Chemical characteristics of mineral trioxide aggregate and its hydration reaction
Mineral trioxide aggregate (MTA) was developed in early 1990s and has been successfully used for root perforation repair, root end filling, and one-visit apexification. MTA is composed mainly of tricalcium silicate and dicalcium silicate. When MTA is hydrated, calcium silicate hydrate (CSH) and calc...
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Korean Academy of Conservative Dentistry
2012-11-01
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Series: | Restorative Dentistry & Endodontics |
Online Access: | https://doi.org/10.5395/rde.2012.37.4.188 |
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doaj-924a35d3287349aea646f9ca1eb6decd2020-11-24T23:28:57ZengKorean Academy of Conservative DentistryRestorative Dentistry & Endodontics2234-76582234-76662012-11-0137418819310.5395/rde.2012.37.4.188Chemical characteristics of mineral trioxide aggregate and its hydration reactionSeok-Woo Chang0Center for Health Promotion, Samsung Medical Center, Sungkyunkwan University School of Medicine, Seoul, Korea.Mineral trioxide aggregate (MTA) was developed in early 1990s and has been successfully used for root perforation repair, root end filling, and one-visit apexification. MTA is composed mainly of tricalcium silicate and dicalcium silicate. When MTA is hydrated, calcium silicate hydrate (CSH) and calcium hydroxide is formed. Formed calcium hydroxide interacts with the phosphate ion in body fluid and form amorphous calcium phosphate (ACP) which finally transforms into calcium deficient hydroxyapatite (CDHA). These mineral precipitate were reported to form the MTA-dentin interfacial layer which enhances the sealing ability of MTA. Clinically, the use of zinc oxide euginol (ZOE) based materials may retard the setting of MTA. Also, the use of acids or contact with excessive blood should be avoided before complete set of MTA, because these conditions could adversely affect the hydration reaction of MTA. Further studies on the chemical nature of MTA hydration reaction are needed.https://doi.org/10.5395/rde.2012.37.4.188 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Seok-Woo Chang |
spellingShingle |
Seok-Woo Chang Chemical characteristics of mineral trioxide aggregate and its hydration reaction Restorative Dentistry & Endodontics |
author_facet |
Seok-Woo Chang |
author_sort |
Seok-Woo Chang |
title |
Chemical characteristics of mineral trioxide aggregate and its hydration reaction |
title_short |
Chemical characteristics of mineral trioxide aggregate and its hydration reaction |
title_full |
Chemical characteristics of mineral trioxide aggregate and its hydration reaction |
title_fullStr |
Chemical characteristics of mineral trioxide aggregate and its hydration reaction |
title_full_unstemmed |
Chemical characteristics of mineral trioxide aggregate and its hydration reaction |
title_sort |
chemical characteristics of mineral trioxide aggregate and its hydration reaction |
publisher |
Korean Academy of Conservative Dentistry |
series |
Restorative Dentistry & Endodontics |
issn |
2234-7658 2234-7666 |
publishDate |
2012-11-01 |
description |
Mineral trioxide aggregate (MTA) was developed in early 1990s and has been successfully used for root perforation repair, root end filling, and one-visit apexification. MTA is composed mainly of tricalcium silicate and dicalcium silicate. When MTA is hydrated, calcium silicate hydrate (CSH) and calcium hydroxide is formed. Formed calcium hydroxide interacts with the phosphate ion in body fluid and form amorphous calcium phosphate (ACP) which finally transforms into calcium deficient hydroxyapatite (CDHA). These mineral precipitate were reported to form the MTA-dentin interfacial layer which enhances the sealing ability of MTA. Clinically, the use of zinc oxide euginol (ZOE) based materials may retard the setting of MTA. Also, the use of acids or contact with excessive blood should be avoided before complete set of MTA, because these conditions could adversely affect the hydration reaction of MTA. Further studies on the chemical nature of MTA hydration reaction are needed. |
url |
https://doi.org/10.5395/rde.2012.37.4.188 |
work_keys_str_mv |
AT seokwoochang chemicalcharacteristicsofmineraltrioxideaggregateanditshydrationreaction |
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