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Superfast Set, Strong and Less Degradable Mineral Trioxide Aggregate Cement

PURPOSE: Despite the good sealing ability and biocompatibility of mineral trioxide aggregate (MTA), its slow setting, high degradation, and weakness limit its use in surgical endodontics and high stress-bearing areas. This study aimed to develop two new liquids to control these drawbacks. They were...

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Autores principales: Alqedairi, Abdullah, Muñoz-Viveros, Carlos A., Pantera, Eugene A., Campillo-Funollet, Marc, Alfawaz, Hussam, Abou Neel, Ensanya Ali, Abuhaimed, Tariq S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5672125/
https://www.ncbi.nlm.nih.gov/pubmed/29201053
http://dx.doi.org/10.1155/2017/3019136
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author Alqedairi, Abdullah
Muñoz-Viveros, Carlos A.
Pantera, Eugene A.
Campillo-Funollet, Marc
Alfawaz, Hussam
Abou Neel, Ensanya Ali
Abuhaimed, Tariq S.
author_facet Alqedairi, Abdullah
Muñoz-Viveros, Carlos A.
Pantera, Eugene A.
Campillo-Funollet, Marc
Alfawaz, Hussam
Abou Neel, Ensanya Ali
Abuhaimed, Tariq S.
author_sort Alqedairi, Abdullah
collection PubMed
description PURPOSE: Despite the good sealing ability and biocompatibility of mineral trioxide aggregate (MTA), its slow setting, high degradation, and weakness limit its use in surgical endodontics and high stress-bearing areas. This study aimed to develop two new liquids to control these drawbacks. They were prepared from calcium chloride, fumed silica, and hydroxyapatite or calcium phosphate and coded “H” and “P,” respectively. METHODS: Portland cement, Grey ProRoot® MTA, and white ProRoot MTA were mixed with distilled water (control) or liquid “H” or “P.” The pH, setting time, degradation rate, leachant/precipitate' composition, compressive strength, and morphology were assessed. RESULTS: Both liquids maintained MTA's high alkalinity and reduced the setting time by 1-2 orders of magnitude. Both liquids, H in particular, significantly reduced the degradation rate of Grey ProRoot and White ProRoot MTA®. Calcite has been identified as the main phase of the leachant or precipitate formed during the cement's degradation. Calcium hydroxide or hydroxyapatite was also identified with Grey ProRoot MTA mixed with H liquid. These liquids also significantly increased the compressive strength with no statistical differences between them; this was associated with the production of dense, consolidated structures. CONCLUSIONS: The modified MTA could be used in surgical endodontics and high stress-bearing areas.
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spelling pubmed-56721252017-12-03 Superfast Set, Strong and Less Degradable Mineral Trioxide Aggregate Cement Alqedairi, Abdullah Muñoz-Viveros, Carlos A. Pantera, Eugene A. Campillo-Funollet, Marc Alfawaz, Hussam Abou Neel, Ensanya Ali Abuhaimed, Tariq S. Int J Dent Research Article PURPOSE: Despite the good sealing ability and biocompatibility of mineral trioxide aggregate (MTA), its slow setting, high degradation, and weakness limit its use in surgical endodontics and high stress-bearing areas. This study aimed to develop two new liquids to control these drawbacks. They were prepared from calcium chloride, fumed silica, and hydroxyapatite or calcium phosphate and coded “H” and “P,” respectively. METHODS: Portland cement, Grey ProRoot® MTA, and white ProRoot MTA were mixed with distilled water (control) or liquid “H” or “P.” The pH, setting time, degradation rate, leachant/precipitate' composition, compressive strength, and morphology were assessed. RESULTS: Both liquids maintained MTA's high alkalinity and reduced the setting time by 1-2 orders of magnitude. Both liquids, H in particular, significantly reduced the degradation rate of Grey ProRoot and White ProRoot MTA®. Calcite has been identified as the main phase of the leachant or precipitate formed during the cement's degradation. Calcium hydroxide or hydroxyapatite was also identified with Grey ProRoot MTA mixed with H liquid. These liquids also significantly increased the compressive strength with no statistical differences between them; this was associated with the production of dense, consolidated structures. CONCLUSIONS: The modified MTA could be used in surgical endodontics and high stress-bearing areas. Hindawi 2017 2017-10-19 /pmc/articles/PMC5672125/ /pubmed/29201053 http://dx.doi.org/10.1155/2017/3019136 Text en Copyright © 2017 Abdullah Alqedairi et al. https://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Alqedairi, Abdullah
Muñoz-Viveros, Carlos A.
Pantera, Eugene A.
Campillo-Funollet, Marc
Alfawaz, Hussam
Abou Neel, Ensanya Ali
Abuhaimed, Tariq S.
Superfast Set, Strong and Less Degradable Mineral Trioxide Aggregate Cement
title Superfast Set, Strong and Less Degradable Mineral Trioxide Aggregate Cement
title_full Superfast Set, Strong and Less Degradable Mineral Trioxide Aggregate Cement
title_fullStr Superfast Set, Strong and Less Degradable Mineral Trioxide Aggregate Cement
title_full_unstemmed Superfast Set, Strong and Less Degradable Mineral Trioxide Aggregate Cement
title_short Superfast Set, Strong and Less Degradable Mineral Trioxide Aggregate Cement
title_sort superfast set, strong and less degradable mineral trioxide aggregate cement
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5672125/
https://www.ncbi.nlm.nih.gov/pubmed/29201053
http://dx.doi.org/10.1155/2017/3019136
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