Author:
Jalloul Darin,Al Abdullah Jamal,Alaffif Hesham
Abstract
Background:Attention was paid to the chemical properties of bioactive materials, and the reaction that could occur on their surface.Objective:The evaluation of the chemical properties includes the solubility, water sorption, pH changes and calcium release of two dental materials (BD and GIC). In addition, the morphological structure of each material was studied after its immersion in two different solutions,i.e.deionized water and phosphate solution.Methods:The chemical study was carried out for two sets of samples; 28 samples of each material. Samples were immersed in 10 mL of deionized water and stored at 37 °C for different times. The morphological structure and elemental analysis of BD and GIC samples were studied after immersion in the two solutions for 1, 7, 14 and 28 days.Results:Solubility of BD increased with time reaching a maximum value after 60 days (13.63 ± 2.08%). The solubility of GIC was negatively correlated with time, with a maximum value of 4.11 ± 0.47% for 3 h. The released Ca+2ions varied between 1.0 ± 0.3 mg (3 h) and 5.3 ± 0.8 mg (60 days) for BD. However, calcium was not detected in the GIC samples. The formation of calcium hydroxy-fluorapatites and strontium-fluoro-alumino-silicate, on the surface of BD and GIC, respectively, was clarified for the first time in this study.Conclusion:A comparative study was carried out revealing the difference in the chemical properties and the morphological structure between the two studied materials. The results confirmed the biointeractivity and the bioactivity of BD and GIC.
Publisher
Bentham Science Publishers Ltd.
Reference33 articles.
1. Kouzmanova Y, Dimitrova I, Gentscheva G, Aleksandrov L, Markova-Velichkova M, Kovacheva D. Comparative study of the phase formation and interaction with water of calcium-silicate cements with dental applications. Izv Him 2015; 47 : 239-44.
2. Moreno-Vargas YA, Luna-Arias JP, Flores-Flores JO, Orozco E, Bucio L. Hydration reactions and physicochemical properties in a novel tricalcium-dicalcium silicate-based cement containing hydroxyapatite nanoparticles and calcite: A comparative study. Ceram Int 2017; 43 (16) : 13290-8.
3. Ashofteh Yazdi K, Ghabraei S, Bolhari B, et al. Microstructure and chemical analysis of four calcium silicate-based cements in different environmental conditions. Clin Oral Investig 2018; 1-10.
4. Loison-Robert LS, Tassin M, Bonte E, et al. In vitro effects of two silicate-based materials, Biodentine and BioRoot RCS, on dental pulp stem cells in models of reactionary and reparative dentinogenesis. PLoS One 2018; 13 (1) : e0190014.
5. Omrani LR, Sabouri P, Abbasi M, Ahmadi E, Ghavam M. Shear bond strength of two types of glass ionomer to bleached dentin: Effect of delayed bonding and antioxidant agent. Open Dent J 2016; 10 : 720-7.
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