Can the chlorhexidine gluconate solution potentiate the staining of polycrystalline ceramic brackets?

Aim: The present study aimed to assess, in vitro, the effect of chlorhexidine on the potentiation of polycrystalline ceramic bracket staining. Methods: Seventy-two polycrystalline ceramic brackets of upper right central incisors were divided into six groups (n=12) according to immersion solution. Th...

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Main Authors: Catharina e Silva Monteiro Barros, Jose Guilherme Neves, Ana Paula Terossi de Godoi, Ana Rosa Costa, Mario Vedovello Filho, Heloisa Cristina Valdrighi
Format: Article
Language:English
Published: Universidade Estadual de Campinas 2019-12-01
Series:Brazilian Journal of Oral Sciences
Subjects:
Online Access:https://periodicos.sbu.unicamp.br/ojs/index.php/bjos/article/view/8657417
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author Catharina e Silva Monteiro Barros
Jose Guilherme Neves
Ana Paula Terossi de Godoi
Ana Rosa Costa
Mario Vedovello Filho
Heloisa Cristina Valdrighi
author_facet Catharina e Silva Monteiro Barros
Jose Guilherme Neves
Ana Paula Terossi de Godoi
Ana Rosa Costa
Mario Vedovello Filho
Heloisa Cristina Valdrighi
author_sort Catharina e Silva Monteiro Barros
collection DOAJ
description Aim: The present study aimed to assess, in vitro, the effect of chlorhexidine on the potentiation of polycrystalline ceramic bracket staining. Methods: Seventy-two polycrystalline ceramic brackets of upper right central incisors were divided into six groups (n=12) according to immersion solution. The groups were G1 - distilled water (control); G2 - chlorhexidine; G3 - coffee; G4 - red wine; G5 - chlorhexidine associated with coffee; and G6 - chlorhexidine associated with red wine. The samples were analyzed by means of a spectrophotometer according to the CIEL*a*b* system, and color change (ΔE*) was calculated. The readings were performed at the following times: T0 - After package removal and T1 - After staining. The data were analyzed by Kruskal Wallis and t tests (p<0.05) at 5% significance level. Results: The total color variation (ΔE*) was greater in the group that received chlorhexidine associated with red wine (p<0.05) and lower in the groups that received distilled water. All other groups showed greater value variations when compared to G1 and G2. Group G6 showed a greater color change due to the potentiation of chlorhexidine with the dye substance. Conclusion: It is concluded that chlorhexidine potentiates the staining caused by red wine in polycrystalline ceramic brackets.
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spelling doaj.art-af3b021237db466a9ee721eb064b5ed22022-12-21T19:29:51ZengUniversidade Estadual de CampinasBrazilian Journal of Oral Sciences1677-32252019-12-011810.20396/bjos.v18i0.8657417Can the chlorhexidine gluconate solution potentiate the staining of polycrystalline ceramic brackets?Catharina e Silva Monteiro Barros0Jose Guilherme Neves1Ana Paula Terossi de Godoi2Ana Rosa Costa3Mario Vedovello Filho4Heloisa Cristina Valdrighi5Araras School of DentistryPiracicaba Dental SchoolAraras Dental SchoolPiracicaba Dental SchoolAraras Dental SchoolAraras Dental SchoolAim: The present study aimed to assess, in vitro, the effect of chlorhexidine on the potentiation of polycrystalline ceramic bracket staining. Methods: Seventy-two polycrystalline ceramic brackets of upper right central incisors were divided into six groups (n=12) according to immersion solution. The groups were G1 - distilled water (control); G2 - chlorhexidine; G3 - coffee; G4 - red wine; G5 - chlorhexidine associated with coffee; and G6 - chlorhexidine associated with red wine. The samples were analyzed by means of a spectrophotometer according to the CIEL*a*b* system, and color change (ΔE*) was calculated. The readings were performed at the following times: T0 - After package removal and T1 - After staining. The data were analyzed by Kruskal Wallis and t tests (p<0.05) at 5% significance level. Results: The total color variation (ΔE*) was greater in the group that received chlorhexidine associated with red wine (p<0.05) and lower in the groups that received distilled water. All other groups showed greater value variations when compared to G1 and G2. Group G6 showed a greater color change due to the potentiation of chlorhexidine with the dye substance. Conclusion: It is concluded that chlorhexidine potentiates the staining caused by red wine in polycrystalline ceramic brackets.https://periodicos.sbu.unicamp.br/ojs/index.php/bjos/article/view/8657417Orthodontic bracketsMouthwashsCeramics.
spellingShingle Catharina e Silva Monteiro Barros
Jose Guilherme Neves
Ana Paula Terossi de Godoi
Ana Rosa Costa
Mario Vedovello Filho
Heloisa Cristina Valdrighi
Can the chlorhexidine gluconate solution potentiate the staining of polycrystalline ceramic brackets?
Brazilian Journal of Oral Sciences
Orthodontic brackets
Mouthwashs
Ceramics.
title Can the chlorhexidine gluconate solution potentiate the staining of polycrystalline ceramic brackets?
title_full Can the chlorhexidine gluconate solution potentiate the staining of polycrystalline ceramic brackets?
title_fullStr Can the chlorhexidine gluconate solution potentiate the staining of polycrystalline ceramic brackets?
title_full_unstemmed Can the chlorhexidine gluconate solution potentiate the staining of polycrystalline ceramic brackets?
title_short Can the chlorhexidine gluconate solution potentiate the staining of polycrystalline ceramic brackets?
title_sort can the chlorhexidine gluconate solution potentiate the staining of polycrystalline ceramic brackets
topic Orthodontic brackets
Mouthwashs
Ceramics.
url https://periodicos.sbu.unicamp.br/ojs/index.php/bjos/article/view/8657417
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