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添加新单体“Phene”对牙科树脂复合材料聚合收缩减少的影响。

The effect of adding a new monomer "Phene" on the polymerization shrinkage reduction of a dental resin composite.

机构信息

Department of Biomaterials Science and Turku Clinical Biomaterials Center - TCBC, Institute of Dentistry, University of Turku, Turku, Finland; College of Materials Science and Engineering, South China University of Technology, Guangzhou, China.

Department of Biomaterials Science and Turku Clinical Biomaterials Center - TCBC, Institute of Dentistry, University of Turku, Turku, Finland.

出版信息

Dent Mater. 2019 Apr;35(4):627-635. doi: 10.1016/j.dental.2019.02.006. Epub 2019 Feb 21.

Abstract

OBJECTIVE

A new photocurable monomer, "Phene" (N-methyl-bis(ethyl-carbamate-isoproply-α-methylstyryl)amine) was synthesized and incorporated into Bis-GMA/TEGDMA with the aim of reducing polymerization shrinkage swithout detriment to the physical properties and wearing of the resin composites.

METHODS

Phene was synthesized through a 2-step reaction route, and its structure was confirmed by FT-IR and H-NMR spectra. Phene was incorporated into Bis-GMA/TEGDMA (50/50, wt/wt) with a series of mass fraction (from 0 wt% to 40 wt%). Experimental resin composites were prepared by mixing 29 wt% of resin matrix to 71 wt% of particulate-fillers. Degree of conversion (DC) was determined by FT-IR analysis. The volumetric shrinkage (VS) was calculated as a buoyancy change in distilled water by means of the Archimedes principle. Polymerization shrinkage-stress (SS) was measured using the tensilometer technique. The flexural strength (FS), modulus (FM), and fracture toughness (FT) were measured using a three-point bending setup. A wear test was conducted with 15000 cycles using a dual-axis chewing simulator. Wear depth was measured by a three-dimensional (3D) non-contact optical-profilometer.

RESULTS

ANOVA analysis showed that when mass fraction of Phene in resin matrix was more than 10 wt%, the obtained resin composite formulation had lower DC, VS and SS than control resin composite (p < 0.05). In general, the experimental resin composites had comparable FS and FM (p > 0.05) when the mass fraction of Phene in resin matrix was not more than 20 wt %. Resin composite with 20 wt% Phene had the lowest wear depth and fracture toughness values.

SIGNIFICANCE

The overall tested properties prove that including Phene up to 20 wt% into Bis-GMA/TEGDMA resin could be potentially useful in the formulation of low-shrinkage resin composites.

摘要

目的

合成了一种新型可光固化单体“Phene”(N-甲基-双(乙基-氨基甲酸乙酯-异丙基-α-甲基苯乙烯基)胺),并将其掺入 Bis-GMA/TEGDMA 中,目的是在不损害树脂复合材料物理性能和耐磨性的情况下降低聚合收缩率。

方法

通过两步反应路线合成了 Phene,并通过 FT-IR 和 H-NMR 光谱确认其结构。将 Phene 以一系列质量分数(0wt%至 40wt%)掺入 Bis-GMA/TEGDMA(50/50,wt/wt)中。通过混合 29wt%的树脂基质和 71wt%的颗粒填料来制备实验性树脂复合材料。通过 FT-IR 分析确定转化率(DC)。通过阿基米德原理测量在蒸馏水中的浮力变化来计算体积收缩(VS)。使用拉伸仪技术测量聚合收缩应力(SS)。使用三点弯曲装置测量弯曲强度(FS)、模量(FM)和断裂韧性(FT)。使用双轴咀嚼模拟器进行 15000 次循环的磨损试验。通过三维(3D)非接触式光学轮廓仪测量磨损深度。

结果

方差分析表明,当 Phene 在树脂基质中的质量分数超过 10wt%时,所得树脂复合材料配方的 DC、VS 和 SS 低于对照树脂复合材料(p<0.05)。一般来说,当 Phene 在树脂基质中的质量分数不超过 20wt%时,实验性树脂复合材料具有相当的 FS 和 FM(p>0.05)。含有 20wt%Phene 的树脂复合材料具有最低的磨损深度和断裂韧性值。

意义

总体测试性能证明,将 Phene 掺入 Bis-GMA/TEGDMA 树脂中高达 20wt%可能有助于配制低收缩树脂复合材料。

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