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Effect of Bioactive and Antimicrobial Nanoparticles on Properties and Applicability of Dental Adhesives

The aim of the study was to examine the applicability of bioactive and antibacterial nanoparticles to an experimental adhesive. The adhesive (60 wt% BisGMA, 15 wt% TEGDMA, 25 wt% HEMA) was mixed with combinations of 5 wt% methacryl-functionalized polyhedral oligomeric silsesquioxane (MA-POSS) and on...

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Autores principales: Kreutz, Marietta, Kreutz, Christian, Kanzow, Philipp, Tauböck, Tobias T., Burrer, Phoebe, Noll, Christine, Bader, Oliver, Rohland, Bianca, Wiegand, Annette, Rizk, Marta
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9694625/
https://www.ncbi.nlm.nih.gov/pubmed/36364638
http://dx.doi.org/10.3390/nano12213862
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author Kreutz, Marietta
Kreutz, Christian
Kanzow, Philipp
Tauböck, Tobias T.
Burrer, Phoebe
Noll, Christine
Bader, Oliver
Rohland, Bianca
Wiegand, Annette
Rizk, Marta
author_facet Kreutz, Marietta
Kreutz, Christian
Kanzow, Philipp
Tauböck, Tobias T.
Burrer, Phoebe
Noll, Christine
Bader, Oliver
Rohland, Bianca
Wiegand, Annette
Rizk, Marta
author_sort Kreutz, Marietta
collection PubMed
description The aim of the study was to examine the applicability of bioactive and antibacterial nanoparticles to an experimental adhesive. The adhesive (60 wt% BisGMA, 15 wt% TEGDMA, 25 wt% HEMA) was mixed with combinations of 5 wt% methacryl-functionalized polyhedral oligomeric silsesquioxane (MA-POSS) and one kind of bioactive/antibacterial nanoparticles: 1 wt% core-shell silica-silver nanoparticle (SiO(2)@Ag), 1 wt% bioactive glass with bismuth (BAG-Bi) or 1 wt% calcium phosphate (CAP). Pure adhesive served as control. The physicochemical (degree of conversion (DC), linear shrinkage (LS), shear and complex viscosity, water sorption (WS), sol fraction (SF)), biological (antimicrobial effect) and bioactive (mineral precipitation) properties were investigated. DC and LS remained unchanged. The combination of BAG-Bi/MA-POSS resulted in a significantly increased WS and SF compared to control. In addition, the combination of CAP/MA-POSS slightly increased the shear viscosity of the adhesive. The addition of the nanoparticles did not influence the antimicrobial effects compared to the pure adhesive. Improved mineral inducing capacity could be detected in all nanoparticle combinations. The combination of bioactive and/or antibacterial nanoparticles showed improved mineral inducing capacity, but no antibacterial properties. The material properties were not or only slightly affected.
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spelling pubmed-96946252022-11-26 Effect of Bioactive and Antimicrobial Nanoparticles on Properties and Applicability of Dental Adhesives Kreutz, Marietta Kreutz, Christian Kanzow, Philipp Tauböck, Tobias T. Burrer, Phoebe Noll, Christine Bader, Oliver Rohland, Bianca Wiegand, Annette Rizk, Marta Nanomaterials (Basel) Article The aim of the study was to examine the applicability of bioactive and antibacterial nanoparticles to an experimental adhesive. The adhesive (60 wt% BisGMA, 15 wt% TEGDMA, 25 wt% HEMA) was mixed with combinations of 5 wt% methacryl-functionalized polyhedral oligomeric silsesquioxane (MA-POSS) and one kind of bioactive/antibacterial nanoparticles: 1 wt% core-shell silica-silver nanoparticle (SiO(2)@Ag), 1 wt% bioactive glass with bismuth (BAG-Bi) or 1 wt% calcium phosphate (CAP). Pure adhesive served as control. The physicochemical (degree of conversion (DC), linear shrinkage (LS), shear and complex viscosity, water sorption (WS), sol fraction (SF)), biological (antimicrobial effect) and bioactive (mineral precipitation) properties were investigated. DC and LS remained unchanged. The combination of BAG-Bi/MA-POSS resulted in a significantly increased WS and SF compared to control. In addition, the combination of CAP/MA-POSS slightly increased the shear viscosity of the adhesive. The addition of the nanoparticles did not influence the antimicrobial effects compared to the pure adhesive. Improved mineral inducing capacity could be detected in all nanoparticle combinations. The combination of bioactive and/or antibacterial nanoparticles showed improved mineral inducing capacity, but no antibacterial properties. The material properties were not or only slightly affected. MDPI 2022-11-01 /pmc/articles/PMC9694625/ /pubmed/36364638 http://dx.doi.org/10.3390/nano12213862 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
Kreutz, Marietta
Kreutz, Christian
Kanzow, Philipp
Tauböck, Tobias T.
Burrer, Phoebe
Noll, Christine
Bader, Oliver
Rohland, Bianca
Wiegand, Annette
Rizk, Marta
Effect of Bioactive and Antimicrobial Nanoparticles on Properties and Applicability of Dental Adhesives
title Effect of Bioactive and Antimicrobial Nanoparticles on Properties and Applicability of Dental Adhesives
title_full Effect of Bioactive and Antimicrobial Nanoparticles on Properties and Applicability of Dental Adhesives
title_fullStr Effect of Bioactive and Antimicrobial Nanoparticles on Properties and Applicability of Dental Adhesives
title_full_unstemmed Effect of Bioactive and Antimicrobial Nanoparticles on Properties and Applicability of Dental Adhesives
title_short Effect of Bioactive and Antimicrobial Nanoparticles on Properties and Applicability of Dental Adhesives
title_sort effect of bioactive and antimicrobial nanoparticles on properties and applicability of dental adhesives
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9694625/
https://www.ncbi.nlm.nih.gov/pubmed/36364638
http://dx.doi.org/10.3390/nano12213862
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