首页> 外文期刊>Journal of Bioactive and Compatible Polymers >Matrix Resin Effects on Selected Physicochemical Properties of Amorphous Calcium Phosphate Composites
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Matrix Resin Effects on Selected Physicochemical Properties of Amorphous Calcium Phosphate Composites

机译:基质树脂对非晶态磷酸钙复合材料某些理化特性的影响

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Amorphous calcium phosphate(ACP)-filled bioactive composites show promise in a number of dental applications.This study focused on polymer-filler bonding as a way to improve physicochemical properties of these composites.Photoactivated resins were formulated from ethoxylated bisphenol A dimethacrylate(EBPADMA),triethylene glycol dimethacrylate(TEGDMA),2-hydroxyethyl methacrylate(HEMA)and methacryloxyethyl phthalate(MEP)with four different EBPADMA/TEGDMA mass ratios(1.0,0.67,0.5 and 0.25)and a constant HEMA/MEP mass ratio of 2.0.Composites were prepared with the zirconia-ACP(mass fraction 40%).Composites and copolymers were evaluated for their biaxial flexure strength(BFS),degree of vinyl conversion(DC)and water sorption(WS).Composites were also assessed for mineral ion release and polymerization shrinkage(PS).Independent of resin composition,the average BFS was 130(+-)24MPa for both the dry and aqueous-immersed copolymers,but was 70(+-)UMPa for the dry composites and 47(+-)7MPa for the wet composites.The average DC of all of the composites was 84(+-)5% and showed little dependence on resin composition.The WS of both copolymers and composites was 3.2(+-)0.6% with resin composition being a factor in only one formulation EBPADMA/TEGDMA 0.67.Overall ion release was significantly above the theoretical minimum necessary for remineralization.However,Ca ion levels were lower than that observed previously for similar composites based on resins without MEP.This is most likely due to their binding with the carboxylic acid groups of MEP.Since the DC of the copoly-mers and the PS of the composites both increased with decreasing EBPADMA/TEGDMA ratio in the resin,elevating the EBPADMA/TEGDMA ratio in the resin seems to be an obvious way to improve the PS of composites without adversely affecting the BFS,WS and/or ion release,while only marginally reducing the DC.
机译:填充无定形磷酸钙(ACP)的生物活性复合材料在许多牙科应用中显示出广阔的前景。本研究专注于聚合物-填充剂键合,以改善这些复合物的理化性能。光活化树脂由乙氧基化双酚A二甲基丙烯酸酯(EBPADMA)配制而成,具有四个不同EBPADMA / TEGDMA质量比(1.0、0.67、0.5和0.25),恒定HEMA / MEP质量比为2.0的三甲基丙烯酸二乙二醇酯(TEGDMA),甲基丙烯酸2-羟乙酯(HEMA)和邻苯二甲酸甲基丙烯酰氧基乙基邻苯二甲酸酯(MEP)。用质量分数为40%的氧化锆ACP制备复合材料和共聚物,评估其双轴弯曲强度(BFS),乙烯基转化率(DC)和吸水率(WS),并评估复合物的矿物离子释放与树脂组成无关,干共聚物和水浸共聚物的平均BFS为130(+-)24MPa,而干复合材料的平均BFS为70(+-)UMPa和47(+-) 7MPa湿复合材料。所有复合材料的平均DC为84(±)5%,对树脂成分的依赖性很小。共聚物和复合材料的WS均为3.2(±)0.6%,其中树脂成分仅是一个因素一种配方EBPADMA / TEGDMA 0.67。总离子释放量明显高于再矿化所需的理论最小值。但是,Ca离子含量低于以前基于无MEP树脂的类似复合材料观察到的钙离子含量,这很可能是由于它们与由于共聚聚合物的DC和复合材料的PS均随树脂中EBPADMA / TEGDMA比的降低而增加,因此提高树脂中EBPADMA / TEGDMA的比似乎是改善树脂的明显方法。复合材料的PS不会对BFS,WS和/或离子释放产生不利影响,而仅会稍微降低DC。

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