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The antibacterial effect of non-thermal atmospheric pressure plasma treatment of titanium surfaces according to the bacterial wall structure

机译:根据细菌壁结构的非热常压等离子体处理钛表面的抗菌作用

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Titanium is commonly used as a biomaterial for dental implants. In this study, we investigated the antibacterial properties of titanium samples following treatment with a non-thermal atmospheric pressure plasma jet (NTAPPJ) on bacteria with two different cell wall structures, including gram-positive and gram-negative bacteria. The hydrophilicity and surface energy of titanium surfaces were significantly increased after NTAPPJ treatment without altering topographical features. Changes in the chemical composition and reductive potential were observed on the NTAPPJ-treated titanium surfaces. The adhesion and biofilm formation rate of bacteria were significantly reduced on the NTAPPJ-treated titanium surfaces compared with the untreated samples, which was confirmed by fluorescent imaging. Regarding the comparison between gram-positive and gram-negative bacteria, both adhesion and the biofilm formation rate were significantly lower for gram-negative bacteria than gram-positive bacteria on samples treated for longer durations with the NTAPPJ. Transmission electron microscopy imaging showed a comparably more disruptive membrane structure of gram-negative bacteria than gram-positive bacteria on the NTAPPJ-treated surfaces. Our results indicated that the NTAPPJ treatment could be useful for preventing bacterial adhesion and biofilm formation on titanium dental implant surfaces, while the reductive potential on surfaces treated by the NTAPPJ could cause oxidation of bacteria, which could be more sensitive to gram-negative bacteria due to differences in the cell wall structure.
机译:钛通常用作牙科植入物的生物材料。在这项研究中,我们研究了用非热常压等离子体射流(NTAPPJ)处理具有两种不同细胞壁结构的细菌(包括革兰氏阳性菌和革兰氏阴性菌)后,钛样品的抗菌性能。 NTAPPJ处理后,钛表面的亲水性和表面能显着增加,而不会改变其形貌特征。在经NTAPPJ处理的钛表面观察到化学成分和还原电位的变化。与未经处理的样品相比,经NTAPPJ处理的钛表面细菌的粘附力和生物膜形成速率显着降低,这已通过荧光成像得到了证实。关于革兰氏阳性菌和革兰氏阴性菌之间的比较,在长时间使用NTAPPJ处理的样品上,革兰氏阴性菌的粘附力和生物膜形成速率均显着低于革兰氏阳性菌。透射电子显微镜成像显示,与在NTAPPJ处理过的表面上的革兰氏阳性菌相比,革兰氏阴性菌具有更大的破坏性膜结构。我们的结果表明,NTAPPJ处理可用于预防钛合金种植体表面上的细菌粘附和生物膜形成,而NTAPPJ处理后的表面上的还原电势可能导致细菌氧化,这可能对革兰氏阴性细菌更敏感。细胞壁结构的差异。

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