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引发剂对树脂水门汀与半透明氧化锆粘结强度的影响。

Effect of priming agents on shear bond strengths of resin-based luting agents to a translucent zirconia material.

机构信息

Department of Fixed Prosthodontics, Nihon University School of Dentistry, Tokyo, Japan.

Department of Fixed Prosthodontics, Nihon University School of Dentistry, Tokyo, Japan.

出版信息

J Prosthodont Res. 2018 Apr;62(2):204-209. doi: 10.1016/j.jpor.2017.08.011. Epub 2017 Sep 19.

Abstract

PURPOSE

The purpose of the present study was to evaluate the effect of priming agents and artificial aging with thermocycling on shear bond strengths of two resin-based luting agents to a translucent zirconia material.

METHODS

A total of 308 pairs of translucent zirconia disk specimens were divided into seven treatment groups: Alloy Primer (ALP), Clearfil Ceramic Primer Plus (CCP), Meta Fast Bonding Liner (MFB), MR. bond (MRB), Super-Bond PZ Primer Liquid B (PZB), V-Primer (VPR), and an unprimed group (UP). The specimens in each group were bonded with Panavia V5 Universal (UNI) and Opaque shade (OPA). Shear bond strengths (n=11 each) were tested before and after 5000 thermocycles. The data were analyzed with the Kruskal-Wallis test and the Steel-Dwass test.

RESULTS

For both 0 and 5000 thermocycles, the ALP (47.8 and 41.5MPa, respectively) and CCP (45.8 and 42.3MPa, respectively) groups showed significantly higher bond strengths than other groups in the UNI luting agent. For the OPA luting agent, CCP group (45.8MPa) exhibited the highest pre-thermocycling bond strength in all groups. The ALP (32.4MPa) and CCP (36.5MPa) groups had significantly higher post-thermocycling shear bond strengths than other groups. In several groups, the shear bond strengths of the UNI luting agent were significantly higher than those of the OPA luting agent before and after thermocycling.

CONCLUSIONS

Application of priming agents containing hydrophobic phosphate monomer (MDP) yielded the durable bond strengths of resin-based luting agents to a translucent zirconia material.

摘要

目的

本研究旨在评估预处理剂和冷热循环人工老化对两种树脂基水门汀与半透明氧化锆材料的剪切粘结强度的影响。

方法

将 308 对半透明氧化锆圆盘试件分为 7 个处理组:Alloy Primer(ALP)、Clearfil Ceramic Primer Plus(CCP)、Meta Fast Bonding Liner(MFB)、MR. bond(MRB)、Super-Bond PZ Primer Liquid B(PZB)、V-Primer(VPR)和未预处理组(UP)。每组试件分别用 Panavia V5 Universal(UNI)和 Opaque shade(OPA)进行粘结。在 5000 次热循环前后分别对剪切粘结强度(n=11)进行测试。采用 Kruskal-Wallis 检验和 Steel-Dwass 检验对数据进行分析。

结果

对于 0 次和 5000 次热循环,ALP(分别为 47.8MPa 和 41.5MPa)和 CCP(分别为 45.8MPa 和 42.3MPa)组在 UNI 水门汀中显示出比其他组更高的粘结强度。对于 OPA 水门汀,CCP 组(45.8MPa)在所有组中表现出最高的热循环前粘结强度。ALP(32.4MPa)和 CCP(36.5MPa)组在热循环后具有比其他组更高的剪切粘结强度。在几个组中,UNI 水门汀的剪切粘结强度在热循环前后均明显高于 OPA 水门汀。

结论

含有疏水性磷酸单体(MDP)的预处理剂的应用可获得树脂基水门汀对半透明氧化锆材料的持久粘结强度。

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