Innovative strategy for in-office tooth bleaching using violet LED and biopolymers as H2O2 catalysts
•Higher production of OH• improves the esthetic outcome of the tooth bleaching.•Violet LED causes a discrete chromatic change in dental tissues.•Catalysis applied to a bleaching gel with 10% H2O2 optimizes the esthetic efficacy. To assess the influence of coating the enamel with a nanofiber scaffold...
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Veröffentlicht in: | Photodiagnosis and photodynamic therapy 2022-06, Vol.38, p.102886-102886, Article 102886 |
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Sprache: | eng |
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Zusammenfassung: | •Higher production of OH• improves the esthetic outcome of the tooth bleaching.•Violet LED causes a discrete chromatic change in dental tissues.•Catalysis applied to a bleaching gel with 10% H2O2 optimizes the esthetic efficacy.
To assess the influence of coating the enamel with a nanofiber scaffold (NS) and a polymeric catalyst primer (PCP) on the esthetic efficacy, degradation kinetics of hydrogen peroxide (H2O2), and trans-amelodentinal cytotoxicity of bleaching gels subjected or not to violet-LED irradiation.
The following groups were established (n = 8): G1- No treatment (negative control); G2- NS+PCP; G3- LED; G4- NS+PCP+LED; G5- 35% H2O2 (positive control); G6- NS+PCP+35% H2O2+LED; G7- 20% H2O2; G8- NS+PCP+20% H2O2+LED; G9- 10% H2O2; G10- NS+PCP+10% H2O2+LED. For esthetic efficacy analysis, enamel/dentin discs were stained and exposed for 45 min to the bleaching protocols. To assess the cytotoxicity, the stained enamel/dentin discs were adapted to artificial pulp chambers, and the extracts (culture medium + components diffused through the discs) were collected and applied to MDPC-23 cells, which had their viability, oxidative stress, and morphology (SEM) evaluated. The amount of H2O2 diffused and hydroxyl radical (OH•) production were also determined (two-way ANOVA/Tukey/paired Student t-test; p |
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ISSN: | 1572-1000 1873-1597 |
DOI: | 10.1016/j.pdpdt.2022.102886 |