Effect of different surface conditioning methods and low pH solutions on the shear bond strength of orthodontic brackets to newly introduced CAD/CAM materials.

IF 3.4 3区 综合性期刊 Q1 MULTIDISCIPLINARY SCIENCES Heliyon Pub Date : 2024-10-31 eCollection Date: 2024-11-15 DOI:10.1016/j.heliyon.2024.e40018
Şevki Çınar, Bike Altan Çınar, Gökçe Güneş Bağlan, Ersin Yıldırım
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Abstract

Aim: To evaluate the shear bond strength (SBS) of ceramic and metallic orthodontic brackets bonded to lithium disilicate ceramics or hybrid ceramics and subjected to different surface conditioning treatments.

Materials and methods: In total, 300 specimens were fabricated from GC LiSi (lithium disilicate) and GC Cerasmart (hybrid) ceramic blocks. The specimens were divided into four groups according to the following surface treatments: hydrofluoric acid (HF); sandblasting with 50 μm aluminum oxide; Monobond Etch and Prime; and erbium-doped yttrium aluminum garnet (Er-YAG) laser. Metal (Victory Series) and ceramic (Clarity) brackets were bonded using an orthodontic adhesive resin (Transbond XT; 3M Unitek, CA, USA). The specimens were then stored in three different mediums (artificial saliva, mouth rinse, and gastric juice) and thermocycled. An SBS test was performed after 1 week. The surface morphology was examined after the conditioning treatments using a scanning electron microscope. Data were analyzed using analysis of variance, t-test, and Duncan test.

Results: The SBS data revealed that the type of computer-aided design/computer-aided manufacturing (CAD/CAM) block and surface conditioning method significantly affected the SBS. The highest SBS was recorded (10.112 MPa) for the HF-treated hybrid ceramic blocks stored in the saliva medium, while the lowest SBS (1.862 MPa) was reported for the Er-YAG laser-treated lithium disilicate ceramic blocks stored in the gastric juice medium. GC Cerasmart exhibited better bond strength than that of GC LiSi; however, no significant difference was observed between the ceramic and metal brackets.

Conclusion: The CAD/CAM material, surface conditioning method, and medium affect the SBS.

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不同表面调节方法和低 pH 溶液对新引入的 CAD/CAM 材料正畸托槽剪切粘结强度的影响。
目的:评估粘结在二硅酸锂陶瓷或混合陶瓷上并经过不同表面调理处理的陶瓷和金属正畸托槽的剪切粘结强度(SBS):用 GC LiSi(二硅酸锂)和 GC Cerasmart(混合)陶瓷块共制作了 300 个试样。根据以下表面处理方法将试样分为四组:氢氟酸(HF);50 μm 氧化铝喷砂;Monobond 蚀刻和打底;掺铒钇铝石榴石(Er-YAG)激光。使用正畸粘合树脂(Transbond XT; 3M Unitek, CA, USA)粘合金属(胜利系列)和陶瓷(清晰度)托槽。然后将试样保存在三种不同的介质(人工唾液、漱口水和胃液)中并进行热循环。1 周后进行 SBS 测试。使用扫描电子显微镜检查调节处理后的表面形态。数据分析采用方差分析、t 检验和邓肯检验:SBS 数据显示,计算机辅助设计/计算机辅助制造(CAD/CAM)模块的类型和表面调节方法对 SBS 有显著影响。经高频处理的混合陶瓷块在唾液介质中的 SBS 最高(10.112 兆帕),而经 Er-YAG 激光处理的二硅酸锂陶瓷块在胃液介质中的 SBS 最低(1.862 兆帕)。与 GC LiSi 相比,GC Cerasmart 表现出更好的粘接强度;但陶瓷托槽和金属托槽之间没有明显差异:结论:CAD/CAM 材料、表面调节方法和介质都会影响 SBS。
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来源期刊
Heliyon
Heliyon MULTIDISCIPLINARY SCIENCES-
CiteScore
4.50
自引率
2.50%
发文量
2793
期刊介绍: Heliyon is an all-science, open access journal that is part of the Cell Press family. Any paper reporting scientifically accurate and valuable research, which adheres to accepted ethical and scientific publishing standards, will be considered for publication. Our growing team of dedicated section editors, along with our in-house team, handle your paper and manage the publication process end-to-end, giving your research the editorial support it deserves.
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