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Antibacterial efficacy of titanium-containing alloy with silver-nanoparticles enriched diamond-like carbon coatings

机译:含银纳米粒子富集类金刚石碳涂层的含钛合金的抗菌功效

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摘要

Silver ions (Ag+) have strong bactericidal effects and Ag-coated medical devices proved their effectiveness in reducing infections in revision total joint arthroplasty. We quantitatively determined the antimicrobial potency of different surface treatments on a titanium alloy (Ti), which had been conversed to diamond-like carbon (DLC-Ti) and doped with high (Ag:PVP = 1:2) and low (Ag:PVP = 1:10 and 1:20) concentrations of Ag (Ag-DLC-Ti) with a modified technique of ion implantation. Bacterial adhesion and planktonic growth of clinically relevant bacterial strains (Staphylococcus epidermidis,Staphylococcus aureus, and Pseudomonas aeruginosa) on Ag-DLC-Ti were compared to untreated Ti by quantification of colony forming units on the adherent surface and in the growth medium as well as semiquantitatively by determining the grade of biofilm formation by scanning electron microscopy. (1) A significant (p < 0.05) antimicrobial effect could be found for all Ag-DLC-Ti samples (reduced growth by 5.6–2.5 logarithmic levels). (2) The antimicrobial effect was depending on the tested bacterial strain (most for P. aeruginosa, least for S. aureus). (3) Antimicrobial potency was positively correlated with Ag concentrations. (4) Biofilm formation was decreased by Ag-DLC-Ti surfaces. This study revealed potent antibacterial effects of Ag-DLC-Ti. This may serve as a promising novel approach to close the gap in antimicrobial protection of musculoskeletal implants.
机译:银离子(Ag + )具有很强的杀菌作用,涂有银的医疗器械证明了它们在减少翻修全关节置换术中减少感染方面的有效性。我们定量确定了钛合金(Ti)上不同表面处理的抗菌效力,该钛合金已转化为类金刚石碳(DLC-Ti)并掺杂有高(Ag:PVP = 1:2)和低(Ag:采用改进的离子注入技术,可将PVP浓度= 1:10和1:20)的Ag(Ag-DLC-Ti)浓度通过定量粘附表面和生长培养基以及集落形成单位的菌落形成单位,比较了临床相关细菌菌株(表皮葡萄球菌,金黄色葡萄球菌和铜绿假单胞菌)的细菌粘附和浮游生长与未经处理的Ti的比较。通过扫描电子显微镜确定生物膜形成的等级进行半定量。 (1)对所有Ag-DLC-Ti样品均发现了显着的(p <0.05)抗菌作用(对数增长降低了5.6-2.5对数)。 (2)抗菌效果取决于所测试的细菌菌株(大多数对铜绿假单胞菌,最少对金黄色葡萄球菌)。 (3)抗菌效力与银浓度呈正相关。 (4)Ag-DLC-Ti表面减少了生物膜的形成。这项研究揭示了Ag-DLC-Ti的有效抗菌作用。这可能是一种有希望的新颖方法,可以缩小肌肉骨骼植入物在抗菌保护方面的差距。

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