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The Antimicrobial Properties of Titanium Nitride/Silver Nanocomposite Coatings

机译:氮化钛/银纳米复合涂层的抗菌性能

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摘要

Titanium nitride surfaces with silver concentrations of TiN/4.6at%Ag, TiN/10.8at%Ag and TiN/16.7at%Ag were produced using magnetron deposition. Antimicrobial and topographic properties affecting the interactions of the surfaces with microorganisms were assessed using Pseudomonas aeruginosa (1 μm x 3 μm rod-shaped Gram-negative bacteria) and Staphylococcus aureus (1 μm coccus-shaped Gram-positive bacteria) with retention assays, live/dead staining, and strength of attachment measurements. Retention of P. aeruginosa on the surfaces increased with an increase in surface silver content, grain size and topography, but the cells were easily removed from the surface under water when a force was applied. S. aureus cells were retained in lower numbers, but once attached, cells were difficult to remove. S. aureus cells attached in increased numbers on surfaces with lower silver content and smaller dimension surface features. The modification of hard wearing surfaces by addition of silver increased the antimicrobial activity of the surface, but the spectrum of antimicrobial activity varied with the target cell and surface properties. This work demonstrates that a range of methods and cell types need to be tested against surfaces which either discourage cell colonization and/or are potentially antimicrobial since the novel surface properties produced may inadvertently select and give advantage to a particular cell species. This may, in turn, affect the predicted surface efficacy.
机译:使用磁控管沉积产生具有银浓度为TiN / 4.6at%Ag,TiN / 10.8at%Ag和TiN / 16.7at%Ag的氮化钛表面。使用铜绿假单胞菌(1μmx 3μm杆状革兰氏阴性菌)和金黄色葡萄球菌(1μm球菌状革兰氏阳性菌)进行保留分析,评估影响表面与微生物相互作用的抗菌和地形特性/死污和附着强度的测量。随着表面银含量,晶粒尺寸和形貌的增加,铜绿假单胞菌在表面上的保留增加,但是当施加力时,在水下很容易将细胞从表面去除。金黄色葡萄球菌细胞保留的数量较少,但一旦附着,则难以去除。金黄色葡萄球菌细胞附着在具有较低银含量和较小尺寸表面特征的表面上的数量增加。通过添加银对耐磨表面的改性可以提高表面的抗菌活性,但是抗菌活性的范围随目标细胞和表面性质的不同而变化。这项工作表明,需要针对阻止细胞定殖和/或可能具有抗菌作用的表面测试多种方法和细胞类型,因为产生的新表面性质可能会无意中选择特定的细胞种类并为特定的细胞种类提供优势。反过来,这可能会影响预测的表面功效。

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