Innovative strategy for in-office tooth bleaching using violet LED and biopolymers as H2O2 catalysts

被引:13
作者
Martins, Beatriz Voss [1 ]
Dias, Marlon Ferreira [1 ]
de Oliveira Ribeiro, Rafael Antonio [1 ]
de Alencar e Silva Leite, Maria Luisa [1 ]
Hebling, Josimeri [2 ]
de Souza Costa, Carlos Alberto [3 ]
机构
[1] Sao Paulo State Univ UNESP, Sch Dent, Dept Dent Mat & Prosthodont, Araraquara, SP, Brazil
[2] Sao Paulo State Univ UNESP, Sch Dent, Dept Morphol Genet Orthodont & Pediat Dent, Araraquara, SP, Brazil
[3] Sao Paulo State Univ UNESP, Sch Dent, Dept Physiol & Pathol, Rua Humana 1680, BR-14801903 Araraquara, SP, Brazil
基金
巴西圣保罗研究基金会;
关键词
Tooth bleaching; Cytotoxicity; Odontoblasts; violet; PEROXIDE; VIABILITY; DENTIN; LIGHT; VITRO; DRUG; SENSITIVITY; PROTOCOLS; DIFFUSION; RESPONSES;
D O I
10.1016/j.pdpdt.2022.102886
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Objective: 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. Methodology: 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 center dot) production were also determined (two-way ANOVA/Tukey/paired Student t-test; p < 0.05). Results: G6 had the highest esthetic efficacy compared to the other groups (p < 0.05). Besides the esthetic efficacy similar to conventional in-office bleaching (G5; p > 0.05), G10 also showed the lowest toxic effect and oxidative stress to MDPC-23 cells compared to all bleached groups (p < 0.05). Conclusion: Coating the enamel with a nanofiber scaffold and a polymeric catalyst primer, followed by the application of 10%, 20%, or 35% H2O2 bleaching gels irradiated with a violet LED, stimulates H2O2 degradation, increasing esthetic efficacy and reducing the trans-amelodentinal toxicity of the treatment.
引用
收藏
页数:8
相关论文
共 50 条
[41]   Quantitative determination of H2O2 for detection of alanine aminotransferase using thin film electrodes [J].
Saygili, Ecem ;
Orakci, Beyza ;
Koprulu, Melisa ;
Demirhan, Alper ;
Ilhan-Ayisigi, Esra ;
Kilic, Yalin ;
Yesil-Celiktas, Ozlem .
ANALYTICAL BIOCHEMISTRY, 2020, 591
[42]   Filtrates with Hydroxyl Radicals Prepared using Al + Acid + H2O2 for Removing Organic Pollutants [J].
Guo, Xiao-Han ;
Yang, Yang ;
Deng, Zhen-Yan .
ACS OMEGA, 2021, 6 (22) :14182-14190
[43]   Trap remediation of CuBi2O4 nanopolyhedra via surface self-coordination by H2O2: an innovative signaling mode for cathodic photoelectrochemical bioassay [J].
Gu, Mengmeng ;
Yan, Zhuying ;
Wu, Xiuming ;
Li, Zaijun ;
Dong, Yuming ;
Wang, Guang-Li .
NANOSCALE, 2023, 15 (06) :2954-2962
[44]   Optimization of H2O2 use during the photocatalytic degradation of ethidium bromide with TiO2 and iron-doped TiO2 catalysts [J].
Carbajo, J. ;
Adan, C. ;
Rey, A. ;
Martinez-Arias, A. ;
Bahamonde, A. .
APPLIED CATALYSIS B-ENVIRONMENTAL, 2011, 102 (1-2) :85-93
[45]   Removing polysaccharides-and saccharides-related coloring impurities in alkyl polyglycosides by bleaching with the H2O2/TAED/NaHCO3 system [J].
Liu Yanmei ;
Tao Jinliang ;
Sun Jiao ;
Chen Wenyi .
CARBOHYDRATE POLYMERS, 2014, 112 :416-421
[46]   Highly-efficient natural gas desulfurization and simultaneous H2O2 synthesis based on the electrochemical coupling reaction strategy [J].
Cui, Hanbo ;
Zhou, Changhui ;
Zhang, Yan ;
Zhou, Tingsheng ;
Xie, Chaoyue ;
Li, Lei ;
Wang, Jiachen ;
Li, Jinhua ;
Simchi, Abdolreza ;
Bai, Jing ;
Zhou, Baoxue .
JOURNAL OF HAZARDOUS MATERIALS, 2024, 463
[47]   Factors affecting catalytic destruction of H2O2 by hydrogenation and decomposition over Pd catalysts supported on activated carbon cloth (ACC) [J].
Gudarzi, Davood ;
Ratchananusorn, Warin ;
Turunen, Ilkka ;
Heinonen, Markku ;
Salmi, Tapio .
CATALYSIS TODAY, 2015, 248 :69-79
[48]   In-situ resource utilization (ISRU): Using optical fibers to produce H2O2, H2 or other resources from water [J].
Westerhoff, Paul ;
Fu, Han ;
Shapiro, Nora ;
Wang, Junli ;
Ananpattarachai, Jirapat .
OPTICAL FIBERS AND SENSORS FOR MEDICAL DIAGNOSTICS, TREATMENT, AND ENVIRONMENTAL APPLICATIONS XXV, 2025, 13310
[49]   Is selective hydrogenation of molecular oxygen to H2O2 affected by strong metal-support interactions on Pd/TiO2 catalysts? A case study using commercially available TiO2 [J].
Sterchele, Stefano ;
Bortolus, Marco ;
Biasi, Pierdomenico ;
Bostrom, Dan ;
Mikkola, Jyri-Pekka ;
Salmi, Tapio .
COMPTES RENDUS CHIMIE, 2016, 19 (08) :1011-1020
[50]   Fabrication of Pd Nanocubes@CdIF-8 catalysts for highly efficient electrocatalytic sensing of H2O2 and high-performance supercapacitor [J].
Li, Yue ;
Xu, Lanshu ;
Jia, MengYing ;
Cui, Linlin ;
Liu, Xinyan ;
Jin, XiaoJuan .
MATERIALS & DESIGN, 2020, 186