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A Microstructure Insight of MTA Repair HP of Rapid Setting Capacity and Bioactive Response

Mineral trioxide aggregate (MTA) is considered a bioactive endodontic material, which promotes natural mineralization at the material-tooth tissue interface. MTA Repair HP stands out because of the short setting time and the quick and effective bioactive response in vitro. The bioactivity, depens on...

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Autores principales: Jiménez-Sánchez, María Carmen, Segura-Egea, Juan José, Díaz-Cuenca, Aránzazu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7178307/
https://www.ncbi.nlm.nih.gov/pubmed/32252262
http://dx.doi.org/10.3390/ma13071641
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author Jiménez-Sánchez, María Carmen
Segura-Egea, Juan José
Díaz-Cuenca, Aránzazu
author_facet Jiménez-Sánchez, María Carmen
Segura-Egea, Juan José
Díaz-Cuenca, Aránzazu
author_sort Jiménez-Sánchez, María Carmen
collection PubMed
description Mineral trioxide aggregate (MTA) is considered a bioactive endodontic material, which promotes natural mineralization at the material-tooth tissue interface. MTA Repair HP stands out because of the short setting time and the quick and effective bioactive response in vitro. The bioactivity, depens on material composition and microstructure. This work is devoted to analyze MTA Repair HP microstructural features, of both the powder precursor and set material, to get insights into the material physicochemical parameters—functionality performance relationships. Transmission electron microscopy (TEM), and field emission gun scanning electron microscopy (FEG-SEM) coupled with energy-dispersive X-ray (EDX) analyses were performed. X-ray diffraction (XRD) measurements were carried out at different times to investigate setting process. Bioactivity evaluation in vitro was carried out by soaking the processed cement disk in simulated body fluid (SBF). The presented results point out those MTA Repair HP precursor material characteristics of tricalcium silicate particles of nanometric size and high aspect ratio, which provide an elevated surface area and maximized components dispersion of calcium silicate and very reactive calcium aluminate. The MTA Repair HP precursor powder nanostructure and formulation, allows a hydration process comprising silicate hydrate structures, which are very effective to achieve both fast setting and efficient bioactive response.
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spelling pubmed-71783072020-04-28 A Microstructure Insight of MTA Repair HP of Rapid Setting Capacity and Bioactive Response Jiménez-Sánchez, María Carmen Segura-Egea, Juan José Díaz-Cuenca, Aránzazu Materials (Basel) Article Mineral trioxide aggregate (MTA) is considered a bioactive endodontic material, which promotes natural mineralization at the material-tooth tissue interface. MTA Repair HP stands out because of the short setting time and the quick and effective bioactive response in vitro. The bioactivity, depens on material composition and microstructure. This work is devoted to analyze MTA Repair HP microstructural features, of both the powder precursor and set material, to get insights into the material physicochemical parameters—functionality performance relationships. Transmission electron microscopy (TEM), and field emission gun scanning electron microscopy (FEG-SEM) coupled with energy-dispersive X-ray (EDX) analyses were performed. X-ray diffraction (XRD) measurements were carried out at different times to investigate setting process. Bioactivity evaluation in vitro was carried out by soaking the processed cement disk in simulated body fluid (SBF). The presented results point out those MTA Repair HP precursor material characteristics of tricalcium silicate particles of nanometric size and high aspect ratio, which provide an elevated surface area and maximized components dispersion of calcium silicate and very reactive calcium aluminate. The MTA Repair HP precursor powder nanostructure and formulation, allows a hydration process comprising silicate hydrate structures, which are very effective to achieve both fast setting and efficient bioactive response. MDPI 2020-04-02 /pmc/articles/PMC7178307/ /pubmed/32252262 http://dx.doi.org/10.3390/ma13071641 Text en © 2020 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
Jiménez-Sánchez, María Carmen
Segura-Egea, Juan José
Díaz-Cuenca, Aránzazu
A Microstructure Insight of MTA Repair HP of Rapid Setting Capacity and Bioactive Response
title A Microstructure Insight of MTA Repair HP of Rapid Setting Capacity and Bioactive Response
title_full A Microstructure Insight of MTA Repair HP of Rapid Setting Capacity and Bioactive Response
title_fullStr A Microstructure Insight of MTA Repair HP of Rapid Setting Capacity and Bioactive Response
title_full_unstemmed A Microstructure Insight of MTA Repair HP of Rapid Setting Capacity and Bioactive Response
title_short A Microstructure Insight of MTA Repair HP of Rapid Setting Capacity and Bioactive Response
title_sort microstructure insight of mta repair hp of rapid setting capacity and bioactive response
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7178307/
https://www.ncbi.nlm.nih.gov/pubmed/32252262
http://dx.doi.org/10.3390/ma13071641
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