Amaral Marina, Rippe Marilia Pivetta, Bergoli Cesar Dalmolin, Monaco Carlo, Valandro Luiz Felipe
Faculty of Odontology, Sao Paulo State University (UNESP), Sao Jose dos Campos, Brazil.
Gen Dent. 2011 Sep-Oct;59(5):e185-91.
This study evaluated the effects of mechanical cycling on resin push-out bond strength to root dentin, using two strategies for fiber post cementation. Forty bovine roots were embedded in acrylic resin after root canal preparation using a custom drill of the fiber post system. The fiber posts were cemented into root canals using two different strategies (N = 20): a conventional adhesive approach using a three-step etch-and-rinse adhesive system combined with a conventional resin cement (ScotchBond Multi Purpose Plus + RelyX ARC ), or a simplified adhesive approach using a self-adhesive resin cement (RelyX U100). The core was built up with composite resin and half of the specimens from each cementation strategy were submitted to mechanical cycling (45 degree angle; 37 degrees C; 88 N; 4 Hz; 700,000 cycles). Each specimen was cross-sectioned and the disk specimens were pushed-out. The means from every group (n = 10) were statistically analyzed using a two-way ANOVA and a Tukey test (P = 0.05). The cementation strategy affected the push-out results (P < 0.001), while mechanical cycling did not (P = 0.3716). The simplified approach (a self-adhesive resin cement) had better bond performance despite the conditioning. The self-adhesive resin cement appears to be a good option for post cementation. Further trials are needed to confirm these results.
本研究采用两种纤维桩黏结策略,评估了机械循环对树脂与牙根牙本质推出黏结强度的影响。使用纤维桩系统定制钻进行根管预备后,将40颗牛牙根嵌入丙烯酸树脂中。采用两种不同策略(N = 20)将纤维桩黏结到根管中:一种是传统黏结方法,使用三步酸蚀冲洗黏结系统并结合传统树脂水门汀(ScotchBond Multi Purpose Plus + RelyX ARC);另一种是简化黏结方法,使用自黏结树脂水门汀(RelyX U100)。用复合树脂构建核,每种黏结策略的一半标本进行机械循环(45度角;37℃;88 N;4 Hz;700,000次循环)。将每个标本进行横断面切割,并推出圆盘状标本。使用双向方差分析和Tukey检验(P = 0.05)对每组(n = 10)的平均值进行统计学分析。黏结策略影响推出结果(P < 0.001),而机械循环未产生影响(P = 0.3716)。尽管经过预处理,简化方法(自黏结树脂水门汀)仍具有更好的黏结性能。自黏结树脂水门汀似乎是桩黏结的一个良好选择。需要进一步试验来证实这些结果。