面的相互作用方式。结果表明,与未涂层表面相比,细菌粘附减少了多达六个数量级,从而构成了一种避免医疗材料上形成生物膜的有效策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6ac6/9547212/e241d1d12af6/ga1.jpg

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