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The Effect of Whitening Toothpastes on the Color Stability of a Smart Monochromatic Composite Resin

Objective: The aim of this study was to evaluate the color stability of smart monochromatic composite resin after coloring with coffee solution, thermal aging and brushing with four different kinds of toothpaste. Materials and methods: According to the manufacturer's instructions, 40 smart mono...

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Autores principales: Tavas, Begum, Celiksoz, Ozge, Tepe, Hatice, Ozaslan, Sanem, Yaman, Batu Can
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cureus 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10614463/
https://www.ncbi.nlm.nih.gov/pubmed/37908912
http://dx.doi.org/10.7759/cureus.46225
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author Tavas, Begum
Celiksoz, Ozge
Tepe, Hatice
Ozaslan, Sanem
Yaman, Batu Can
author_facet Tavas, Begum
Celiksoz, Ozge
Tepe, Hatice
Ozaslan, Sanem
Yaman, Batu Can
author_sort Tavas, Begum
collection PubMed
description Objective: The aim of this study was to evaluate the color stability of smart monochromatic composite resin after coloring with coffee solution, thermal aging and brushing with four different kinds of toothpaste. Materials and methods: According to the manufacturer's instructions, 40 smart monochromatic composite resin (Omnichroma, Tokuyama Dental, Japan) specimens were prepared with a thickness of 2 mm and a diameter of 10 mm. The samples were divided into four groups. The first group (SFM) was brushed with Sensodyne Fresh Mint (Sensodyne GSK, UK), the second group (CW) with Colgate 2 in 1 Whitening (Colgate Palmolive, USA), the third group (OW) with Opalescence Whitening (Ultradent Products, Inc., USA), the fourth group (COW) with Colgate Optic White With Charcoal (Colgate Palmolive, USA). At time point t(0), no brushing and thermal cycles were performed. For time point t(1), simulations corresponding to 10 days of staining, thermal aging and brushing were performed. For time point t(2), simulations corresponding to one year of staining, thermal aging and brushing were performed. The color of all specimens was measured at t(0), t(1) and t(2) with a spectrophotometer. To examine the color change, ΔE(00 )values were calculated with the CIEDE 2000 color system. Shapiro Wilk, Kolmogorov Smirnov, Wilcoxon Signed Rank, Kruskal Wallis, and Mann-Whitney U tests were used to analyze the data. Results: According to the results of the intergroup comparison, there is no statistically significant difference between the groups in ΔE(00)(t(0)-t(1)) values in terms of t(0)-t(1 )time period measurement (p>0.05). There is a statistically significant difference between the groups in ΔE(00)(t(1)-t(2))values in terms of t(1)-t(2) time period measurement (p<0.05). The COW group had the lowest ΔE(00)(t(1)-t(2)) value and the OW group had the highest ΔE(00)(t(1)-t(2)) value. There is a statistically significant difference between the groups in ΔE(00) (t(0)-t(2)) values in terms of t(0)-t(2) time period measurement (p<0.05). The COW group had the lowest ΔE(00)(t(0)-t(2)) value and the OW group had the highest ΔE(00)(t(0)-t(2)) value. Conclusion: The whitening efficacy of different kinds of toothpaste whitening mechanisms may differ from each other. Toothpastes also show whitening on composite resins. The lowest discoloration was observed in the group brushed with toothpaste containing activated charcoal and blue covarine. The efficacy of whitening toothpastes should be supported by in vivo studies.
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spelling pubmed-106144632023-10-31 The Effect of Whitening Toothpastes on the Color Stability of a Smart Monochromatic Composite Resin Tavas, Begum Celiksoz, Ozge Tepe, Hatice Ozaslan, Sanem Yaman, Batu Can Cureus Dentistry Objective: The aim of this study was to evaluate the color stability of smart monochromatic composite resin after coloring with coffee solution, thermal aging and brushing with four different kinds of toothpaste. Materials and methods: According to the manufacturer's instructions, 40 smart monochromatic composite resin (Omnichroma, Tokuyama Dental, Japan) specimens were prepared with a thickness of 2 mm and a diameter of 10 mm. The samples were divided into four groups. The first group (SFM) was brushed with Sensodyne Fresh Mint (Sensodyne GSK, UK), the second group (CW) with Colgate 2 in 1 Whitening (Colgate Palmolive, USA), the third group (OW) with Opalescence Whitening (Ultradent Products, Inc., USA), the fourth group (COW) with Colgate Optic White With Charcoal (Colgate Palmolive, USA). At time point t(0), no brushing and thermal cycles were performed. For time point t(1), simulations corresponding to 10 days of staining, thermal aging and brushing were performed. For time point t(2), simulations corresponding to one year of staining, thermal aging and brushing were performed. The color of all specimens was measured at t(0), t(1) and t(2) with a spectrophotometer. To examine the color change, ΔE(00 )values were calculated with the CIEDE 2000 color system. Shapiro Wilk, Kolmogorov Smirnov, Wilcoxon Signed Rank, Kruskal Wallis, and Mann-Whitney U tests were used to analyze the data. Results: According to the results of the intergroup comparison, there is no statistically significant difference between the groups in ΔE(00)(t(0)-t(1)) values in terms of t(0)-t(1 )time period measurement (p>0.05). There is a statistically significant difference between the groups in ΔE(00)(t(1)-t(2))values in terms of t(1)-t(2) time period measurement (p<0.05). The COW group had the lowest ΔE(00)(t(1)-t(2)) value and the OW group had the highest ΔE(00)(t(1)-t(2)) value. There is a statistically significant difference between the groups in ΔE(00) (t(0)-t(2)) values in terms of t(0)-t(2) time period measurement (p<0.05). The COW group had the lowest ΔE(00)(t(0)-t(2)) value and the OW group had the highest ΔE(00)(t(0)-t(2)) value. Conclusion: The whitening efficacy of different kinds of toothpaste whitening mechanisms may differ from each other. Toothpastes also show whitening on composite resins. The lowest discoloration was observed in the group brushed with toothpaste containing activated charcoal and blue covarine. The efficacy of whitening toothpastes should be supported by in vivo studies. Cureus 2023-09-29 /pmc/articles/PMC10614463/ /pubmed/37908912 http://dx.doi.org/10.7759/cureus.46225 Text en Copyright © 2023, Tavas et al. https://creativecommons.org/licenses/by/3.0/This is an open access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Dentistry
Tavas, Begum
Celiksoz, Ozge
Tepe, Hatice
Ozaslan, Sanem
Yaman, Batu Can
The Effect of Whitening Toothpastes on the Color Stability of a Smart Monochromatic Composite Resin
title The Effect of Whitening Toothpastes on the Color Stability of a Smart Monochromatic Composite Resin
title_full The Effect of Whitening Toothpastes on the Color Stability of a Smart Monochromatic Composite Resin
title_fullStr The Effect of Whitening Toothpastes on the Color Stability of a Smart Monochromatic Composite Resin
title_full_unstemmed The Effect of Whitening Toothpastes on the Color Stability of a Smart Monochromatic Composite Resin
title_short The Effect of Whitening Toothpastes on the Color Stability of a Smart Monochromatic Composite Resin
title_sort effect of whitening toothpastes on the color stability of a smart monochromatic composite resin
topic Dentistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10614463/
https://www.ncbi.nlm.nih.gov/pubmed/37908912
http://dx.doi.org/10.7759/cureus.46225
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