Effects of Composites Containing Bioactive Glasses on Demineralized Dentin

Author:

Tezvergil-Mutluay A.1,Seseogullari-Dirihan R.1,Feitosa V.P.2,Cama G.3,Brauer D.S.4,Sauro S.56

Affiliation:

1. Department of Restorative Dentistry and Cariology, Institute of Dentistry, University of Turku, Turku, Finland, and Turku University Hospital, TYKS, Turku, Finland​

2. Research Division, Paulo Picanço School of Dentistry, Fortaleza, Brazil

3. Polymer Chemistry & Biomaterials Group, University of Ghent, Ghent, Belgium

4. Otto Schott Institute of Materials Research, Friedrich Schiller University Jena, Jena, Germany

5. Dental Biomaterials, Departamento de Odontología, Facultad de Ciencias de la Salud, University CEU-Cardenal Herrera, Valencia, Spain

6. Biomaterials, Biophotonics and Tissue Engineering, King’s College London Dental Institute (KCLDI), London, UK

Abstract

The aim of this study was to evaluate the degradation of completely demineralized dentin specimens in contact with a filler-free or 2 ion-releasing resins containing micrometer-sized particles of Bioglass 45S5 (BAG) or fluoride-containing phosphate-rich bioactive glass (BAG-F). Fourier transform infrared spectroscopy (FTIR) and scanning electron microscopy (SEM) were also used to evaluate the remineralization induced by the experimental ion-releasing resin-based materials. Dentin beams were totally demineralized in H3PO4 (10%) and placed in direct contact with a filler-free (RESIN) or 2 experimental ion-releasing resins (BAG or BAG-F) and immersed in artificial saliva (AS) up to 30 d. Further specimens were also processed and submitted to FTIR and SEM analysis to evaluate the remineralization induced by such ion-releasing resins before and after AS immersion. BAG and BAG-F alkalinized the incubation media. A significant decrease of the dry mass was observed between the specimens of all groups stored for 3 and 30 d in AS. However, the fluoride-containing phosphate-rich bioactive glass incorporated into a resin-based material (BAG-F) showed greater ability in reducing the solubilization of C-terminal cross-linked telopeptide (ICTP) and C-terminal telopeptide (CTX) after prolonged AS storage. Moreover, after 30 d of AS storage, BAG-F showed the greatest remineralizing effect on the stiffness of the completely demineralized dentin matrices. In conclusion, fluoride-containing phosphate-rich bioactive glass incorporated as micrometer-sized filler in dental composites may offer greater beneficial effects than Bioglass 45S5 in reducing the enzyme-mediated degradation and remineralization of demineralized dentin.

Publisher

SAGE Publications

Subject

General Dentistry

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