Ge Xueping, Ye Qiang, Song Linyong, Misra Anil, Spencer Paulette
Bioengineering Research Center, School of Engineering, University of Kansas, Lawrence, KS, USA.
Bioengineering Research Center, School of Engineering, University of Kansas, Lawrence, KS, USA.
Dent Mater. 2014 Sep;30(9):1073-87. doi: 10.1016/j.dental.2014.06.004. Epub 2014 Jun 30.
The objectives of this study were to synthesize two new siloxane-methacrylate (SM) monomers for application in dentin adhesives and to investigate the influence of different functionality of the siloxane-containing monomers on the adhesive photopolymerization, water sorption, and mechanical properties.
Two siloxane-methacrylate monomers (SM1 and SM2) with four and eight methacrylate groups were synthesized. Dentin adhesives containing BisGMA, HEMA and the siloxane-methacrylate monomers were photo-polymerized. The experimental adhesives were compared with the control adhesive (HEMA/BisGMA, 45/55, w/w) and characterized with regard to degree of conversion (DC), water miscibility of the liquid resin, water sorption and dynamic mechanical analysis (DMA).
The experimental adhesives exhibited improved water miscibility as compared to the control. When cured in the presence of 12 wt% water to simulate the wet environment of the mouth, the SM-containing adhesives showed DC comparable to the control. The experimental adhesives showed higher rubbery modulus than the control under dry conditions. Under wet conditions, the mechanical properties of the formulations containing SM monomer with increased functionality were comparable with the control, even with more water sorption.
The concentration and functionality of the newly synthesized siloxane-methacrylate monomers affected the water miscibility, water sorption and mechanical properties of the adhesives. The experimental adhesives show improved water compatibility compared with the control. The mechanical properties were enhanced with an increase of the functionality of the siloxane-containing monomers. The results provide critical structure/property relationships and important information for future development of durable, versatile siloxane-containing dentin adhesives.
本研究的目的是合成两种新型硅氧烷 - 甲基丙烯酸酯(SM)单体用于牙本质粘合剂,并研究含硅氧烷单体的不同官能度对粘合剂光聚合、吸水性和机械性能的影响。
合成了具有四个和八个甲基丙烯酸酯基团的两种硅氧烷 - 甲基丙烯酸酯单体(SM1和SM2)。含有双酚A - 甲基丙烯酸缩水甘油酯(BisGMA)、甲基丙烯酸羟乙酯(HEMA)和硅氧烷 - 甲基丙烯酸酯单体的牙本质粘合剂进行光聚合。将实验粘合剂与对照粘合剂(HEMA/BisGMA,45/55,w/w)进行比较,并就转化率(DC)、液体树脂的水混溶性、吸水性和动态力学分析(DMA)进行表征。
与对照相比,实验粘合剂表现出改善的水混溶性。当在12 wt%水存在下固化以模拟口腔的潮湿环境时,含SM的粘合剂显示出与对照相当的DC。在干燥条件下,实验粘合剂显示出比对照更高的橡胶态模量。在潮湿条件下,即使吸水性更高,含官能度增加的SM单体的配方的机械性能与对照相当。
新合成的硅氧烷 - 甲基丙烯酸酯单体的浓度和官能度影响粘合剂的水混溶性、吸水性和机械性能。与对照相比,实验粘合剂显示出改善的水相容性。含硅氧烷单体官能度的增加增强了机械性能。这些结果为耐用、通用的含硅氧烷牙本质粘合剂的未来开发提供了关键的结构/性能关系和重要信息。