Cargando…

Development of Autopolymerizing Resin Material with Antimicrobial Properties Using Montmorillonite and Nanoporous Silica

Although autopolymerizing resin offers numerous applications in orthodontic treatment, plaque tends to accumulate between the appliance and the mucosa, which increases the number of microorganisms present. In this study, we added cetylpyridinium chloride (CPC) loaded montmorillonite (Mont) and nanop...

Descripción completa

Detalles Bibliográficos
Autores principales: Otsubo, Shuhei, Nakanishi, Ko, Fukukawa, Kakufu, Endo, Ryoshun, Yoshida, Seiichiro, Matsumoto, Aiko, Yoshihara, Kumiko, Akasaka, Tsukasa, Hasebe, Akira, Yoshida, Yasuhiro, Sato, Yoshiaki
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9962014/
https://www.ncbi.nlm.nih.gov/pubmed/36839866
http://dx.doi.org/10.3390/pharmaceutics15020544
_version_ 1784895898714636288
author Otsubo, Shuhei
Nakanishi, Ko
Fukukawa, Kakufu
Endo, Ryoshun
Yoshida, Seiichiro
Matsumoto, Aiko
Yoshihara, Kumiko
Akasaka, Tsukasa
Hasebe, Akira
Yoshida, Yasuhiro
Sato, Yoshiaki
author_facet Otsubo, Shuhei
Nakanishi, Ko
Fukukawa, Kakufu
Endo, Ryoshun
Yoshida, Seiichiro
Matsumoto, Aiko
Yoshihara, Kumiko
Akasaka, Tsukasa
Hasebe, Akira
Yoshida, Yasuhiro
Sato, Yoshiaki
author_sort Otsubo, Shuhei
collection PubMed
description Although autopolymerizing resin offers numerous applications in orthodontic treatment, plaque tends to accumulate between the appliance and the mucosa, which increases the number of microorganisms present. In this study, we added cetylpyridinium chloride (CPC) loaded montmorillonite (Mont) and nanoporous silica (NPS) to autopolymerizing resin (resin-Mont, resin-NPS) and evaluated their drug release capacity, antimicrobial capacity, drug reuptake capacity, mechanical strength, and color tone for the devolvement of autopolymerizing resin with antimicrobial properties. As observed, resin-Mont and resin-NPS were capable of the sustained release of CPC for 14 d, and a higher amount of CPC was released compared to that of resin-CPC. Additionally, resin-Mont and resin-NPS could reuptake CPC. Moreover, the antimicrobial studies demonstrated that resin-Mont and resin-NPS could release effective amounts of CPC against Streptococcus mutans for 14 d and 7 d after reuptake, respectively. Compared to resin-CPC, resin-Mont exhibited a higher sustained release of CPC in all periods, both in the initial sustained release and after reuptake. However, the mechanical strength decreased with the addition of Mont and NPS, with a 36% reduction observed in flexural strength for resin-Mont and 25% for resin-NPS. The application of these results to the resin portion of the orthodontic appliances can prevent bacterial growth on the surface, as well as on the interior, of the appliances and mitigate the inflammation of the mucosa.
format Online
Article
Text
id pubmed-9962014
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-99620142023-02-26 Development of Autopolymerizing Resin Material with Antimicrobial Properties Using Montmorillonite and Nanoporous Silica Otsubo, Shuhei Nakanishi, Ko Fukukawa, Kakufu Endo, Ryoshun Yoshida, Seiichiro Matsumoto, Aiko Yoshihara, Kumiko Akasaka, Tsukasa Hasebe, Akira Yoshida, Yasuhiro Sato, Yoshiaki Pharmaceutics Article Although autopolymerizing resin offers numerous applications in orthodontic treatment, plaque tends to accumulate between the appliance and the mucosa, which increases the number of microorganisms present. In this study, we added cetylpyridinium chloride (CPC) loaded montmorillonite (Mont) and nanoporous silica (NPS) to autopolymerizing resin (resin-Mont, resin-NPS) and evaluated their drug release capacity, antimicrobial capacity, drug reuptake capacity, mechanical strength, and color tone for the devolvement of autopolymerizing resin with antimicrobial properties. As observed, resin-Mont and resin-NPS were capable of the sustained release of CPC for 14 d, and a higher amount of CPC was released compared to that of resin-CPC. Additionally, resin-Mont and resin-NPS could reuptake CPC. Moreover, the antimicrobial studies demonstrated that resin-Mont and resin-NPS could release effective amounts of CPC against Streptococcus mutans for 14 d and 7 d after reuptake, respectively. Compared to resin-CPC, resin-Mont exhibited a higher sustained release of CPC in all periods, both in the initial sustained release and after reuptake. However, the mechanical strength decreased with the addition of Mont and NPS, with a 36% reduction observed in flexural strength for resin-Mont and 25% for resin-NPS. The application of these results to the resin portion of the orthodontic appliances can prevent bacterial growth on the surface, as well as on the interior, of the appliances and mitigate the inflammation of the mucosa. MDPI 2023-02-06 /pmc/articles/PMC9962014/ /pubmed/36839866 http://dx.doi.org/10.3390/pharmaceutics15020544 Text en © 2023 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
Otsubo, Shuhei
Nakanishi, Ko
Fukukawa, Kakufu
Endo, Ryoshun
Yoshida, Seiichiro
Matsumoto, Aiko
Yoshihara, Kumiko
Akasaka, Tsukasa
Hasebe, Akira
Yoshida, Yasuhiro
Sato, Yoshiaki
Development of Autopolymerizing Resin Material with Antimicrobial Properties Using Montmorillonite and Nanoporous Silica
title Development of Autopolymerizing Resin Material with Antimicrobial Properties Using Montmorillonite and Nanoporous Silica
title_full Development of Autopolymerizing Resin Material with Antimicrobial Properties Using Montmorillonite and Nanoporous Silica
title_fullStr Development of Autopolymerizing Resin Material with Antimicrobial Properties Using Montmorillonite and Nanoporous Silica
title_full_unstemmed Development of Autopolymerizing Resin Material with Antimicrobial Properties Using Montmorillonite and Nanoporous Silica
title_short Development of Autopolymerizing Resin Material with Antimicrobial Properties Using Montmorillonite and Nanoporous Silica
title_sort development of autopolymerizing resin material with antimicrobial properties using montmorillonite and nanoporous silica
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9962014/
https://www.ncbi.nlm.nih.gov/pubmed/36839866
http://dx.doi.org/10.3390/pharmaceutics15020544
work_keys_str_mv AT otsuboshuhei developmentofautopolymerizingresinmaterialwithantimicrobialpropertiesusingmontmorilloniteandnanoporoussilica
AT nakanishiko developmentofautopolymerizingresinmaterialwithantimicrobialpropertiesusingmontmorilloniteandnanoporoussilica
AT fukukawakakufu developmentofautopolymerizingresinmaterialwithantimicrobialpropertiesusingmontmorilloniteandnanoporoussilica
AT endoryoshun developmentofautopolymerizingresinmaterialwithantimicrobialpropertiesusingmontmorilloniteandnanoporoussilica
AT yoshidaseiichiro developmentofautopolymerizingresinmaterialwithantimicrobialpropertiesusingmontmorilloniteandnanoporoussilica
AT matsumotoaiko developmentofautopolymerizingresinmaterialwithantimicrobialpropertiesusingmontmorilloniteandnanoporoussilica
AT yoshiharakumiko developmentofautopolymerizingresinmaterialwithantimicrobialpropertiesusingmontmorilloniteandnanoporoussilica
AT akasakatsukasa developmentofautopolymerizingresinmaterialwithantimicrobialpropertiesusingmontmorilloniteandnanoporoussilica
AT hasebeakira developmentofautopolymerizingresinmaterialwithantimicrobialpropertiesusingmontmorilloniteandnanoporoussilica
AT yoshidayasuhiro developmentofautopolymerizingresinmaterialwithantimicrobialpropertiesusingmontmorilloniteandnanoporoussilica
AT satoyoshiaki developmentofautopolymerizingresinmaterialwithantimicrobialpropertiesusingmontmorilloniteandnanoporoussilica