Chemistry Department, College of Science, King Saud University, P.O. Box 2455, Riyadh 11451, Saudi Arabia.
Maxillofacial Surgery Department, College of Dentistry, King Saud University, Riyadh 11545, Saudi Arabia.
Dent Mater. 2019 Nov;35(11):1532-1544. doi: 10.1016/j.dental.2019.07.013. Epub 2019 Aug 14.
The currently available commercial dental resin composites have limitations in use owing to the high viscosity and water sorption of Bisphenol A glycidyl methacrylate (BisGMA). The objective of this study was to obtain a BisGMA analog with reduced viscosity and hydrophilicity for potential use as an alternative to BisGMA in dental resin composites.
The targeted chlorinated BisGMA (Cl-BisGMA) monomer was synthesized via the Appel reaction. The structural modification was confirmed via H- and C nuclear magnetic resonance spectroscopy, Fourier transform infrared spectroscopy, and mass spectrometry. Five resin mixtures (70:30wt.%: F1=BisGMA/TEGDMA; F2=Cl-BisGMA/TEGDMA; F3=Cl-BisGMA only; F4=Cl-BisGMA/BisGMA; F5 contained 15% TEGDMA with equal amounts of BisGMA and Cl-BisGMA) were prepared. The viscosity, degree of double-bond conversion (DC), water sorption (W), and solubility (W) were tested. Cell viability and live/dead assays, as well as cell attachment and morphology assessments, were applied for cytotoxicity evaluation.
Cl-BisGMA was successfully synthesized with the viscosity reduced to 7.22 (Pas) compared to BisGMA (909.93,Pas). Interestingly, the DC of the F2 resin was the highest (70.6%). By the addition of equivalence concentration of Cl-BisGMA instead of BisGMA, the W was decreased from 2.95% (F1) to 0.41% (F2) with no significant change in W. However, the W increased with high Cl-BisGMA content. Biological tests revealed that all the resins were biocompatible during CL1 incubation.
The experimental resins based on Cl-BisGMA exhibited improved properties compared with the control samples, e.g., biocompatibility and lower viscosity, indicating that Cl-BisGMA can be considered as a potential monomer for application in dental resin composites.
由于双酚 A 缩水甘油甲基丙烯酸酯 (BisGMA) 的高粘度和吸水性,目前可用的商业牙科树脂复合材料在使用上存在局限性。本研究的目的是获得一种粘度和亲水性降低的 BisGMA 类似物,作为牙科树脂复合材料中 BisGMA 的替代品。
通过 Appel 反应合成目标氯代 BisGMA (Cl-BisGMA) 单体。通过 H 和 C 核磁共振波谱、傅里叶变换红外光谱和质谱对结构修饰进行了确认。制备了 5 种树脂混合物(70:30wt.%:F1=BisGMA/TEGDMA;F2=Cl-BisGMA/TEGDMA;F3=Cl-BisGMA 仅;F4=Cl-BisGMA/BisGMA;F5 含有 15%TEGDMA,BisGMA 和 Cl-BisGMA 的含量相等)。测试了粘度、双键转化率(DC)、吸水率(W)和溶解度(W)。应用细胞活力和死活测定以及细胞附着和形态评估进行细胞毒性评估。
成功合成了粘度降低至 7.22(Pas)的 Cl-BisGMA,与 BisGMA(909.93,Pas)相比。有趣的是,F2 树脂的 DC 最高(70.6%)。通过添加当量浓度的 Cl-BisGMA 代替 BisGMA,吸水率从 2.95%(F1)降低至 0.41%(F2),而 W 没有明显变化。然而,随着 Cl-BisGMA 含量的增加,W 增加。生物测试表明,在 CL1 孵育期间,所有树脂均具有生物相容性。
与对照样品相比,基于 Cl-BisGMA 的实验性树脂表现出改善的性能,例如生物相容性和较低的粘度,表明 Cl-BisGMA 可被视为牙科树脂复合材料应用的潜在单体。