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Article: Fabrication of Multilayered Biofunctional Material with an Enamel-like Structure

TitleFabrication of Multilayered Biofunctional Material with an Enamel-like Structure
Authors
Keywordsbiofunctional material
enamel-inspired material
enamel-like structure
graphene oxide
hierarchical structure
Issue Date9-Nov-2022
PublisherMDPI
Citation
International Journal of Molecular Sciences, 2022, v. 23, n. 22 How to Cite?
Abstract

The oral cavity is an environment with diverse bacteria; thus, antibacterial materials are crucial for treating and preventing dental diseases. There is a high demand for materials with an enamel-like architecture because of the high failure rate of dental restorations, due to the physical differences between dental materials and enamel. However, recreating the distinctive apatite composition and hierarchical architecture of enamel is challenging. The aim of this study was to synthesize a novel material with an enamel-like structure and antibacterial ability. We established a non-cell biomimetic method of evaporation-based bottom-up self-assembly combined with a layer-by-layer technique and introduced an antibacterial agent (graphene oxide) to fabricate a biofunctional material with an enamel-like architecture and antibacterial ability. Specifically, enamel-like graphene oxide-hydroxyapatite crystals, formed on a customized mineralization template, were assembled into an enamel-like prismatic structure with a highly organized orientation preferentially along the c-axis through evaporation-based bottom-up self-assembly. With the aid of layer-by-layer absorption, we then fabricated a bulk macroscopic multilayered biofunctional material with a hierarchical enamel-like architecture. This enamel-inspired biomaterial could effectively resolve the problem in dental restoration and brings new prospects for the synthesis of other enamel-inspired biomaterials.


Persistent Identifierhttp://hdl.handle.net/10722/354527
ISSN
2023 Impact Factor: 4.9
2023 SCImago Journal Rankings: 1.179
ISI Accession Number ID

 

DC FieldValueLanguage
dc.contributor.authorZhang, Yu Yuan-
dc.contributor.authorLi, Quan Li-
dc.contributor.authorWong, Hai Ming-
dc.date.accessioned2025-02-12T00:35:16Z-
dc.date.available2025-02-12T00:35:16Z-
dc.date.issued2022-11-09-
dc.identifier.citationInternational Journal of Molecular Sciences, 2022, v. 23, n. 22-
dc.identifier.issn1661-6596-
dc.identifier.urihttp://hdl.handle.net/10722/354527-
dc.description.abstract<p>The oral cavity is an environment with diverse bacteria; thus, antibacterial materials are crucial for treating and preventing dental diseases. There is a high demand for materials with an enamel-like architecture because of the high failure rate of dental restorations, due to the physical differences between dental materials and enamel. However, recreating the distinctive apatite composition and hierarchical architecture of enamel is challenging. The aim of this study was to synthesize a novel material with an enamel-like structure and antibacterial ability. We established a non-cell biomimetic method of evaporation-based bottom-up self-assembly combined with a layer-by-layer technique and introduced an antibacterial agent (graphene oxide) to fabricate a biofunctional material with an enamel-like architecture and antibacterial ability. Specifically, enamel-like graphene oxide-hydroxyapatite crystals, formed on a customized mineralization template, were assembled into an enamel-like prismatic structure with a highly organized orientation preferentially along the c-axis through evaporation-based bottom-up self-assembly. With the aid of layer-by-layer absorption, we then fabricated a bulk macroscopic multilayered biofunctional material with a hierarchical enamel-like architecture. This enamel-inspired biomaterial could effectively resolve the problem in dental restoration and brings new prospects for the synthesis of other enamel-inspired biomaterials.</p>-
dc.languageeng-
dc.publisherMDPI-
dc.relation.ispartofInternational Journal of Molecular Sciences-
dc.rightsThis work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License.-
dc.subjectbiofunctional material-
dc.subjectenamel-inspired material-
dc.subjectenamel-like structure-
dc.subjectgraphene oxide-
dc.subjecthierarchical structure-
dc.titleFabrication of Multilayered Biofunctional Material with an Enamel-like Structure -
dc.typeArticle-
dc.identifier.doi10.3390/ijms232213810-
dc.identifier.pmid36430289-
dc.identifier.scopuseid_2-s2.0-85142600777-
dc.identifier.volume23-
dc.identifier.issue22-
dc.identifier.eissn1422-0067-
dc.identifier.isiWOS:000887485300001-
dc.publisher.placeBASEL-
dc.identifier.issnl1422-0067-

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