Evaluation of the surface characteristics and antibacterial properties of Titanium dioxide nanotube and methacryloyloxyethylphosphorylcholine (MPC) coated orthodontic brackets-a comparative invitro study

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Date

2024

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Springer Science and Business Media Deutschland GmbH

Abstract

Objectives: White spot lesions are the most common iatrogenic effect observed during orthodontic treatment. This study aimed to compare the surface characteristics and antibacterial action of uncoated and coated orthodontic brackets. Materials and methods: Sixty commercially available stainless steel brackets were coated with TiO<inf>2</inf> nanotubes and methacryloyloxyethylphosphorylcholine. The sample was divided into Group 1: uncoated orthodontic brackets, Group 2: Stainless steel brackets with TiO<inf>2</inf> nanotubes coating, Group 3: Stainless steel brackets with methacryloyloxyethylphosphorylcholine coating, and Group 4: Stainless steel brackets with TiO<inf>2</inf> nanotubes combined with methacryloyloxyethylphosphorylcholine coating. Surface characterization was assessed using atomic force microscopy and scanning electron microscopy. Streptococcus mutans was selected to test the antibacterial ability of the orthodontic brackets, total bacterial adhesion and bacterial viability were assessed. The brackets were subjected to scanning electron microscopy to detect the presence of biofilm. Results: The surface roughness was the greatest in Group 1 and least in Group 2 followed by Group 4 and Group 3 coated brackets. The optical density values were highest in Group 1 and lowest in Group 4. Comparison of colony counts revealed high counts in Group 1 and low counts in Group 4. A positive correlation between surface roughness and colony counts was obtained, however, was not statistically significant. Conclusions: The coated orthodontic brackets exhibited less surface roughness than the uncoated orthodontic brackets. Group 4 coated orthodontic brackets showed the best antibacterial properties. Clinical relevance: Coated orthodontic brackets prevent adhesion of streptococcus mutans and reduces plaque accumulation around the brackets thereby preventing formation of white spot lesions during orthodontic treatment. © The Author(s) 2024.

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Keywords

2-methacryloyloxyethyl phosphorylcholine, antiinfective agent, biocompatible coated material, methacrylic acid derivative, nanotube, phosphorylcholine, stainless steel, titanium, titanium dioxide, atomic force microscopy, bacterium adherence, biofilm, chemistry, comparative study, drug effect, materials testing, orthodontic bracket, scanning electron microscopy, Streptococcus mutans, surface property, Anti-Bacterial Agents, Bacterial Adhesion, Biofilms, Coated Materials, Biocompatible, Materials Testing, Methacrylates, Microscopy, Atomic Force, Microscopy, Electron, Scanning, Nanotubes, Orthodontic Brackets, Phosphorylcholine, Stainless Steel, Surface Properties, Titanium

Citation

Clinical Oral Investigations, 2024, 28, 6, pp. -

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