Physicochemical characterization of experimental resin-based materials containing calcium orthophosphates or calcium silicate.

Marina D S Chiari, Roberto R Braga, Mariana C A Resende, Handially S Vilela, Rafael B Trinca, Flávia R O Silva

Journal: Dental materials : official publication of the Academy of Dental Materials 2024;40(10):1507-1514

PMID: 39048463

Abstract

OBJECTIVE

To evaluate experimental dimethacrylate-based materials containing calcium orthophosphates or calcium silicate particles in terms of their optical, mechanical and Ca release behaviour.

METHODS

Dicalcium phosphate dihydrate (DCPD), hydroxyapatite (HAp), beta-tricalcium phosphate (β-TCP) or calcium silicate (CaSi) particles were added to a photocurable BisGMA/TEGDMA resin (1:1 in mols) at a 30 vol% fraction. Materials containing silanized or non-silanized barium glass particles were used as controls. Degree of conversion (DC) at the top and base of 2-mm thick specimens was determined by ATR-FTIR spectroscopy (n = 5). Translucency parameter (TP) and transmittance (%T) were determined using a spectrophotometer (n = 3). Biaxial flexural strength (BFS) and flexural modulus (FM) were determined by biaxial flexural testing after 24 h storage in water (n = 10). Ca release in water was determined during 28 days by inductively coupled plasma optical emission spectrometry (n = 3). Statistical analysis was performed using ANOVA/Tukey test (DC: two-way; TP, %T; BFS and FM: one-way; Ca release: repeated measures two-way, α = 5 %).

RESULTS

CaSi and β-TCP particles drastically reduced DC at 2 mm, TP and %T (p < 0.001). Compared to both controls, all Ca-releasing materials presented lower BFS (p < 0.001) and only the material with DCPD showed significantly lower FM (p < 0.05). The material containing CaSi presented the highest Ca release, while among materials formulated with calcium orthophosphates the use of DCPD resulted in the highest release (p < 0.001).

SIGNIFICANCE

CaSi particles allowed the highest Ca release. Notwithstanding, the use of DCPD resulted in a material with the best compromise between optical behaviour, DC, strength and Ca release.

Copyright © 2024 Elsevier Inc. All rights reserved.

Address: Department of Biomaterials and Oral Biology, School of Dentistry, University of São Paulo, São Paulo, Brazil.; Institute of Energy and Nuclear Research, University of São Paulo, São Paulo, Brazil.; Department of Biomaterials and Oral Biology, School of Dentistry, University of São Paulo, São Paulo, Brazil. Electronic address: [email protected].
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