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自酸蚀陶瓷底涂剂对增强二硅酸锂陶瓷粘结强度的影响:粘结强度与 FESEM 分析

Does a Self-etching Ceramic Primer Improve Bonding to Lithium Disilicate Ceramics? Bond Strengths and FESEM Analyses.

出版信息

Oper Dent. 2019 Mar/Apr;44(2):210-218. doi: 10.2341/17-355-L. Epub 2018 Aug 14.

Abstract

OBJECTIVE

: To compare the effect of hydrofluoric acid (HF) vs self-etching ceramic primer on resin cement microshear bond strength (μSBS) and ultramorphology of lithium disilicate (LD) ceramic.

METHODS AND MATERIALS

: LD (IPS e.max CAD, Ivoclar Vivadent) blocks (14×4×2 mm) were polished to 1200 grit and assigned to nine groups (n=5): CON: control, no LD surface treatment; IVO: 5.0% HF (IPS Ceramic Etching Gel, Ivoclar Vivadent); VIT: 5.0% HF (Vita Ceramics Etch, VITA Zahnfabrik); FGM: 5.0% HF (Condac Porcelana, FGM); ULT: 9.0% HF (Porcelain Etch, Ultradent); PRM: 9.6% HF (Premier Porcelain Etch Gel, Premier); BIS: 9.5% HF (Porcelain Etchant, Bisco Inc); DEN: 10.0% HF (Condicionador de Porcelanas, Dentsply Brazil); and MEP: self-etching ceramic primer (Monobond Etch & Prime, Ivoclar Vivadent). For all HF groups and control, an MDP-containing silane solution (MB, Monobond Plus, Ivoclar Vivadent) was applied on rinsing the HF gel and air drying. Three transparent matrices for each specimen were filled with light-cured resin cement (Variolink Veneer, Ivoclar Vivadent). After storage in water for 48 hours at 37°C, specimens were tested in shear mode to measure μSBS. Mode of failure was analyzed at 50×. Statistical analysis included one-way analysis of variance and the Duncan post hoc test (α=0.05). Thirty-six additional LD specimens were assigned to the same experimental groups (n=4) and observed under a field-emission scanning electron microscope (FESEM) at magnifications ranging from 10,000× to 100,000×.

RESULTS

: IVO resulted in statistically higher mean μSBS than all the other groups. MEP resulted in statistically lower μSBS than all HF groups. The failure mode for MEP was predominantly adhesive. The most frequent failure mode for the HF groups was mixed. CON resulted in 100% pretesting failures. For FESEM, no retentive pattern was observed for CON specimens. MEP resulted in the least pronounced etching pattern, few areas around crystals exhibited a slight increase in retention pattern compared to the control group. All HF gels created microporosities on the LD surface with distinct etching patterns. VIT and DEN resulted in an LD ultramorphology that suggested overetching.

CONCLUSIONS

: HF etching followed by a silane solution resulted in higher bond strengths than a self-etching ceramic primer. Some HF gels may cause overetching of the LD intaglio surface.

摘要

目的

比较氢氟酸(HF)与自酸蚀陶瓷底涂剂对树脂水门汀微剪切结合强度(μSBS)和锂硅二酸盐(LD)陶瓷超微形貌的影响。

方法和材料

LD(IPS e.max CAD,Ivoclar Vivadent)块(14×4×2mm)经 1200 目砂纸打磨,分为 9 组(每组 5 个样本):CON:对照组,不进行 LD 表面处理;IVO:5.0%HF(IPS 陶瓷蚀刻凝胶,Ivoclar Vivadent);VIT:5.0%HF(Vita Ceramics Etch,VITA Zahnfabrik);FGM:5.0%HF(Condac Porcelana,FGM);ULT:9.0%HF(Porcelain Etch,Ultradent);PRM:9.6%HF(Premier Porcelain Etch Gel,Premier);BIS:9.5%HF(Porcelain Etchant,Bisco Inc);DEN:10.0%HF(Condicionador de Porcelanas,Dentsply Brazil);MEP:自酸蚀陶瓷底涂剂(Monobond Etch & Prime,Ivoclar Vivadent)。对于所有 HF 组和对照组,用含 MDP 的硅烷溶液(MB,Monobond Plus,Ivoclar Vivadent)冲洗 HF 凝胶并风干后应用。每个样本用三个透明的基质填充光固化树脂水门汀(Variolink Veneer,Ivoclar Vivadent)。在 37°C 下储存 48 小时后,将样本在剪切模式下进行测试,以测量 μSBS。在 50×下分析失效模式。统计分析包括单因素方差分析和 Duncan 事后检验(α=0.05)。另外 36 个 LD 样本被分配到相同的实验组(每组 4 个样本),在 10,000×至 100,000×放大倍数下用场发射扫描电子显微镜(FESEM)观察。

结果

IVO 组的平均 μSBS 显著高于其他组。MEP 组的 μSBS 显著低于所有 HF 组。MEP 的失效模式主要为黏附性失效。HF 组的最常见失效模式为混合性失效。CON 组在预测试中 100%失败。对于 FESEM,CON 组无明显的保持模式。MEP 组显示出最小的蚀刻图案,与对照组相比,晶体周围的少数区域显示出轻微增加的保持图案。所有 HF 凝胶在 LD 表面均形成微孔,蚀刻图案明显。VIT 和 DEN 导致 LD 超微结构出现过度蚀刻。

结论

HF 蚀刻后再用硅烷溶液处理,其结合强度高于自酸蚀陶瓷底涂剂。一些 HF 凝胶可能会导致 LD 凹面过度蚀刻。

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