Cargando…

Oriented and Ordered Biomimetic Remineralization of the Surface of Demineralized Dental Enamel Using HAP@ACP Nanoparticles Guided by Glycine

Achieving oriented and ordered remineralization on the surface of demineralized dental enamel, thereby restoring the satisfactory mechanical properties approaching those of sound enamel, is still a challenge for dentists. To mimic the natural biomineralization approach for enamel remineralization, t...

Descripción completa

Detalles Bibliográficos
Autores principales: Wang, Haorong, Xiao, Zuohui, Yang, Jie, Lu, Danyang, Kishen, Anil, Li, Yanqiu, Chen, Zhen, Que, Kehua, Zhang, Qian, Deng, Xuliang, Yang, Xiaoping, Cai, Qing, Chen, Ning, Cong, Changhong, Guan, Binbin, Li, Ting, Zhang, Xu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5228061/
https://www.ncbi.nlm.nih.gov/pubmed/28079165
http://dx.doi.org/10.1038/srep40701
_version_ 1782493914761003008
author Wang, Haorong
Xiao, Zuohui
Yang, Jie
Lu, Danyang
Kishen, Anil
Li, Yanqiu
Chen, Zhen
Que, Kehua
Zhang, Qian
Deng, Xuliang
Yang, Xiaoping
Cai, Qing
Chen, Ning
Cong, Changhong
Guan, Binbin
Li, Ting
Zhang, Xu
author_facet Wang, Haorong
Xiao, Zuohui
Yang, Jie
Lu, Danyang
Kishen, Anil
Li, Yanqiu
Chen, Zhen
Que, Kehua
Zhang, Qian
Deng, Xuliang
Yang, Xiaoping
Cai, Qing
Chen, Ning
Cong, Changhong
Guan, Binbin
Li, Ting
Zhang, Xu
author_sort Wang, Haorong
collection PubMed
description Achieving oriented and ordered remineralization on the surface of demineralized dental enamel, thereby restoring the satisfactory mechanical properties approaching those of sound enamel, is still a challenge for dentists. To mimic the natural biomineralization approach for enamel remineralization, the biological process of enamel development proteins, such as amelogenin, was simulated in this study. In this work, carboxymethyl chitosan (CMC) conjugated with alendronate (ALN) was applied to stabilize amorphous calcium phosphate (ACP) to form CMC/ACP nanoparticles. Sodium hypochlorite (NaClO) functioned as the protease which decompose amelogenin in vivo to degrade the CMC-ALN matrix and generate HAP@ACP core-shell nanoparticles. Finally, when guided by 10 mM glycine (Gly), HAP@ACP nanoparticles can arrange orderly and subsequently transform from an amorphous phase to well-ordered rod-like apatite crystals to achieve oriented and ordered biomimetic remineralization on acid-etched enamel surfaces. This biomimetic remineralization process is achieved through the oriented attachment (OA) of nanoparticles based on non-classical crystallization theory. These results indicate that finding and developing analogues of natural proteins such as amelogenin involved in the biomineralization by natural macromolecular polymers and imitating the process of biomineralization would be an effective strategy for enamel remineralization. Furthermore, this method represents a promising method for the management of early caries in minimal invasive dentistry (MID).
format Online
Article
Text
id pubmed-5228061
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher Nature Publishing Group
record_format MEDLINE/PubMed
spelling pubmed-52280612017-01-17 Oriented and Ordered Biomimetic Remineralization of the Surface of Demineralized Dental Enamel Using HAP@ACP Nanoparticles Guided by Glycine Wang, Haorong Xiao, Zuohui Yang, Jie Lu, Danyang Kishen, Anil Li, Yanqiu Chen, Zhen Que, Kehua Zhang, Qian Deng, Xuliang Yang, Xiaoping Cai, Qing Chen, Ning Cong, Changhong Guan, Binbin Li, Ting Zhang, Xu Sci Rep Article Achieving oriented and ordered remineralization on the surface of demineralized dental enamel, thereby restoring the satisfactory mechanical properties approaching those of sound enamel, is still a challenge for dentists. To mimic the natural biomineralization approach for enamel remineralization, the biological process of enamel development proteins, such as amelogenin, was simulated in this study. In this work, carboxymethyl chitosan (CMC) conjugated with alendronate (ALN) was applied to stabilize amorphous calcium phosphate (ACP) to form CMC/ACP nanoparticles. Sodium hypochlorite (NaClO) functioned as the protease which decompose amelogenin in vivo to degrade the CMC-ALN matrix and generate HAP@ACP core-shell nanoparticles. Finally, when guided by 10 mM glycine (Gly), HAP@ACP nanoparticles can arrange orderly and subsequently transform from an amorphous phase to well-ordered rod-like apatite crystals to achieve oriented and ordered biomimetic remineralization on acid-etched enamel surfaces. This biomimetic remineralization process is achieved through the oriented attachment (OA) of nanoparticles based on non-classical crystallization theory. These results indicate that finding and developing analogues of natural proteins such as amelogenin involved in the biomineralization by natural macromolecular polymers and imitating the process of biomineralization would be an effective strategy for enamel remineralization. Furthermore, this method represents a promising method for the management of early caries in minimal invasive dentistry (MID). Nature Publishing Group 2017-01-12 /pmc/articles/PMC5228061/ /pubmed/28079165 http://dx.doi.org/10.1038/srep40701 Text en Copyright © 2017, The Author(s) http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Wang, Haorong
Xiao, Zuohui
Yang, Jie
Lu, Danyang
Kishen, Anil
Li, Yanqiu
Chen, Zhen
Que, Kehua
Zhang, Qian
Deng, Xuliang
Yang, Xiaoping
Cai, Qing
Chen, Ning
Cong, Changhong
Guan, Binbin
Li, Ting
Zhang, Xu
Oriented and Ordered Biomimetic Remineralization of the Surface of Demineralized Dental Enamel Using HAP@ACP Nanoparticles Guided by Glycine
title Oriented and Ordered Biomimetic Remineralization of the Surface of Demineralized Dental Enamel Using HAP@ACP Nanoparticles Guided by Glycine
title_full Oriented and Ordered Biomimetic Remineralization of the Surface of Demineralized Dental Enamel Using HAP@ACP Nanoparticles Guided by Glycine
title_fullStr Oriented and Ordered Biomimetic Remineralization of the Surface of Demineralized Dental Enamel Using HAP@ACP Nanoparticles Guided by Glycine
title_full_unstemmed Oriented and Ordered Biomimetic Remineralization of the Surface of Demineralized Dental Enamel Using HAP@ACP Nanoparticles Guided by Glycine
title_short Oriented and Ordered Biomimetic Remineralization of the Surface of Demineralized Dental Enamel Using HAP@ACP Nanoparticles Guided by Glycine
title_sort oriented and ordered biomimetic remineralization of the surface of demineralized dental enamel using hap@acp nanoparticles guided by glycine
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5228061/
https://www.ncbi.nlm.nih.gov/pubmed/28079165
http://dx.doi.org/10.1038/srep40701
work_keys_str_mv AT wanghaorong orientedandorderedbiomimeticremineralizationofthesurfaceofdemineralizeddentalenamelusinghapacpnanoparticlesguidedbyglycine
AT xiaozuohui orientedandorderedbiomimeticremineralizationofthesurfaceofdemineralizeddentalenamelusinghapacpnanoparticlesguidedbyglycine
AT yangjie orientedandorderedbiomimeticremineralizationofthesurfaceofdemineralizeddentalenamelusinghapacpnanoparticlesguidedbyglycine
AT ludanyang orientedandorderedbiomimeticremineralizationofthesurfaceofdemineralizeddentalenamelusinghapacpnanoparticlesguidedbyglycine
AT kishenanil orientedandorderedbiomimeticremineralizationofthesurfaceofdemineralizeddentalenamelusinghapacpnanoparticlesguidedbyglycine
AT liyanqiu orientedandorderedbiomimeticremineralizationofthesurfaceofdemineralizeddentalenamelusinghapacpnanoparticlesguidedbyglycine
AT chenzhen orientedandorderedbiomimeticremineralizationofthesurfaceofdemineralizeddentalenamelusinghapacpnanoparticlesguidedbyglycine
AT quekehua orientedandorderedbiomimeticremineralizationofthesurfaceofdemineralizeddentalenamelusinghapacpnanoparticlesguidedbyglycine
AT zhangqian orientedandorderedbiomimeticremineralizationofthesurfaceofdemineralizeddentalenamelusinghapacpnanoparticlesguidedbyglycine
AT dengxuliang orientedandorderedbiomimeticremineralizationofthesurfaceofdemineralizeddentalenamelusinghapacpnanoparticlesguidedbyglycine
AT yangxiaoping orientedandorderedbiomimeticremineralizationofthesurfaceofdemineralizeddentalenamelusinghapacpnanoparticlesguidedbyglycine
AT caiqing orientedandorderedbiomimeticremineralizationofthesurfaceofdemineralizeddentalenamelusinghapacpnanoparticlesguidedbyglycine
AT chenning orientedandorderedbiomimeticremineralizationofthesurfaceofdemineralizeddentalenamelusinghapacpnanoparticlesguidedbyglycine
AT congchanghong orientedandorderedbiomimeticremineralizationofthesurfaceofdemineralizeddentalenamelusinghapacpnanoparticlesguidedbyglycine
AT guanbinbin orientedandorderedbiomimeticremineralizationofthesurfaceofdemineralizeddentalenamelusinghapacpnanoparticlesguidedbyglycine
AT liting orientedandorderedbiomimeticremineralizationofthesurfaceofdemineralizeddentalenamelusinghapacpnanoparticlesguidedbyglycine
AT zhangxu orientedandorderedbiomimeticremineralizationofthesurfaceofdemineralizeddentalenamelusinghapacpnanoparticlesguidedbyglycine