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Evaluation of the Degree of Conversion Residual Monomers and Mechanical Properties of Some Light-Cured Dental Resin Composites

机译:某些光固化牙科树脂复合材料的转化度残留单体和力学性能的评估

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摘要

The novelty of this study consists in the formulation and characterization of three experimental dental composites (PM, P14M, P2S) for cervical dental lesion restoration compared to the commercial composites Enamel plus HRi® - En (Micerium S.p.A, Avengo, Ge, Italy), G-ænial Anterior® - Ge, (GC Europe N.V., Leuven, Belgium), Charisma® - Ch (Heraeus Kulzer, Berkshire, UK). The physio-chemical properties were studied, like the degree of conversion and the residual monomers in cured samples using FTIR-ATR (attenuated total reflectance) and HPLC-UV (ultraviolet detection), as well as the evaluation of the mechanical properties of the materials. The null hypothesis was that there would be no differences between experimental and commercial resin composites regarding the evaluated parameters. Statistical analysis revealed that water and saliva storage induced significant modifications of all mechanical parameters after three months for all tested materials, except for a few comparisons for each type of material. Storage medium seemed not to alter the values of mechanical parameters in comparison with the initial ones for: diametral tensile strength (DTS-saliva for Ge and PM, compressive strength (CS)-water for Ch, DTS-water and Young’s modulus YM-saliva for P14M and YM-water/ saliva for P2S (p > 0.05). Two of the experimental materials showed less than 1% residual monomers, which sustains good polymerization efficiency. Experimental resin composites have good mechanical properties, which makes them recommendable for the successful use in load-bearing surfaces of posterior teeth.
机译:这项研究的新颖之处在于,与用于商业用途的Enamel plusHRi®-En复合材料(Micerium SpA,Avengo,Ge,意大利)相比,三种用于宫颈损伤修复的实验性复合材料(PM,P14M,P2S)的配方和表征, G-ænialAnterior®-Ge(GC Europe NV,比利时鲁汶,比利时),Charisma®-Ch(Heraeus Kulzer,英国伯克希尔,英国)。使用FTIR-ATR(衰减的全反射率)和HPLC-UV(紫外检测)研究了物理化学性质,例如转化率和固化样品中的残留单体,并评估了材料的机械性能。零假设是在实验参数和商业树脂复合材料之间就评估参数而言没有差异。统计分析表明,除了每种类型材料的一些比较之外,所有测试材料在三个月后,水和唾液的储存均引起所有机械参数的显着改变。与初始值相比,存储介质似乎不会改变机械参数的值:径向拉伸强度(Ge和PM的DTS-唾液,Ch的抗压强度(CS)-水,Ch的DTS-水和杨氏模量YM-唾液用于P14M和YM-水/唾液用于P2S(p> 0.05)。两种实验材料显示残留单体少于1%,保持了良好的聚合效率。实验树脂复合材料具有良好的机械性能,因此推荐用于成功用于后牙的承重表面。

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