Antibacterial coating of orthodontic elastomeric ligatures with silver and bismuth nanofilms by magnetron sputtering: A feasibility study

弹性体 粘附 材料科学 涂层 溅射沉积 复合材料 表面粗糙度 溅射 纳米技术 薄膜 冶金
作者
Andrea Schubert,Carolin Griesmüller,Nikolaus Gersdorff,Ralf Bürgers,Bernhard Wiechens,Torsten Wassmann
出处
期刊:Clinical and experimental dental research [Wiley]
卷期号:10 (2): e864-e864 被引量:8
标识
DOI:10.1002/cre2.864
摘要

Abstract Objectives Magnetron sputtering was evaluated to equip surfaces of orthodontic elastomeric ligatures with silver and bismuth nanofilms. Material and Methods Antibacterial properties were evaluated by the adhesion of Streptococcus mutans . Polyurethane‐based elastomeric ligatures were coated with silver and bismuth nanofilms via direct current magnetron sputtering. Surface roughness ( R a ) and surface‐free energy (SFE) were assessed. Coated specimens were incubated with S. mutans for 2 h. Adhering bacteria were visualized by Hoechst staining and quantified by an ATP‐based luminescence assay. One‐way analysis of variance with Tukey post hoc testing and Pearson correlation analysis were performed ( p < .05) to relate bacterial adhesion to surface roughness and surface‐free energy. Results Elastomeric ligatures were successfully coated with silver and bismuth nanofilms. R a was significantly reduced by silver coating. Silver and bismuth coatings showed significantly higher SFE than controls. Adhesion of S. mutans was significantly decreased by silver coating. No correlation between bacterial adhesion and SFE was found. Correlation between bacterial adhesion and R a was positive but not statistically significant. Conclusions Magnetron sputtering proved to be a feasible method to equip orthodontic elastomeric ligatures with silver and bismuth nanofilms. Silver coatings of elastomeric ligatures may reduce white spots and carious lesions in orthodontic patients. Future research is required to stabilize coatings.

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