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A multi-component bioactive formulation involving hyaluronic acid and melatonin combined with nano-hydroxyapatite and grape seed extract for enamel remineralization: an in vitro assessment

dc.contributor.authorDemirci, Aysenur Ertunc
dc.contributor.authorErci, Fatih
dc.contributor.authorOzenen, Didem Ozdemir
dc.contributor.authorIsildak, Ibrahim
dc.date.accessioned2026-06-27T15:25:39Z
dc.date.issued2025
dc.description.abstractObjective. Structural loss in sound enamel and dentin adversely affects quality of life, emphasizing the need for rapid and effective treatment. Early carious lesions-characterized by subsurface demineralization without surface cavitation-are fully reversible when detected early. This study aimed to evaluate the in vitro remineralization potential of a novel formulation containing hyaluronic acid (HA), melatonin (MEL), nano-hydroxyapatite (nHAp), and grape seed extract (GSE, Vitis vinifera). Materials and Methods. Sixty bovine enamel samples were divided into six groups: four treatment groups ([nHAp-GSE], HA_[nHAp-GSE], MEL_[nHAp-GSE], HA-MEL_[nHAp-GSE]), and positive and negative controls. Artificial carious lesions were created and treated using a 7-day pH cycling model. Surface microhardness recovery (SMHR), surface roughness (optical profilometry), morphology (SEM), FTIR spectroscopy, elemental composition and Ca/P ratio (EDS), and crystallinity (XRD) were assesed. Statistical analyses included one-way ANOVA and Tukey HSD (p < 0.05). Results. HA-MEL_[nHAp-GSE] showed the highest SMHR (66.2%), followed by MEL_[nHAp-GSE] (53.5%) and HA_[nHAp-GSE] (45.0%). [nHAp-GSE] showed 26.9%; controls showed 35.7% (positive) and 3.2% (negative) (p < 0.05). EDS confirmed group-specific differences in Ca/P ratios, while XRD analysis demonstrated that all formulations retained crystalline hydroxyapatite consistent with reference patterns. Conclusions. HA and MEL-enhanced formulations showpromising potential for non-fluoride-based early caries management, supported by bond structure, crystallinity, and enamel surface analysis. Further clinical studies are warranted. Clinical Relevance. This study introduces a novel, fluoride-free formulation for the non-invasive management of early carious lesions. The combination of HA acid and MEL significantly enhances remineralization, offering a biocompatible, patient-friendly, and esthetically favorable approach in preventive and restorative dentistry.en
dc.description.urihttps://doi.org/10.1088/2053-1591/ae15d5
dc.identifier.doi10.1088/2053-1591/ae15d5
dc.identifier.eissn2053-1591
dc.identifier.issue11
dc.identifier.urihttps://hdl.handle.net/20.500.14981/70852
dc.identifier.volume12
dc.identifier.wos001613351600001
dc.language.isoeng
dc.publisherIOP Publishing Ltd
dc.relation.ispartofMATERIALS RESEARCH EXPRESS
dc.rightsopenAccess
dc.subjectremineralization
dc.subjectnano-hydroxyapatite
dc.subjectgrape seed extract
dc.subjecthyaluronic acid
dc.subjectmelatonin
dc.subjectFLUORIDE
dc.subjectLESIONS
dc.subjectCARIES
dc.subjectDEMINERALIZATION
dc.subjectDIFFERENTIATION
dc.subjectPROLIFERATION
dc.subjectEFFICACY
dc.subjectMaterials Science
dc.titleA multi-component bioactive formulation involving hyaluronic acid and melatonin combined with nano-hydroxyapatite and grape seed extract for enamel remineralization: an in vitro assessment
dc.typeArticle
dspace.entity.typePublication
local.import.sourceWOS

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