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Potential of Fluoride-Containing Zinc Oxide and Copper Oxide Nanocomposites on Dentin Bonding Ability

Despite recent advances in bonding restorations, which are the basis of restorative dentistry, secondary caries are still able to form. Previously, a novel fluoride-containing zinc and copper (ZCF) nanocomposite was introduced to prevent the formation of caries due to its antibacterial activity. In...

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Autores principales: Altankhishig, Bayarchimeg, Matsuda, Yasuhiro, Nagano-Takebe, Futami, Okuyama, Katsushi, Yamamoto, Hiroko, Sakurai, Masahiko, Naito, Katsuaki, Hayashi, Mikako, Sano, Hidehiko, Sidhu, Sharanbir K., Saito, Takashi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9025052/
https://www.ncbi.nlm.nih.gov/pubmed/35457999
http://dx.doi.org/10.3390/nano12081291
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author Altankhishig, Bayarchimeg
Matsuda, Yasuhiro
Nagano-Takebe, Futami
Okuyama, Katsushi
Yamamoto, Hiroko
Sakurai, Masahiko
Naito, Katsuaki
Hayashi, Mikako
Sano, Hidehiko
Sidhu, Sharanbir K.
Saito, Takashi
author_facet Altankhishig, Bayarchimeg
Matsuda, Yasuhiro
Nagano-Takebe, Futami
Okuyama, Katsushi
Yamamoto, Hiroko
Sakurai, Masahiko
Naito, Katsuaki
Hayashi, Mikako
Sano, Hidehiko
Sidhu, Sharanbir K.
Saito, Takashi
author_sort Altankhishig, Bayarchimeg
collection PubMed
description Despite recent advances in bonding restorations, which are the basis of restorative dentistry, secondary caries are still able to form. Previously, a novel fluoride-containing zinc and copper (ZCF) nanocomposite was introduced to prevent the formation of caries due to its antibacterial activity. In this study, we studied the impact of ZCF nanoparticles on the adhesive strength of bonding restorations through micro-tensile bond strength (µTBS) testing. The impact of antibacterial and matrix metalloproteinase (MMP) inhibitors on the nanoparticles was also examined. The nanocomposites were prepared using a simple one-step homogeneous co-precipitation method at a low temperature. A self-etch adhesive was applied to 10 extracted caries-free human molars with (test group) and without (control group) the ZCF nanoparticles. This was followed by composite resin build-up and µTBS testing, MMP activity assays, and evaluation of the antibacterial effects. The results showed no significant differences in the µTBS between the ZCF and the control groups. However, the ZCF exhibited a significant inhibitory effect against MMP-2, MMP-8, and MMP-9, in addition to an antibacterial effect on Streptococcus mutans. Therefore, the present study demonstrated that the addition of ZCF nanoparticles to adhesive systems can result in MMP inhibition and antibacterial action while maintaining the mechanical properties of the bonding restorations.
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spelling pubmed-90250522022-04-23 Potential of Fluoride-Containing Zinc Oxide and Copper Oxide Nanocomposites on Dentin Bonding Ability Altankhishig, Bayarchimeg Matsuda, Yasuhiro Nagano-Takebe, Futami Okuyama, Katsushi Yamamoto, Hiroko Sakurai, Masahiko Naito, Katsuaki Hayashi, Mikako Sano, Hidehiko Sidhu, Sharanbir K. Saito, Takashi Nanomaterials (Basel) Article Despite recent advances in bonding restorations, which are the basis of restorative dentistry, secondary caries are still able to form. Previously, a novel fluoride-containing zinc and copper (ZCF) nanocomposite was introduced to prevent the formation of caries due to its antibacterial activity. In this study, we studied the impact of ZCF nanoparticles on the adhesive strength of bonding restorations through micro-tensile bond strength (µTBS) testing. The impact of antibacterial and matrix metalloproteinase (MMP) inhibitors on the nanoparticles was also examined. The nanocomposites were prepared using a simple one-step homogeneous co-precipitation method at a low temperature. A self-etch adhesive was applied to 10 extracted caries-free human molars with (test group) and without (control group) the ZCF nanoparticles. This was followed by composite resin build-up and µTBS testing, MMP activity assays, and evaluation of the antibacterial effects. The results showed no significant differences in the µTBS between the ZCF and the control groups. However, the ZCF exhibited a significant inhibitory effect against MMP-2, MMP-8, and MMP-9, in addition to an antibacterial effect on Streptococcus mutans. Therefore, the present study demonstrated that the addition of ZCF nanoparticles to adhesive systems can result in MMP inhibition and antibacterial action while maintaining the mechanical properties of the bonding restorations. MDPI 2022-04-11 /pmc/articles/PMC9025052/ /pubmed/35457999 http://dx.doi.org/10.3390/nano12081291 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Altankhishig, Bayarchimeg
Matsuda, Yasuhiro
Nagano-Takebe, Futami
Okuyama, Katsushi
Yamamoto, Hiroko
Sakurai, Masahiko
Naito, Katsuaki
Hayashi, Mikako
Sano, Hidehiko
Sidhu, Sharanbir K.
Saito, Takashi
Potential of Fluoride-Containing Zinc Oxide and Copper Oxide Nanocomposites on Dentin Bonding Ability
title Potential of Fluoride-Containing Zinc Oxide and Copper Oxide Nanocomposites on Dentin Bonding Ability
title_full Potential of Fluoride-Containing Zinc Oxide and Copper Oxide Nanocomposites on Dentin Bonding Ability
title_fullStr Potential of Fluoride-Containing Zinc Oxide and Copper Oxide Nanocomposites on Dentin Bonding Ability
title_full_unstemmed Potential of Fluoride-Containing Zinc Oxide and Copper Oxide Nanocomposites on Dentin Bonding Ability
title_short Potential of Fluoride-Containing Zinc Oxide and Copper Oxide Nanocomposites on Dentin Bonding Ability
title_sort potential of fluoride-containing zinc oxide and copper oxide nanocomposites on dentin bonding ability
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9025052/
https://www.ncbi.nlm.nih.gov/pubmed/35457999
http://dx.doi.org/10.3390/nano12081291
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