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使用双固化树脂水门汀评估牙本质与陶瓷之间的剪切和拉伸粘结强度。

Evaluation of shear and tensile bond strength between dentin and ceramics using dual-polymerizing resin cements.

作者信息

Pekkan Gurel, Hekimoglu Canan

机构信息

Department of Dentistry, Dumlupinar University, Kutahya, Turkey.

出版信息

J Prosthet Dent. 2009 Oct;102(4):242-52. doi: 10.1016/S0022-3913(09)60163-3.

Abstract

STATEMENT OF PROBLEM

The applications of dual-polymerizing resin cements for all-ceramic restorations have considerably increased. For a successful clinical outcome, the luting agent should have high bond strength, not only to the ceramic surface, but also to the tooth surface.

PURPOSE

The purpose of this study was to examine shear (S) and tensile (T) bond strengths between 2 all-ceramic systems and human dentin using 3 dual-polymerizing resin cements.

MATERIAL AND METHODS

The buccal surfaces of 120 freshly extracted human third molars were ground flat, parallel to the long axis. Sixty specimens were prepared from each of 2 all-ceramic systems (IPS Empress 2 (E) and Cergo Pressable Ceramic (C)). Twenty specimens were luted with each of the following resin cements: Nexus 2 (N) with Self-Etch Primer, Duo-Link (D), and Variolink II (V), with their respective bonding systems. All specimens were immersed in water at 37 degrees C for 1 week, before being thermal cycled for 500 cycles in 5 degrees C and 55 degrees C water. Shear (S) and tensile (T) bond strength tests were applied to 10 specimens from each group. Fractured surfaces were inspected by scanning electron microscopy (SEM). Statistical analyses were performed using nonparametric 1-way ANOVA (Kruskal-Wallis) followed by Duncan's multiple range tests for post hoc comparison and Mann-Whitney U test for 2 ceramic systems (alpha=.05).

RESULTS

Significant differences were observed in shear and tensile bond strength values of the adhesive systems used (P<.05). Duo-Link showed the highest mean bond strength values, whereas Nexus 2 revealed lower shear and tensile bond strength values. Fracture modes were hybrid at the dentin interface and/or cohesive in dentin.

CONCLUSIONS

Cementing agents/adhesive systems may influence the bond to dental hard tissues. Dual-polymerizing activators may have a negative effect on polymerization of the bonding agent.

摘要

问题陈述

用于全瓷修复体的双聚合树脂水门汀的应用已大幅增加。为获得成功的临床效果,粘结剂不仅应与陶瓷表面,还应与牙体表面具有高粘结强度。

目的

本研究的目的是使用3种双聚合树脂水门汀检测2种全瓷系统与人类牙本质之间的剪切(S)和拉伸(T)粘结强度。

材料与方法

将120颗新鲜拔除的人类第三磨牙的颊面磨平,使其与长轴平行。从2种全瓷系统(IPS Empress 2(E)和Cergo可压注陶瓷(C))中的每种制备60个标本。用以下每种树脂水门汀粘结20个标本:带自酸蚀底漆的Nexus 2(N)、Duo-Link(D)和Variolink II(V),以及它们各自的粘结系统。所有标本在37℃水中浸泡1周,然后在5℃和55℃水中进行500次热循环。对每组中的10个标本进行剪切(S)和拉伸(T)粘结强度测试。通过扫描电子显微镜(SEM)检查断裂表面。使用非参数单因素方差分析(Kruskal-Wallis)进行统计分析,随后进行Duncan多重范围检验以进行事后比较,并对2种陶瓷系统进行Mann-Whitney U检验(α = 0.05)。

结果

在所使用的粘结系统的剪切和拉伸粘结强度值中观察到显著差异(P < 0.05)。Duo-Link显示出最高的平均粘结强度值,而Nexus 2显示出较低的剪切和拉伸粘结强度值。断裂模式在牙本质界面处为混合模式和/或在牙本质内为粘结模式。

结论

粘结剂/粘结系统可能会影响与牙齿硬组织的粘结。双聚合活化剂可能会对粘结剂的聚合产生负面影响。

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