Compositional boundaries for functional dental composites containing calcium orthophosphate particles.
biomechanical · Level V
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- Record sourced from PubMed, PMID 37302206.
- Also identified by DOI 10.1016/j.jmbbm.2023.105928 and PMC identifier 10330647.
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Abstract
To investigate the interrelationships among handling, degree of conversion (DC), mechanical behavior and Ca<sup>2+</sup> release of composites containing dicalcium phosphate dihydrate (DCPD, CaHPO<sub>4</sub>.2H<sub>2</sub>O), as a function of total inorganic content and DCPD: glass ratio. Twenty-one formulations (1 BisGMA: 1 TEGDMA, in mols) with inorganic fractions ranging from zero to 50 vol% and different DCPD: glass ratios were evaluated for viscosity (parallel plate rheometer, n = 3), DC (near-FTIR spectroscopy, n = 3), fracture toughness/K<sub>1C</sub> (single-edge notched beam, n = 7-11) and 14-day Ca<sup>2+</sup> release (inductively coupled plasma optical emission spectroscopy, n = 3). Data were analyzed by ANOVA/Tukey test (except viscosity, where Kruskal-Wallis/Dunn tests were used, α: 0.05). Viscosity and DC increased with DCPD: glass ratio among composites with the same inorganic content (p < 0.001). At inorganic fractions of 40 vol% and 50 vol%, keeping DCPD content at a maximum of 30 vol% did not compromise K<sub>1C</sub>. Ca<sup>2+</sup> release showed an exponential relationship with DCPD mass fraction in the formulation (R<sup>2</sup> = 0.986). After 14 days, a maximum of 3.8% of the Ca<sup>2+</sup> mass in the specimen was released. Formulations containing 30 vol% DCPD and 10-20 vol% glass represent the best compromise between viscosity, K<sub>1C</sub> and Ca<sup>2+</sup> release. Materials with 40 vol% DCPD should not be disregarded, bearing in mind that Ca<sup>2+</sup> release will be maximized at the expense of K<sub>1C.</sub>
Medical subject headings
- Calcium
- Phosphates