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正畸托槽与整体式4Y-TZP之间的剪切粘结强度:一项体外研究。

Shear Bond Strength between Orthodontic Brackets and Monolithic 4Y-TZP: An In Vitro Study.

作者信息

Cakir Emre, Duman Ayse Nurcan, Yildirim Arzu Zeynep, Cevik Pinar

机构信息

Private Practice, Ankara 06420, Türkiye.

Department of Prosthodontics, Faculty of Dentistry, Gazi University, Ankara 06490, Türkiye.

出版信息

Materials (Basel). 2023 Jul 23;16(14):5173. doi: 10.3390/ma16145173.

Abstract

The aim of this study was to evaluate the effect of different surface treatments on the shear bond strength (SBS) between metal orthodontic brackets and monolithic zirconia surfaces bonded with resin composite. Fifty monolithic zirconia (4Y-TZP) disks were sintered and glazed. Specimens were divided into five groups ( = 10) for different surface treatments: control, nano second fiber laser, sandblasting, grinding and tribochemical coating (CoJet Sand 30-μm). Metal orthodontic brackets were bonded to monolithic zirconia surface by two-component orthodontic adhesive. After 500 cycles of thermocycling, shear bond strength values were measured by a universal testing machine at a cross head speed of 0.5 mm/min. The data was recorded as MPa and statistically analyzed with One-way ANOVA, Levene's LSD tests with Bonferroni corrections. The significance level was α = 0.05. The surface topography of one specimen of each group was evaluated by scanning electron microscopy (SEM). Statistically significant difference was observed among study groups ( = 0.018). The lowest shear bond strength was observed in the control group (3.92 ± 1.9). Tribochemical coating showed the highest bond strength (7.44 ± 2.9), which was statistically different from the control and nano second laser (4.3 ± 1.4) groups but not statistically different from grinding (6.15 ± 3.1) or sandblasting (6.47 ± 3.3). SEM images showed comprehensive results of each surface treatment on monolithic zirconia. All failure modes were recorded as adhesive between the composite resin and monolithic zirconia. Based on the findings of this study, it can be concluded that grinding, sandblasting and tribochemical coating techniques showed clinically acceptable bond strength within the range of 6-8 MPa. These surface treatments can be considered suitable for achieving a durable bond between metal orthodontic brackets and monolithic 4Y-TZP ceramic surfaces.

摘要

本研究的目的是评估不同表面处理对金属正畸托槽与用树脂复合材料粘结的整体式氧化锆表面之间的剪切粘结强度(SBS)的影响。烧结并上釉了50个整体式氧化锆(4Y-TZP)圆盘。将样本分为五组(每组n = 10)进行不同的表面处理:对照组、纳秒光纤激光处理组、喷砂处理组、打磨处理组和摩擦化学涂层处理组(CoJet Sand 30μm)。通过双组分正畸粘合剂将金属正畸托槽粘结到整体式氧化锆表面。在进行500次热循环后,使用万能试验机以0.5 mm/min的十字头速度测量剪切粘结强度值。数据记录为MPa,并采用单因素方差分析、经Bonferroni校正的Levene's LSD检验进行统计学分析。显著性水平为α = 0.05。通过扫描电子显微镜(SEM)评估每组一个样本的表面形貌。研究组之间观察到统计学上的显著差异(P = 0.018)。对照组的剪切粘结强度最低(3.92±1.9)。摩擦化学涂层显示出最高的粘结强度(7.44±2.9),与对照组和纳秒激光处理组(4.3±1.4)相比有统计学差异,但与打磨处理组(6.15±3.1)或喷砂处理组(6.47±3.3)无统计学差异。SEM图像显示了每种表面处理对整体式氧化锆的综合结果。所有失效模式均记录为复合树脂与整体式氧化锆之间的粘结失效。基于本研究的结果,可以得出结论,打磨、喷砂和摩擦化学涂层技术在6 - 8 MPa范围内显示出临床上可接受的粘结强度。这些表面处理可被认为适合在金属正畸托槽与整体式4Y-TZP陶瓷表面之间实现持久的粘结。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a6ae/10383428/0d9c0b0ced24/materials-16-05173-g001.jpg

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