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首页> 外文期刊>European journal of oral sciences >Analysis of differential artificial ageing of the adhesive interface produced by a two-step etch-and-rinse adhesive.
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Analysis of differential artificial ageing of the adhesive interface produced by a two-step etch-and-rinse adhesive.

机译:分析两步蚀刻和冲洗粘合剂产生的粘合剂界面的不同人工老化。

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This study was performed to evaluate the effects of different in vitro ageing techniques on the dentine-bonded interface produced by a two-step etch-and-rinse adhesive. Composite build-ups were bonded to sectioned human molars using XP BOND and cut into non-trimmed dentine-composite beams for microtensile testing. Beams were assigned to one of the following storage conditions: (i) artificial saliva, 24 h (control); (ii) 10% sodium hypochlorite (NaOCl), 1 h; (iii) 10% NaOCl, 3 h; (iv) 60,000 thermal cycles, 2 months; (v) artificial saliva, 2 months; (vi) 60,000 thermal cycles, 6 months; and (vii) artificial saliva, 6 months. Beams were then pulled until failure and bond strength was calculated. Additional specimens were examined to investigate interfacial nanoleakage expression. NaOCl solution significantly reduced bonding compared with the control (group 2 = group 3 < group 1); and thermocycling reduced the bond strength in comparison to specimens stored for the same time-period in artificial saliva (group 4 < group 5; group 6 < group 7). Artificial ageing affected bond strength only after 6 months of storage (group 7 < group 5 = group 1). Increased nanoleakage was found under all ageing conditions in comparison with controls. NaOCl solution is a rapid and reliable in vitro ageing method for examining the durability of the adhesive interface produced by two-step etch-and-rinse adhesive systems.
机译:进行这项研究是为了评估不同的体外老化技术对由两步蚀刻和冲洗粘合剂产生的牙本质粘结界面的影响。使用XP BOND将复合物堆积物粘合到切片的人类臼齿上,并切成未修剪的牙本质复合材料束,以进行微拉伸试验。将光束分配到以下存储条件之一:(i)24小时人工唾液(对照); (ii)10%次氯酸钠(NaOCl),1小时; (iii)10%NaOCl,3小时; (iv)60,000次热循环,持续2个月; (v)人工唾液2个月; (vi)60,000次热循环,持续6个月; (vii)人工唾液6个月。然后拉动梁,直到破坏并计算粘结强度。检查其他标本以研究界面纳米泄漏的表达。与对照组相比,NaOCl溶液显着降低了结合力(组2 =组3 <组1);与在相同时间段内在人造唾液中存储的样本相比,热循环降低了粘合强度(第4组<第5组;第6组<第7组)。人工老化仅在储存6个月后才影响粘合强度(第7组<第5组=第1组)。与对照相比,在所有老化条件下发现纳米泄漏增加。 NaOCl溶液是一种快速可靠的体外老化方法,用于检查由两步蚀刻和冲洗粘合剂系统产生的粘合剂界面的耐久性。

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