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Bacterial Biofilm Inhibition: A Focused Review on Recent Therapeutic Strategies for Combating the Biofilm Mediated Infections.细菌生物膜抑制:关于对抗生物膜介导感染的最新治疗策略的重点综述
Front Microbiol. 2021 May 12;12:676458. doi: 10.3389/fmicb.2021.676458. eCollection 2021.
2
On the emergence of antibacterial and antiviral copper cold spray coatings.论抗菌抗病毒铜基冷喷涂涂层的出现
J Biol Eng. 2021 Feb 24;15(1):8. doi: 10.1186/s13036-021-00256-7.
3
Copper Surfaces in Biofilm Control.生物膜控制中的铜表面
Nanomaterials (Basel). 2020 Dec 11;10(12):2491. doi: 10.3390/nano10122491.
4
Different binding mechanisms of Staphylococcus aureus to hydrophobic and hydrophilic surfaces.金黄色葡萄球菌与疏水和亲水表面的不同结合机制。
Nanoscale. 2020 Oct 7;12(37):19267-19275. doi: 10.1039/d0nr03134h. Epub 2020 Sep 16.
5
Influence of surface copper content on biofilm control using chlorine and mechanical stress.表面铜含量对氯和机械应力控制生物膜的影响。
Biofouling. 2020 Jan;36(1):1-13. doi: 10.1080/08927014.2019.1708334. Epub 2020 Jan 30.
6
Inductively Coupled Plasma Mass Spectrometry: Introduction to Analytical Aspects.电感耦合等离子体质谱法:分析方面的介绍
Clin Biochem Rev. 2019 Aug;40(3):115-133. doi: 10.33176/AACB-19-00024.
7
Rapid in situ assessment of Cu-ion mediated effects and antibacterial efficacy of copper surfaces.快速原位评估铜离子介导的作用和铜表面的抗菌效果。
Sci Rep. 2018 May 25;8(1):8172. doi: 10.1038/s41598-018-26391-8.
8
Contact killing and antimicrobial properties of copper.接触杀灭和铜的抗菌性能。
J Appl Microbiol. 2018 May;124(5):1032-1046. doi: 10.1111/jam.13681. Epub 2018 Feb 2.
9
Bio-mimicking nano and micro-structured surface fabrication for antibacterial properties in medical implants.用于医用植入物抗菌性能的仿生纳米和微结构表面制造
J Nanobiotechnology. 2017 Oct 2;15(1):64. doi: 10.1186/s12951-017-0306-1.
10
Natural and bioinspired nanostructured bactericidal surfaces.天然和仿生纳米结构杀菌表面。
Adv Colloid Interface Sci. 2017 Oct;248:85-104. doi: 10.1016/j.cis.2017.07.030. Epub 2017 Jul 27.

冷喷涂和喷丸处理铜表面的生物膜抑制及抗病毒反应:表面形态和微观结构的影响

Biofilm Inhibition and Antiviral Response of Cold Sprayed and Shot Peened Copper Surfaces: Effect of Surface Morphology and Microstructure.

作者信息

Razavipour Maryam, Gonzalez Mayte, Singh Naveen, Cimenci Cagla Eren, Chu Nicole, Alarcon Emilio I, Villafuerte Julio, Jodoin Bertrand

机构信息

Cold Spray Research Laboratory, University of Ottawa, Ottawa, ON Canada.

Division of Cardiac Surgery, BEaTS Research, University of Ottawa Heart Institute, Ottawa, Ontario Canada.

出版信息

J Therm Spray Technol. 2022;31(1-2):130-144. doi: 10.1007/s11666-021-01315-7. Epub 2022 Jan 6.

DOI:10.1007/s11666-021-01315-7
PMID:37520908
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC8735887/
Abstract

Antibacterial properties of copper against planktonic bacteria population are affected by surface microstructure and topography. However, copper interactions with bacteria in a biofilm state are less studied. This work aims at better understanding the difference in biofilm inhibition of bulk, cold-sprayed, and shot-peened copper surfaces and gaining further insights on the underlying mechanisms using optical and scanning electron microscopy to investigate the topography and microstructure of the surfaces. The biofilm inhibition ability is reported for all surfaces. Results show that the biofilm inhibition performance of cold sprayed copper, while initially better, decreases with time and results in an almost identical performance than as-received copper after 18h incubation time. The shot-peened samples with a rough and ultrafine microstructure demonstrated an enhanced biofilm control, especially at 18 hr. The biofilm control mechanisms were explained by the diffusion rates and concentration of copper ions and the interaction between these ions and the biofilm, while surface topography plays a role in the bacteria attachment at the early planktonic state. Furthermore, the data suggest that surface topography plays a key role in antiviral activity of the materials tested, with a smooth surface being the most efficient.

摘要

铜对浮游细菌群体的抗菌性能受表面微观结构和形貌的影响。然而,铜与生物膜状态下细菌的相互作用研究较少。这项工作旨在更好地理解块状、冷喷涂和喷丸处理的铜表面在生物膜抑制方面的差异,并通过光学和扫描电子显微镜研究表面形貌和微观结构,进一步深入了解其潜在机制。报告了所有表面的生物膜抑制能力。结果表明,冷喷涂铜的生物膜抑制性能虽然最初较好,但会随时间下降,在孵育18小时后,其性能与原始铜几乎相同。具有粗糙和超细微观结构的喷丸处理样品表现出更强的生物膜控制能力,尤其是在18小时时。生物膜控制机制通过铜离子的扩散速率和浓度以及这些离子与生物膜之间的相互作用来解释,而表面形貌在浮游细菌早期附着过程中起作用。此外,数据表明表面形貌在测试材料的抗病毒活性中起关键作用,光滑表面最为有效。