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Effect of whitening toothpastes containing activated charcoal, abrasive particles, or hydrogen peroxide on the color of aged microhybrid composite
BACKGROUND: This study aimed to assess the effect of different whitening toothpastes containing activated charcoal, abrasive particles or hydrogen peroxide on the color of aged microhybrid composite. MATERIALS AND METHODS: In this in vitro, experimental study, 45 composite discs (2 mm × 7 mm) were f...
Autores principales: | , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Wolters Kluwer - Medknow
2021
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8804543/ https://www.ncbi.nlm.nih.gov/pubmed/35265289 |
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author | Rostamzadeh, Pouya Omrani, Ladan Ranjbar Abbasi, Mahdi Yekaninejad, Mir Saeed Ahmadi, Elham |
author_facet | Rostamzadeh, Pouya Omrani, Ladan Ranjbar Abbasi, Mahdi Yekaninejad, Mir Saeed Ahmadi, Elham |
author_sort | Rostamzadeh, Pouya |
collection | PubMed |
description | BACKGROUND: This study aimed to assess the effect of different whitening toothpastes containing activated charcoal, abrasive particles or hydrogen peroxide on the color of aged microhybrid composite. MATERIALS AND METHODS: In this in vitro, experimental study, 45 composite discs (2 mm × 7 mm) were fabricated of a microhybrid composite. They underwent accelerated artificial aging for 300 h, corresponding to 1 year of clinical service. The composites were then randomly divided into five groups (n = 9). One group served as the control and underwent tooth brushing with distilled water. The remaining four groups underwent tooth brushing with Colgate Total whitening (Gt), Colgate Optic White (Go), Perfect White Black (Gp) and Bencer (Gb) toothpastes in a brushing machine The International Commission on Illumination values (L(m), a(m), b(m)) were determined using a spectrophotometer. Color change (ΔE) calculated based on this formula: ΔE(m)= ([ΔL(m)] (2) + [Δa(m)] (2) + [Δb(m)] (2))(½). The differences were defined by ΔE(1) (after aging-baseline),ΔE(2) (after brushing-after aging) and ΔE(3) (after brushing-base line). ΔE(1) were evaluated to ensure that color mismatch had occurred (ΔE1 > 5.5). Difference in (L, a, b) parameters after aging and after tooth brushing in each group, color parameter changes (ΔL(2,) Δa(2), Δb(2,) ΔL(3,) Δa(3), Δb(3)) and ΔE(2) and ΔE(3) were analyzed and compared using Wilcoxon test and independent sample median test at P = 0.05 level of significance. RESULTS: The color parameter changes, ΔE(3) and Δ E(2) were not significantly different among the five groups (P > 0.05). In Gp and Gb charcoal a*, b*, and L* after tooth brushing (P < 0.05). In Colgate Optic group, the a* parameter significantly decreased while the L* parameter significantly increased (P < 0.05). CONCLUSION: The results showed that there is no significant difference in the color change of Spectrum composite following tooth brushing with different whitening toothpastes for two weeks. It should be noted that Δ E(3) reached to <3.3 only in charcoal whitening toothpastes. |
format | Online Article Text |
id | pubmed-8804543 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2021 |
publisher | Wolters Kluwer - Medknow |
record_format | MEDLINE/PubMed |
spelling | pubmed-88045432022-03-08 Effect of whitening toothpastes containing activated charcoal, abrasive particles, or hydrogen peroxide on the color of aged microhybrid composite Rostamzadeh, Pouya Omrani, Ladan Ranjbar Abbasi, Mahdi Yekaninejad, Mir Saeed Ahmadi, Elham Dent Res J (Isfahan) Original Article BACKGROUND: This study aimed to assess the effect of different whitening toothpastes containing activated charcoal, abrasive particles or hydrogen peroxide on the color of aged microhybrid composite. MATERIALS AND METHODS: In this in vitro, experimental study, 45 composite discs (2 mm × 7 mm) were fabricated of a microhybrid composite. They underwent accelerated artificial aging for 300 h, corresponding to 1 year of clinical service. The composites were then randomly divided into five groups (n = 9). One group served as the control and underwent tooth brushing with distilled water. The remaining four groups underwent tooth brushing with Colgate Total whitening (Gt), Colgate Optic White (Go), Perfect White Black (Gp) and Bencer (Gb) toothpastes in a brushing machine The International Commission on Illumination values (L(m), a(m), b(m)) were determined using a spectrophotometer. Color change (ΔE) calculated based on this formula: ΔE(m)= ([ΔL(m)] (2) + [Δa(m)] (2) + [Δb(m)] (2))(½). The differences were defined by ΔE(1) (after aging-baseline),ΔE(2) (after brushing-after aging) and ΔE(3) (after brushing-base line). ΔE(1) were evaluated to ensure that color mismatch had occurred (ΔE1 > 5.5). Difference in (L, a, b) parameters after aging and after tooth brushing in each group, color parameter changes (ΔL(2,) Δa(2), Δb(2,) ΔL(3,) Δa(3), Δb(3)) and ΔE(2) and ΔE(3) were analyzed and compared using Wilcoxon test and independent sample median test at P = 0.05 level of significance. RESULTS: The color parameter changes, ΔE(3) and Δ E(2) were not significantly different among the five groups (P > 0.05). In Gp and Gb charcoal a*, b*, and L* after tooth brushing (P < 0.05). In Colgate Optic group, the a* parameter significantly decreased while the L* parameter significantly increased (P < 0.05). CONCLUSION: The results showed that there is no significant difference in the color change of Spectrum composite following tooth brushing with different whitening toothpastes for two weeks. It should be noted that Δ E(3) reached to <3.3 only in charcoal whitening toothpastes. Wolters Kluwer - Medknow 2021-12-10 /pmc/articles/PMC8804543/ /pubmed/35265289 Text en Copyright: © 2021 Dental Research Journal https://creativecommons.org/licenses/by-nc-sa/4.0/This is an open access journal, and articles are distributed under the terms of the Creative Commons Attribution-NonCommercial-ShareAlike 4.0 License, which allows others to remix, tweak, and build upon the work non-commercially, as long as appropriate credit is given and the new creations are licensed under the identical terms. |
spellingShingle | Original Article Rostamzadeh, Pouya Omrani, Ladan Ranjbar Abbasi, Mahdi Yekaninejad, Mir Saeed Ahmadi, Elham Effect of whitening toothpastes containing activated charcoal, abrasive particles, or hydrogen peroxide on the color of aged microhybrid composite |
title | Effect of whitening toothpastes containing activated charcoal, abrasive particles, or hydrogen peroxide on the color of aged microhybrid composite |
title_full | Effect of whitening toothpastes containing activated charcoal, abrasive particles, or hydrogen peroxide on the color of aged microhybrid composite |
title_fullStr | Effect of whitening toothpastes containing activated charcoal, abrasive particles, or hydrogen peroxide on the color of aged microhybrid composite |
title_full_unstemmed | Effect of whitening toothpastes containing activated charcoal, abrasive particles, or hydrogen peroxide on the color of aged microhybrid composite |
title_short | Effect of whitening toothpastes containing activated charcoal, abrasive particles, or hydrogen peroxide on the color of aged microhybrid composite |
title_sort | effect of whitening toothpastes containing activated charcoal, abrasive particles, or hydrogen peroxide on the color of aged microhybrid composite |
topic | Original Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8804543/ https://www.ncbi.nlm.nih.gov/pubmed/35265289 |
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