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Novel matrix formulation for resin composite: Chemical and biomechanical characterization – Part 1.

Authors :
Silva, Julyana Dumas Santos
de Almeida, Letícia Nunes
Machado, Antônio Silva
de Torres, Érica Miranda
de Souza Gil, Eric
Gonçalves, Cristhiane
Lião, Luciano Morais
Lobón, Germán Sanz
Vaz, Boniek Gontijo
Lopes, Lawrence Gonzaga
Menegatti, Ricardo
Source :
Dental Materials. Nov2024, Vol. 40 Issue 11, pe53-e62. 10p.
Publication Year :
2024

Abstract

This study aimed to investigate the effects of adding cholesteryl methacrylate (CM) monomer to experimental composite resins and evaluate its impact on polymerization shrinkage force (PSF), Knoop microhardness (KHN), sorption and solubility (SS), vulnerability to spontaneous oxidation (VOE), porosity (BES), viscosity (V), and cross-link density (CLD). CM was synthesized, mixed with varying proportions of Bis-GMA, 70 wt% filler particles, and 40 % TEGDMA. The groups tested were: CM0 (60 % Bis-GMA), CM6 (54 % Bis-GMA/6 % CM), CM12 (48 % Bis-GMA/12 % CM), CM18 (42 % Bis-GMA/18 % CM) and CM24 (36 % Bis-GMA/24 % CM). The PSF was evaluated using a universal testing machine. KHN was measured with a 50 g load for 30 s. SS was determined according to ISO 4049:2009. VOE was measured with a three-electrode system in an electrochemical cell. BES images were obtained using an electron microscope to assess porosity. Viscosity was measured through rheological analysis. CLD was estimated from hardness readings before and after ethanol storage. CM6 (0.34 N) and CM12 (0.34 N) exhibited the lowest PSF values compared to CM0 (0.91 N). For KHN, CM6 (32.03) and CM12 (31.03) had higher values than CM0 (25.83) and were similar to CM18 (29.39) and CM24 (28.64). SS showed no significant differences among the groups. VOE indicated low vulnerability across all groups. CM12 had greater porosity compared to CM0 in BES images. CM0 had the lowest viscosity among the groups. No differences in CLD were observed among CM0, CM12, CM18, and CM24 regarding softening effects. Adding CM to Bis-GMA/TEGDMA composite resins can reduce polymerization shrinkage force and increase the initial Knoop microhardness without affecting the other properties studied. • Cholesteryl methacrylate proved to be a promising polymer for improving composites. • An endocyclic double bond can be an additional site for photochemical cycloaddition. • Its endocyclic double bond can form adducts with other monomers. • Concentrations of 6 % and 12 % of cholesteryl methacrylate promoted better performance. • Initial microhardness and polymerization shrinkage force showed improved results. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
01095641
Volume :
40
Issue :
11
Database :
Academic Search Index
Journal :
Dental Materials
Publication Type :
Academic Journal
Accession number :
180823290
Full Text :
https://doi.org/10.1016/j.dental.2024.07.032