New strategy to create “Super Dentin” using adhesive technology: Reinforcement of adhesive–dentin interface and protection of tooth structures

Dentin bonding systems have been dramatically simplified and improved during the recent decades. Monomer penetration into dentin and its polymerization in situ creates a hybrid layer, which is essential to obtain good bonding to dentin. Moreover, the presence of an acid–base resistant zone below the...

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Main Authors: Toru Nikaido, Go Inoue, Tomohiro Takagaki, Kanchana Waidyasekera, Yasuhiro Iida, Mirela S. Shinohara, Alireza Sadr, Junji Tagami
Format: Article
Language:English
Published: Elsevier 2011-02-01
Series:Japanese Dental Science Review
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S1882761610000165
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spelling doaj-1f0433be11bc40c3b54f439927126e952020-11-24T21:30:38ZengElsevierJapanese Dental Science Review1882-76162011-02-01471314210.1016/j.jdsr.2010.04.002New strategy to create “Super Dentin” using adhesive technology: Reinforcement of adhesive–dentin interface and protection of tooth structuresToru Nikaido0Go Inoue1Tomohiro Takagaki2Kanchana Waidyasekera3Yasuhiro Iida4Mirela S. Shinohara5Alireza Sadr6Junji Tagami7Cariology and Operative Dentistry, Department of Restorative Sciences, Graduate School of Medical and Dental Sciences, Tokyo Medical and Dental University, 5-45, Yushima 1-chome, Bunkyo-ku, Tokyo 113-8549, JapanCariology and Operative Dentistry, Department of Restorative Sciences, Graduate School of Medical and Dental Sciences, Tokyo Medical and Dental University, 5-45, Yushima 1-chome, Bunkyo-ku, Tokyo 113-8549, JapanCariology and Operative Dentistry, Department of Restorative Sciences, Graduate School of Medical and Dental Sciences, Tokyo Medical and Dental University, 5-45, Yushima 1-chome, Bunkyo-ku, Tokyo 113-8549, JapanCariology and Operative Dentistry, Department of Restorative Sciences, Graduate School of Medical and Dental Sciences, Tokyo Medical and Dental University, 5-45, Yushima 1-chome, Bunkyo-ku, Tokyo 113-8549, JapanCariology and Operative Dentistry, Department of Restorative Sciences, Graduate School of Medical and Dental Sciences, Tokyo Medical and Dental University, 5-45, Yushima 1-chome, Bunkyo-ku, Tokyo 113-8549, JapanDental Materials Division, State University of Amazonas, Manaus, AM, BrazilGlobal Center of Excellence Program, International Research Center for Molecular Science in Tooth and Bone Diseases, Tokyo Medical and Dental University, 5-45, Yushima 1-chome, Bunkyo-ku, Tokyo 113-8549, JapanCariology and Operative Dentistry, Department of Restorative Sciences, Graduate School of Medical and Dental Sciences, Tokyo Medical and Dental University, 5-45, Yushima 1-chome, Bunkyo-ku, Tokyo 113-8549, JapanDentin bonding systems have been dramatically simplified and improved during the recent decades. Monomer penetration into dentin and its polymerization in situ creates a hybrid layer, which is essential to obtain good bonding to dentin. Moreover, the presence of an acid–base resistant zone below the hybrid layer has been documented with self-etching adhesive systems in an artificial secondary caries attack. When ultrastructure of the acid–base resistant zone is assessed by SEM and TEM observations, formation of the acid–base resistant zone is considered to be due to the monomer penetration potential and fluoride release in the adhesive systems. Natural dentin has a limited potential to resist an acid attack of secondary caries; however, the acid–base resistant zone does not purely consist of dentin in morphology, it is rather a combination of dentin and the adjacent hybrid layer. Therefore, the reinforced dentin has been called “Super Dentin” bearing the ability to prevent primary and secondary caries. Prospectively, the great potential of adhesive technology in creation of the “Super Dentin” would lead to the development of new materials for mechanical, chemical and biological protection of the dental structures.http://www.sciencedirect.com/science/article/pii/S1882761610000165Acid–base resistant zoneDentin bondingHybrid layerSecondary cariesSuper DentinAdhesion
collection DOAJ
language English
format Article
sources DOAJ
author Toru Nikaido
Go Inoue
Tomohiro Takagaki
Kanchana Waidyasekera
Yasuhiro Iida
Mirela S. Shinohara
Alireza Sadr
Junji Tagami
spellingShingle Toru Nikaido
Go Inoue
Tomohiro Takagaki
Kanchana Waidyasekera
Yasuhiro Iida
Mirela S. Shinohara
Alireza Sadr
Junji Tagami
New strategy to create “Super Dentin” using adhesive technology: Reinforcement of adhesive–dentin interface and protection of tooth structures
Japanese Dental Science Review
Acid–base resistant zone
Dentin bonding
Hybrid layer
Secondary caries
Super Dentin
Adhesion
author_facet Toru Nikaido
Go Inoue
Tomohiro Takagaki
Kanchana Waidyasekera
Yasuhiro Iida
Mirela S. Shinohara
Alireza Sadr
Junji Tagami
author_sort Toru Nikaido
title New strategy to create “Super Dentin” using adhesive technology: Reinforcement of adhesive–dentin interface and protection of tooth structures
title_short New strategy to create “Super Dentin” using adhesive technology: Reinforcement of adhesive–dentin interface and protection of tooth structures
title_full New strategy to create “Super Dentin” using adhesive technology: Reinforcement of adhesive–dentin interface and protection of tooth structures
title_fullStr New strategy to create “Super Dentin” using adhesive technology: Reinforcement of adhesive–dentin interface and protection of tooth structures
title_full_unstemmed New strategy to create “Super Dentin” using adhesive technology: Reinforcement of adhesive–dentin interface and protection of tooth structures
title_sort new strategy to create “super dentin” using adhesive technology: reinforcement of adhesive–dentin interface and protection of tooth structures
publisher Elsevier
series Japanese Dental Science Review
issn 1882-7616
publishDate 2011-02-01
description Dentin bonding systems have been dramatically simplified and improved during the recent decades. Monomer penetration into dentin and its polymerization in situ creates a hybrid layer, which is essential to obtain good bonding to dentin. Moreover, the presence of an acid–base resistant zone below the hybrid layer has been documented with self-etching adhesive systems in an artificial secondary caries attack. When ultrastructure of the acid–base resistant zone is assessed by SEM and TEM observations, formation of the acid–base resistant zone is considered to be due to the monomer penetration potential and fluoride release in the adhesive systems. Natural dentin has a limited potential to resist an acid attack of secondary caries; however, the acid–base resistant zone does not purely consist of dentin in morphology, it is rather a combination of dentin and the adjacent hybrid layer. Therefore, the reinforced dentin has been called “Super Dentin” bearing the ability to prevent primary and secondary caries. Prospectively, the great potential of adhesive technology in creation of the “Super Dentin” would lead to the development of new materials for mechanical, chemical and biological protection of the dental structures.
topic Acid–base resistant zone
Dentin bonding
Hybrid layer
Secondary caries
Super Dentin
Adhesion
url http://www.sciencedirect.com/science/article/pii/S1882761610000165
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