Effectiveness of different surface treatments on bond strength between 3D-printed teeth and denture base.

IF 3.4 2区 医学 Q1 DENTISTRY, ORAL SURGERY & MEDICINE
Anne Karoline de Holanda Cavalcanti Pereira, Rayanna Thayse Florêncio Costa, Rafaella de Souza Leão, Bruno Gustavo da Silva Casado, Andre Ulisses Dantas Batista, Sandra Lúcia Dantas Moraes
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引用次数: 0

Abstract

Purpose: To investigate the effects of different surface treatments and thermal cycling on the shear bond strength between 3D-printed teeth and denture bases.

Material and methods: For the shear bond strength (SBS) test, the specimens were the maxillary central incisors (11 × 9 × 7 mm) bonded on a cylindrical base (20 × 25 mm). The control group was heat-cured polymethylmethacrylate (PMMA) (N = 20). The printed group was divided into five subgroups (N = 20): no treatment, sandblasting with aluminum oxide (Al2O3), methyl methacrylate monomer, acetone, and adhesive with urethane dimethacrylate. Half of the samples were subjected to 2000 thermal cycling cycles, and all samples were subjected to the SBS test. The failure mode was established as adhesive, cohesive, or mixed through stereomicroscopic analysis. The surface roughness test (Sa) was performed using optical profilometry, and the rectangular specimens (14 × 14 × 2.5 mm) were divided into four groups according to the surface treatments (N = 7 per group). Paired T and Wilcoxon tests were conducted to perform comparisons within the same group. The Kruskal-Wallis and Dwass-Steel-Critchlow-Fligner post-hoc tests were conducted to compare the groups.

Results: Al2O3 sandblasting in the 3D-printed groups achieved high SBS values comparable to those of the control group in the thermal cycled (p = 0.962) and non-thermal cycled samples (p = 0.319). It was the only treatment capable of modifying the surface of the 3D-printed resin, thereby increasing the roughness (p = 0.016).

Conclusions: Sandblasting is recommended to increase the bond strength between the tooth and denture bases.

不同表面处理对 3D 打印牙齿和义齿基托之间粘接强度的影响。
目的:研究不同表面处理和热循环对三维打印牙齿与义齿基托之间剪切粘接强度的影响:在剪切粘接强度(SBS)测试中,试样为粘接在圆柱形基托(20 × 25 毫米)上的上颌中切牙(11 × 9 × 7 毫米)。对照组为热固化聚甲基丙烯酸甲酯(PMMA)(N = 20)。印刷组分为五个子组(N = 20):未处理组、氧化铝(Al2O3)喷砂组、甲基丙烯酸甲酯单体组、丙酮组和聚氨酯二甲基丙烯酸酯粘合剂组。半数样品进行了 2000 次热循环,所有样品都进行了 SBS 测试。通过立体显微镜分析确定失效模式为粘合、内聚或混合。使用光学轮廓仪进行表面粗糙度测试(Sa),并根据表面处理将矩形试样(14 × 14 × 2.5 毫米)分为四组(每组 7 个)。同组内的比较采用配对 T 检验和 Wilcoxon 检验。对各组进行 Kruskal-Wallis 和 Dwass-Steel-Critchlow-Fligner 事后检验:结果:在热循环(p = 0.962)和非热循环(p = 0.319)样品中,3D 打印组的 Al2O3 喷砂获得了与对照组相当的高 SBS 值。这是唯一一种能够改变 3D 打印树脂表面的处理方法,从而增加了粗糙度(p = 0.016):结论:建议采用喷砂处理来增加牙齿和义齿基托之间的粘接强度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
7.90
自引率
15.00%
发文量
171
审稿时长
6-12 weeks
期刊介绍: The Journal of Prosthodontics promotes the advanced study and practice of prosthodontics, implant, esthetic, and reconstructive dentistry. It is the official journal of the American College of Prosthodontists, the American Dental Association-recognized voice of the Specialty of Prosthodontics. The journal publishes evidence-based original scientific articles presenting information that is relevant and useful to prosthodontists. Additionally, it publishes reports of innovative techniques, new instructional methodologies, and instructive clinical reports with an interdisciplinary flair. The journal is particularly focused on promoting the study and use of cutting-edge technology and positioning prosthodontists as the early-adopters of new technology in the dental community.
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