Prpić Vladimir, Schauperl Zdravko, Glavina Domagoj, Ćatić Amir, Čimić Samir
School of Dental Medicine, University of Zagreb, Zagreb, Croatia.
Department of Materials, Faculty of Mechanical Engineering and Naval Architecture, University of Zagreb, Zagreb, Croatia.
J Adv Prosthodont. 2020 Dec;12(6):376-382. doi: 10.4047/jap.2020.12.6.376. Epub 2020 Dec 28.
To determine the shear bond strengths of different denture base resins to different types of prefabricated teeth (acrylic, nanohybrid composite, and cross-linked) and denture teeth produced by computer-aided design/computer-aided manufacturing (CAD/CAM) technology.
Prefabricated teeth and CAD/CAM (milled) denture teeth were divided into 10 groups and bonded to different denture base materials. Groups 1-3 comprised of different types of prefabricated teeth and cold-polymerized denture base resin; groups 4-6 comprised of different types of prefabricated teeth and heat-polymerized denture base resin; groups 7-9 comprised of different types of prefabricated teeth and CAD/CAM (milled) denture base resin; and group 10 comprised of milled denture teeth produced by CAD/CAM technology and CAD/CAM (milled) denture base resin. A universal testing machine was used to evaluate the shear bond strength for all specimens. One-way ANOVA and Tukey post-hoc test were used for analyzing the data (α=.05).
The shear bond strengths of different groups ranged from 3.37 ± 2.14 MPa to 18.10 ± 2.68 MPa. Statistical analysis showed significant differences among the tested groups (<.0001). Among different polymerization methods, the lowest values were determined in cold-polymerized resin.There was no significant difference between the shear bond strength values of heat-polymerized and CAD/CAM (milled) denture base resins.
Different combinations of materials for removable denture base and denture teeth can affect their bond strength. Cold-polymerized resin should be avoided for attaching prefabricated teeth to a denture base. CAD/CAM (milled) and heat-polymerized denture base resins bonded to different types of prefabricated teeth show similar shear bond strength values.
确定不同义齿基托树脂与不同类型的预制牙(丙烯酸树脂、纳米混合复合材料和交联树脂)以及通过计算机辅助设计/计算机辅助制造(CAD/CAM)技术制作的义齿牙之间的剪切粘结强度。
将预制牙和CAD/CAM(铣削)义齿牙分为10组,并粘结到不同的义齿基托材料上。第1 - 3组由不同类型的预制牙和冷聚义齿基托树脂组成;第4 - 6组由不同类型的预制牙和热聚义齿基托树脂组成;第7 - 9组由不同类型的预制牙和CAD/CAM(铣削)义齿基托树脂组成;第10组由CAD/CAM技术制作的铣削义齿牙和CAD/CAM(铣削)义齿基托树脂组成。使用万能试验机评估所有标本的剪切粘结强度。采用单因素方差分析和Tukey事后检验分析数据(α = 0.05)。
不同组的剪切粘结强度范围为3.37±2.14 MPa至18.10±2.68 MPa。统计分析表明测试组之间存在显著差异(<0.0001)。在不同的聚合方法中,冷聚树脂中的值最低。热聚义齿基托树脂和CAD/CAM(铣削)义齿基托树脂的剪切粘结强度值之间没有显著差异。
可摘义齿基托和义齿牙的不同材料组合会影响它们的粘结强度。将预制牙附着到义齿基托上时应避免使用冷聚树脂。与不同类型的预制牙粘结的CAD/CAM(铣削)和热聚义齿基托树脂显示出相似的剪切粘结强度值。