Visible light cure characteristics of a cycloaliphatic polyester dimethacrylate alternative oligomer to bisGMA.

Acta Biomaterialia Odontologica Scandinavica Pub Date : 2015-09-18 eCollection Date: 2015-12-01 DOI:10.3109/23337931.2015.1085806
Tritala K Vaidyanathan, Jayalakshmi Vaidyanathan
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引用次数: 3

Abstract

Objective: The goal of this study was to characterize the light curing characteristics of a new oligomer PEM-665 designed to be used as an alternative monomer to BisGMA. Materials and methods: PEM-665 (P) and BisGMA (B) solutions were prepared with triethylene glycol dimethacrylate (T) diluent in different weight proportions (70/30 and 50/50). Solutions containing 70% P and 30% T were designated as 70PT, 70%B and 30%T as 70BT, 50%P and 50%T as 50PT and 50%B and 50%T as 50BT. The initiators were CQ (EDMAB was used as amine accelerator for CQ) and DPO in 1% concentration. Eight solutions were prepared in a factorial design: 70PT/DPO; 70PT/CQ; 50PT/DPO; 50PT/CQ; 70BT/DPO; 70BT/CQ; 50BT/DPO; 50BT/CQ. BISCO VIP visible light was used to cure the monomer solutions using 30 s exposure time and 400 W power setting. TA Instruments Differential Scanning Calorimeter (DSC 2910) was used to determine the heat of cure (J/g) during polymerization at 37 °C, from which molar heat of cure (kJ/mole) and %Conversion values were estimated. Results: Range of mean values as a function monomer selections were: heat of cure (J/g): 161.7 for 70PT/DPO system to 198.6 for 50BT/CQ system; molar heat of cure (kJ/mole): 67.3 for 70BT/DPO to 78.86 for 50PT/CQ; % conversion: 59.9 for 70BT/DPO to 70.3 for 50PT/CQ. Analysis of variance and Tukey HSD pairwise contrast showed statistically significant differences between % conversion means of PEM and BisGMA mixtures, with PEM mixtures showing significantly higher mean values. Conclusions: The results suggest that PEM-665 is a promising candidate material for dental polymer applications.

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一种环脂肪族聚酯二甲基丙烯酸酯替代bisGMA的低聚物的可见光固化特性。
目的:本研究的目的是表征一种新型低聚物PEM-665的光固化特性,该低聚物被设计用作BisGMA的替代单体。材料与方法:以三甘醇二甲基丙烯酸酯(T)稀释液按不同重量比例(70/30和50/50)制备PEM-665 (P)和BisGMA (B)溶液。将含有70% P和30%T的溶液称为70PT,将含有70% b和30%T的溶液称为70BT,将含有50%P和50%T的溶液称为50PT,将含有50%B和50%T的溶液称为50BT。引发剂为CQ(以EDMAB为CQ的胺促进剂)和1%浓度的DPO。在析因设计中配制了8种溶液:70PT/DPO;70 pt / CQ;50 pt / DPO;50 pt / CQ;70年bt / DPO;70年bt / CQ;50 bt / DPO;50 bt / CQ。采用BISCO VIP可见光固化单体溶液,曝光时间30s,功率设置400w。采用TA Instruments差示扫描量热仪(DSC 2910)测定了37℃聚合时的固化热(J/g),由此估计了摩尔固化热(kJ/mol)和%转化率值。结果:作为功能单体选择的平均值范围为:固化热(J/g): 70PT/DPO体系为161.7 ~ 50BT/CQ体系为198.6;摩尔固化热(kJ/mol): 70BT/DPO为67.3 ~ 50PT/CQ为78.86;转化率:70BT/DPO为59.9,50PT/CQ为70.3。方差分析和Tukey HSD两两对比显示,PEM和BisGMA混合物的%转换平均值差异有统计学意义,PEM混合物的平均值明显更高。结论:PEM-665是一种很有前途的牙科高分子材料。
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