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首页> 外文期刊>International Journal of Adhesion & Adhesives >Bonding ability of experimental resin-based materials containing (ion-releasing)-microfillers applied on water-wet or ethanol-wet root canal dentine
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Bonding ability of experimental resin-based materials containing (ion-releasing)-microfillers applied on water-wet or ethanol-wet root canal dentine

机译:含(离子释放)微填料的实验性树脂基材料在水湿或乙醇湿的根管牙本质上的粘结能力

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The objective of this study was to evaluate the bonding performance of model resin-based adhesives doped with bioactive glass or calcium-silicate modified dicalcium-phosphatedihydrate microfillers to root canal wet-dentine with water or ethanol. The experimental resin was prepared by using urethane-dimethacrylate (UDMA), triethylene-glycol-dimethacrylate (TEGDMA) and hydroxyethyl-methacrylate (HEMA). This resin blend was mixed with 50 wt% ethanol to create the experimental primers. Bioactive glass 45S5 (BAG) or calcium-silicate modified dicalcium-phosphate dihydrate (DCPD) microfillers were mixed at 40 wt% to the blend. The bonding performance to root canal was assessed by push-out bond strength, SEM analysis of fractures, and interfacial confocal microscopy after filling the canals with the core composite Bis-Core (Bisco). Three-way ANOVA (bonding technique, adhesive resin and dentine area) and Student-Newman-Keuls post-hoc were used to statistically compare the results (a=5%). Filler-free adhesive applied on water-wet dentine showed lower bond strength than the same resin applied on ethanol-wet dentine (p<0.05). Only the former group showed predominantly adhesive fractures whereas all other treatments led mostly to mixed failures. The presence of both fillers did not influence the push-out bond strength using ethanol-wet approach (p >0.05) but did improve using the water-wet strategy. BAG and DCPD also promoted mineral deposition and tubular occlusion in the well-hybridised fractured root surfaces especially using the ethanol-wet technique. The confocal interfacial analysis showed impaired resin infiltration only using the filler-free resin on water-wet dentine. As a conclusion, bioactive glass and DCPD micro-fillers as well as the ethanol-wet bonding were able to improve the adhesion of etch-and-rinse adhesives to radicular dentine.
机译:这项研究的目的是评估掺有生物活性玻璃或硅酸钙改性的磷酸二钙二水合微填料的模型树脂基粘合剂与水或乙醇对根管湿润牙本质的粘合性能。通过使用氨基甲酸酯-二甲基丙烯酸酯(UDMA),三乙二醇-二甲基丙烯酸酯(TEGDMA)和甲基丙烯酸羟乙酯(HEMA)制备实验树脂。将该树脂共混物与50重量%的乙醇混合以产生实验底漆。将生物活性玻璃45S5(BAG)或硅酸钙改性的磷酸二钙二水合物(DCPD)微填料以40 wt%的比例混合。用核心复合材料Bis-Core(Bisco)填充牙槽后,通过推出粘结强度,裂缝的SEM分析和界面共聚焦显微镜评估对牙根管的粘结性能。三效方差分析(粘合技术,粘合树脂和牙本质面积)和Student-Newman-Keuls post-hoc用于统计学比较结果(a = 5%)。与在乙醇湿法牙本质上施用的相同树脂相比,在水湿法牙本质上施用的无填料粘合剂显示出更低的粘结强度(p <0.05)。只有前一组显示出主要的粘连性骨折,而所有其他治疗大多导致混合失败。两种填料的存在均不会影响使用乙醇湿法的推出强度(p> 0.05),但使用水湿法会有所改善。 BAG和DCPD尤其在使用乙醇湿法技术的情况下,还促进了充分混合的断裂根表面中的矿物质沉积和管状阻塞。共焦界面分析表明,仅在水润湿的牙本质上使用无填料的树脂时,树脂的渗透性就会受损。结论是,生物活性玻璃和DCPD微填充剂以及乙醇湿粘合能够改善蚀刻和冲洗粘合剂与根管性牙本质的粘合性。

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