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Effect of ethyl-α-hydroxymethylacrylate on selected properties of copolymers and ACP resin composites

机译:α-羟甲基丙烯酸乙酯对共聚物和ACP树脂复合材料选择性能的影响

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摘要

There is an increased interest in the development of bioactive polymeric dental composites and related materials that have potential for mineralized tissue regeneration and preservation. This study explores how the substitution of ethyl α-hydroxymethylacryate (EHMA) for 2-hydroxyethyl methacrylate (HEMA) in photo-activated 2,2-bis[p-(2'-hydroxy-3'-methacryloxypropoxy)phenyl]propane (Bis-GMA) and Bis-GMA/tri(ethylene glycol) dimethacrylate (TEGDMA) resins affected selected physicochemical properties of the polymers and their amorphous calcium phosphate (ACP) composites. Rate of polymerization and the degree of conversion (DC) of polymers {EHMA (E), HEMA (H), Bis-GMA/EHMA (BE), Bis-GMA/HEMA (BH), Bis-GMA/TEGDMA/EHMA (BTE) and Bis-GMA/TEGDMA/HEMA (BTH)} were assessed by photo-differential scanning calorimetry and Fourier-Transform Infrared (FTIR) spectroscopy. ACP/BTE and ACP/BTH composites were evaluated for DC, biaxial flexure strength (BFS), water sorption (WS) and mineral ion release. Mid-FTIR and near-IR measurements revealed the following order of decreasing DC: [E, H polymers (97.0 %)] > [BE copolymer (89.9 %)] > [BH copolymer (86.2 %)] > [BTE, BTH copolymers (85.5 %)] > [ACP/BTH composite (82.6 %)] > [ACP/BTE composite (79.3 %)]. Compared to HEMA, EHMA did not adversely affect the BFS of its copolymers and/or ACP composites. Lower WS of BTE copolymers and composites (28 % and 14 %, respectively, compared to the BTH copolymers and composites) only marginal reduced the ion release from ACP/BTE composites compared to ACP/BTH composites. More hydrophobic ACP composites with acceptable ion-releasing properties were developed by substituting the less hydrophilic EHMA for HEMA.
机译:对具有矿化组织再生和保存潜力的生物活性聚合物牙科复合材料和相关材料的开发越来越感兴趣。这项研究探索了如何在光活化的2,2-双[p-(2'-羟基-3'-甲基丙烯酰氧基丙氧基)苯基]丙烷(Bis)中用α-羟甲基丙烯酸乙酯(EHMA)取代甲基丙烯酸2-羟乙酯(HEMA) -GMA)和Bis-GMA /三(乙二醇)二甲基丙烯酸酯(TEGDMA)树脂会影响聚合物及其无定形磷酸钙(ACP)复合材料的选定物理化学性能。聚合速率和聚合物的转化率(DC){EHMA(E),HEMA(H),Bis-GMA / EHMA(BE),Bis-GMA / HEMA(BH),Bis-GMA / TEGDMA / EHMA( BTE)和Bis-GMA / TEGDMA / HEMA(BTH)}通过光差扫描量热法和傅里叶变换红外(FTIR)光谱进行了评估。对ACP / BTE和ACP / BTH复合材料的DC,双轴弯曲强度(BFS),吸水率(WS)和矿物质离子释放进行了评估。中等FTIR和近红外测量显示出DC降低的顺序如下:[E,H聚合物(97.0%)]> [BE共聚物(89.9%)]> [BH共聚物(86.2%)]> [BTE,BTH共聚物(85.5%)]> [ACP / BTH复合材料(82.6%)]> [ACP / BTE复合材料(79.3%)]。与HEMA相比,EHMA不会对其共聚物和/或ACP复合材料的BFS产生不利影响。 BTE共聚物和复合材料的较低WS(与BTH共聚物和复合材料相比分别为28%和14%)与ACP / BTH复合材料相比仅略微减少了ACP / BTE复合材料的离子释放。通过用亲水性较低的EHMA代替HEMA,开发出具有可接受的离子释放性能的疏水性ACP复合材料。

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