Faculty of Dentistry of Pernambuco, Universidade de Pernambuco - UPE, Camaragibe, Pernambuco, Brazil.
J Esthet Restor Dent. 2019 Nov;31(6):589-594. doi: 10.1111/jerd.12521. Epub 2019 Aug 27.
To measure the bond strength to zirconia subjected to different surface treatments of universal bonding agents.
Eighty blocks of zirconia were obtained by CAD/CAM milling. The blocks were embedded into PVC tubes, polished sequentially with increasing granulation sandpapers and divided into two groups according to surface treatment: polished or grit-blasted with alumina particles. Each group was then subdivided by bonding agent employed: Z-Prime Plus (control); Scotchbond Universal; All Bond Universal; and Z-Prime Plus + All Bond Universal. Cylindrical composite resin build-ups were constructed atop the blocks using a two-part metal die. Specimens were stored for 24 hours and subjected to microshear bond strength testing. Statistical analyses were performed by means of the F-test (ANOVA), Student's t and Tukey's test. After sputter coating, zirconia surfaces and adhesive interfaces were analyzed by scanning electron microscopy (SEM).
Bond strength was superior for grit-blasted zirconia. In specimens with this surface treatment, there were no significant differences between experimental groups. On SEM, blasted surfaces exhibited areas of micromechanical retention and adhesive interfaces exhibited areas of zirconia-adhesive interlocking.
Universal adhesive systems were able to bond to zirconia. The interlocking promoted by grit-blasting enhanced bond strength.
Universal adhesive systems simplify bonding to zirconia and enable intraoral repair of fractures.
测量经通用粘结剂不同表面处理后的氧化锆的粘结强度。
通过 CAD/CAM 铣削获得 80 块氧化锆块。将块体嵌入聚氯乙烯管中,用不同粒度的砂纸进行顺序抛光,并根据表面处理分为两组:抛光或用氧化铝颗粒喷砂。然后根据使用的粘结剂将每组进一步细分:Z-Prime Plus(对照);Scotchbond Universal;All Bond Universal;和 Z-Prime Plus + All Bond Universal。使用两部分金属模具在块体顶部构建圆柱形复合树脂堆积物。将样品储存 24 小时,然后进行微剪切粘结强度测试。通过 F 检验(方差分析)、学生 t 检验和 Tukey 检验进行统计分析。喷金后,用扫描电子显微镜(SEM)分析氧化锆表面和粘结界面。
喷砂氧化锆的粘结强度更高。在具有这种表面处理的样品中,实验组之间没有显著差异。在 SEM 上,喷砂表面显示出微机械保留区域,粘结界面显示出氧化锆-粘结剂互锁区域。
通用粘结剂系统能够粘结到氧化锆上。喷砂产生的互锁增强了粘结强度。
通用粘结系统简化了氧化锆的粘结,并能够在口内修复骨折。