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Antimicrobial efficacy of copper-doped titanium surfaces for dental implants

机译:铜掺杂钛表面对牙科植入物的抗菌功效

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The aim of this in vitro study was to quantify the antibacterial effect of a copper-deposited titanium surface as a model for dental implants on the peri-implantitis-associated strain Porphyromonas gingivalis (DSM 20709). A spark-assisted anodization method in a combined deposition-anodization process was applied to deposit copper on discs made of titanium. This method allows the deposition of different concentrations of copper on the surface by varying the process time. Conventional culturing was used to investigate the adhesion of P. gingivalis onto the discs over 2, 4, and 6h as well as to study the antibacterial effect of copper released in solution. The viability of the bacterial cells is strongly inhibited on copper-deposited discs and reaches a CFU reduction of 3 log-units after 6h in comparison to the reference. The copper released in solution causes a reduction of 4 log-units after a 6h incubation time. With a 6h incubation time, the CFU count decreases with increasing copper concentrations on the disc (by 2% for the 1.3 mu g/disc; 32% for the 5.6 mu g/disc; and 34% for the 9.5 mu g/disc). However, at a higher copper concentration of 17.7 mu g/disc, after 6h, the decrease in the CFU count is less pronounced than that observed in solution, where a further decrease is observed. In conclusion, copper-functionalized titanium significantly reduces the survival of adhered bacteria and decreases the viable bacterial count in the environment surrounding the titanium. Thus, the area surrounding implants is being protected by copper released from the surface, forming a safe zone for improved implant healing.[GRAPHICS].
机译:这项体外研究的目的是量化铜沉积的钛表面的抗菌作用,作为牙种植体周围相关牙龈卟啉单胞菌(DSM 20709)种植牙的模型。采用组合沉积-阳极氧化工艺中的火花辅助阳极氧化方法,将铜沉积在钛制光盘上。该方法允许通过改变处理时间在表面上沉积不同浓度的铜。常规培养用于研究牙龈卟啉单胞菌在2、4和6小时内对圆盘的粘附,并研究溶液中释放的铜的抗菌作用。与参考相比,细菌细胞的活力在铜沉积的盘片上受到强烈抑制,并且在6小时后CFU降低了3 log个单位。孵育6小时后,溶液中释放的铜减少了4 log个单位。孵育6小时后,CFU计数随着圆盘上铜浓度的增加而减少(对于1.3μg / disc,减少2%;对于5.6μg / disc,减少32%;对于9.5μg/ disc,减少34%) 。然而,在较高的铜浓度为17.7μg / disc时,在6小时后,CFU计数的降低不如溶液中观察到的明显,溶液中的CFU计数进一步降低。总之,铜功能化的钛显着降低了附着细菌的存活率,并减少了钛周围环境中的活菌数量。因此,植入物周围的区域受到从表面释放的铜的保护,从而形成了一个安全的区域,可改善植入物的愈合。[图形]

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