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New Pre-reacted Glass Containing Dental Composites (giomers) with Improved Fluoride Release and Biocompatibility

The aim of the present work was to prepare a series of novel restorative giomers and investigate the morphology, the physico-chemical properties (residual monomer, fluoride release), and the cytotoxicity of the new materials. The experimental giomers were prepared as light-cured pastes by blending d...

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Autores principales: Colceriu Burtea, Loredana, Prejmerean, Cristina, Prodan, Doina, Baldea, Ioana, Vlassa, Mihaela, Filip, Miuta, Moldovan, Marioara, (Moldovan), Madalina-Anca Lazar, Antoniac, Aurora, Prejmerean, Vasile, Ambrosie, Ioana
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6926637/
https://www.ncbi.nlm.nih.gov/pubmed/31816959
http://dx.doi.org/10.3390/ma12234021
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author Colceriu Burtea, Loredana
Prejmerean, Cristina
Prodan, Doina
Baldea, Ioana
Vlassa, Mihaela
Filip, Miuta
Moldovan, Marioara
(Moldovan), Madalina-Anca Lazar
Antoniac, Aurora
Prejmerean, Vasile
Ambrosie, Ioana
author_facet Colceriu Burtea, Loredana
Prejmerean, Cristina
Prodan, Doina
Baldea, Ioana
Vlassa, Mihaela
Filip, Miuta
Moldovan, Marioara
(Moldovan), Madalina-Anca Lazar
Antoniac, Aurora
Prejmerean, Vasile
Ambrosie, Ioana
author_sort Colceriu Burtea, Loredana
collection PubMed
description The aim of the present work was to prepare a series of novel restorative giomers and investigate the morphology, the physico-chemical properties (residual monomer, fluoride release), and the cytotoxicity of the new materials. The experimental giomers were prepared as light-cured pastes by blending different resin matrices comprising aromatic/aliphatic/urethane (di) methacrylates, with hybrid fillers containing pre-reacted glasses (PRGs), a radiopaque glass, and nano fluorhydroxyapatite. Polyalkenoic acids based on acrylic acid/itaconic acid/N-acryloyl -L-leucine modified or not with methacrylic groups, together with a superficially active glass, were used to prepare the PRGs. The fluoride ion release of the experimental giomers was investigated within a period of 60 days of storage in bidistilled water while using a fluoride ion selective electrode. Beautifil II commercial product was used as a reference. Cell cytotoxicity tests were done in vitro, in accordance with ISO 10993-122012 proceedings. Human dermal fibroblasts and umbilical endothelial vein cultures were used. The values that were obtained for cumulative fluoride release for all experimental giomers were higher than for the Beautifil II product, being more than twice the ones that were obtained for the commercial product after 60 days of storage in bidistilled water. The experimental biomaterials showed similar and/or better results when compared to the commercial one; this effect was maintained in all tested conditions.
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spelling pubmed-69266372019-12-24 New Pre-reacted Glass Containing Dental Composites (giomers) with Improved Fluoride Release and Biocompatibility Colceriu Burtea, Loredana Prejmerean, Cristina Prodan, Doina Baldea, Ioana Vlassa, Mihaela Filip, Miuta Moldovan, Marioara (Moldovan), Madalina-Anca Lazar Antoniac, Aurora Prejmerean, Vasile Ambrosie, Ioana Materials (Basel) Article The aim of the present work was to prepare a series of novel restorative giomers and investigate the morphology, the physico-chemical properties (residual monomer, fluoride release), and the cytotoxicity of the new materials. The experimental giomers were prepared as light-cured pastes by blending different resin matrices comprising aromatic/aliphatic/urethane (di) methacrylates, with hybrid fillers containing pre-reacted glasses (PRGs), a radiopaque glass, and nano fluorhydroxyapatite. Polyalkenoic acids based on acrylic acid/itaconic acid/N-acryloyl -L-leucine modified or not with methacrylic groups, together with a superficially active glass, were used to prepare the PRGs. The fluoride ion release of the experimental giomers was investigated within a period of 60 days of storage in bidistilled water while using a fluoride ion selective electrode. Beautifil II commercial product was used as a reference. Cell cytotoxicity tests were done in vitro, in accordance with ISO 10993-122012 proceedings. Human dermal fibroblasts and umbilical endothelial vein cultures were used. The values that were obtained for cumulative fluoride release for all experimental giomers were higher than for the Beautifil II product, being more than twice the ones that were obtained for the commercial product after 60 days of storage in bidistilled water. The experimental biomaterials showed similar and/or better results when compared to the commercial one; this effect was maintained in all tested conditions. MDPI 2019-12-03 /pmc/articles/PMC6926637/ /pubmed/31816959 http://dx.doi.org/10.3390/ma12234021 Text en © 2019 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Colceriu Burtea, Loredana
Prejmerean, Cristina
Prodan, Doina
Baldea, Ioana
Vlassa, Mihaela
Filip, Miuta
Moldovan, Marioara
(Moldovan), Madalina-Anca Lazar
Antoniac, Aurora
Prejmerean, Vasile
Ambrosie, Ioana
New Pre-reacted Glass Containing Dental Composites (giomers) with Improved Fluoride Release and Biocompatibility
title New Pre-reacted Glass Containing Dental Composites (giomers) with Improved Fluoride Release and Biocompatibility
title_full New Pre-reacted Glass Containing Dental Composites (giomers) with Improved Fluoride Release and Biocompatibility
title_fullStr New Pre-reacted Glass Containing Dental Composites (giomers) with Improved Fluoride Release and Biocompatibility
title_full_unstemmed New Pre-reacted Glass Containing Dental Composites (giomers) with Improved Fluoride Release and Biocompatibility
title_short New Pre-reacted Glass Containing Dental Composites (giomers) with Improved Fluoride Release and Biocompatibility
title_sort new pre-reacted glass containing dental composites (giomers) with improved fluoride release and biocompatibility
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6926637/
https://www.ncbi.nlm.nih.gov/pubmed/31816959
http://dx.doi.org/10.3390/ma12234021
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