Archive/Biomimetic Strategies for Subsurface Enamel Remineralization: Depth-Dependent Effects of Biomimetic Agents Compared with Fluoride
Biomimetic Strategies for Subsurface Enamel Remineralization: Depth-Dependent Effects of Biomimetic Agents Compared with Fluoride
İlknur Akay Dede, Suat Özcan
24 de julio de 2026
en

Abstract

This study compared the remineralization potential of three commercially available fluoride-free biomimetic formulations containing nanohydroxyapatite (nHAp), casein phosphopeptide–amorphous calcium phosphate (CPP-ACP), and bioactive glass (BAG) with a conventional 1450 ppm fluoride-containing dentifrice using cross-sectional microhardness and SEM analyses. Seventy extracted human mandibular molars were randomly allocated to five groups (n = 14). Artificial carious lesions were created by 72 h of demineralization followed by a 14-day pH-cycling regimen with twice-daily treatment applications. Cross-sectional microhardness was measured at depths of 30, 50, 100, and 150 µm, and SEM was used to evaluate morphological changes. Data were analyzed using one-way ANOVA with appropriate post hoc tests (Tukey’s HSD or Tamhane’s T2, depending on variance homogeneity) and repeated-measures ANOVA to assess depth-dependent differences among groups (α = 0.05). Demineralization significantly reduced microhardness at all depths (p < 0.05). At 30 µm, the nHAp, CPP-ACP, and fluoride formulations showed similar remineralization, whereas the BAG-containing formulation exhibited lower superficial recovery. At 100–150 µm, the nHAp formulation demonstrated the greatest recovery, followed by the CPP-ACP and BAG formulations, while the fluoride dentifrice showed progressively lower recovery. A significant depth-by-group interaction confirmed distinct depth-dependent remineralization profiles. Within the limitations of this in vitro study, all tested formulations promoted enamel remineralization but exhibited different depth-dependent recovery patterns.

IPC Classification

G06

Keywords

biomimeticstrategiessubsurfaceenamelremineralizationdepth-dependenteffectsagentscomparedfluoridebiomimeticspotentialthreecommerciallyavailablefluoride-freeformulationscontainingnanohydroxyapatitenhapcaseinphosphopeptideamorphouscalcium
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