Biomimetic Dentin Repair: Amelogenin-Derived Peptide Guides Occlusion and Peritubular Mineralization of Human Teeth

dc.contributor.author Fong, Hanson
dc.contributor.author Hamann, John
dc.contributor.author Hall, Eric
dc.contributor.author Yücesoy, Deniz T.
dc.contributor.author Doğan, Sami
dc.contributor.author Sarıkaya, Mehmet
dc.date.accessioned 2023-04-19T12:36:40Z
dc.date.available 2023-04-19T12:36:40Z
dc.date.issued 2023
dc.description.abstract Exposure of dentin tubules due to loss of protective enamel (crown) and cementum (root) tissues as a result of erosion, mechanical wear, gingival recession, etc. has been the leading causes of dentin hypersensitivity. Despite being a widespread ailment, no permanent solution exists to address this oral condition. Current treatments are designed to alleviate the pain by either using desensitizers or blocking dentin tubules by deposition of minerals or solid precipitates, which often have short-lived effects. Reproducing an integrated mineral layer that occludes exposed dentin with concomitant peritubular mineralization is essential to reestablish the structural and mechanical integrity of the tooth with long-term durability. Here, we describe a biomimetic treatment that promotes dentin repair using a mineralization directing peptide, sADP5, derived from amelogenin. The occlusion was achieved through a layer-by-layer peptide-guided remineralization process that forms an infiltrating mineral layer on dentin. The structure, composition, and nanomechanical properties of the remineralized dentin were analyzed by cross-sectional scanning electron microscopy imaging, energy dispersive X-ray spectroscopy, and nanomechanical testing. The elemental analysis provided calcium and phosphate compositions that are similar to those in hydroxyapatite. The measured average hardness and reduced elastic modulus values for the mineral layer were significantly higher than those of the demineralized and sound human dentin. The structural integration of the new mineral and underlying dentin was confirmed by thermal aging demonstrating no physical separation. These results suggest that a structurally robust and mechanically durable interface is formed between the interpenetrating mineral layer and underlying dentin that can withstand long-term mechanical and thermal stresses naturally experienced in the oral environment. The peptide-guided remineralization procedure described herein could provide a foundation for the development of highly effective oral care products leading to novel biomimetic treatments for a wide range of demineralization-related ailments and, in particular, offers a potent long-term solution for dentin hypersensitivity. en_US
dc.description.sponsorship This research was supported by (E.H., H.F., M.S.) WA-LSDF (Washington State Life Sciences Discovery Funds) and (S.D.) Dean and Margaret Spencer Clinical Research Fund (Restorative Dentistry, University of Washington) . D.T.Y. was also supported by European H2020 Marie Skodowska-Curie Actions (Grant No.: 101029653) . We thank Kathleen Eriksen for her assistance in sample preparation. en_US
dc.identifier.doi 10.1021/acsbiomaterials.2c01039
dc.identifier.issn 2373-9878
dc.identifier.scopus 2-s2.0-85149110897
dc.identifier.uri https://doi.org/10.1021/acsbiomaterials.2c01039
dc.identifier.uri https://hdl.handle.net/11147/13292
dc.language.iso en en_US
dc.publisher American Chemical Society en_US
dc.relation.ispartof ACS Biomaterials Science and Engineering en_US
dc.rights info:eu-repo/semantics/openAccess en_US
dc.subject Remineralization en_US
dc.subject Demineralization en_US
dc.subject Occlusion en_US
dc.subject Hypersensitivity en_US
dc.subject Efficacy en_US
dc.subject Sensitivity en_US
dc.title Biomimetic Dentin Repair: Amelogenin-Derived Peptide Guides Occlusion and Peritubular Mineralization of Human Teeth en_US
dc.type Article en_US
dspace.entity.type Publication
gdc.author.id 0000-0002-9590-3178
gdc.author.id 0000-0002-9590-3178 en_US
gdc.author.institutional Yücesoy, Deniz T.
gdc.author.scopusid 55581987200
gdc.author.scopusid 35122566700
gdc.author.scopusid 58122036600
gdc.author.scopusid 58122188000
gdc.author.scopusid 7102693093
gdc.author.scopusid 7005609283
gdc.bip.impulseclass C4
gdc.bip.influenceclass C5
gdc.bip.popularityclass C4
gdc.coar.access open access
gdc.coar.type text::journal::journal article
gdc.collaboration.industrial false
gdc.description.department İzmir Institute of Technology. Materials Science and Engineering en_US
gdc.description.endpage 1495 en_US
gdc.description.issue 3 en_US
gdc.description.publicationcategory Makale - Uluslararası Hakemli Dergi - Kurum Öğretim Elemanı en_US
gdc.description.scopusquality Q1
gdc.description.startpage 1486 en_US
gdc.description.volume 9 en_US
gdc.description.wosquality Q2
gdc.identifier.openalex W4322618767
gdc.identifier.pmid 36854046
gdc.identifier.wos WOS:000942370700001
gdc.index.type WoS
gdc.index.type Scopus
gdc.index.type PubMed
gdc.oaire.accesstype HYBRID
gdc.oaire.diamondjournal false
gdc.oaire.impulse 18.0
gdc.oaire.influence 3.0799967E-9
gdc.oaire.isgreen true
gdc.oaire.keywords Cross-Sectional Studies
gdc.oaire.keywords Durapatite
gdc.oaire.keywords Amelogenin
gdc.oaire.keywords Biomimetics
gdc.oaire.keywords Tooth Remineralization
gdc.oaire.keywords Dentin
gdc.oaire.keywords Humans
gdc.oaire.keywords Dentin Sensitivity
gdc.oaire.keywords Peptides
gdc.oaire.popularity 1.0029338E-8
gdc.oaire.publicfunded false
gdc.oaire.sciencefields 03 medical and health sciences
gdc.oaire.sciencefields 0302 clinical medicine
gdc.openalex.collaboration International
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gdc.openalex.normalizedpercentile 0.96
gdc.openalex.toppercent TOP 10%
gdc.opencitations.count 14
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gdc.plumx.newscount 8
gdc.plumx.pubmedcites 6
gdc.plumx.scopuscites 22
gdc.scopus.citedcount 22
gdc.wos.citedcount 18
relation.isAuthorOfPublication.latestForDiscovery 57561b2c-b83b-4e91-973e-28ff1765a031
relation.isOrgUnitOfPublication.latestForDiscovery 9af2b05f-28ac-4015-8abe-a4dfe192da5e

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