Choi An-Na, Lee Ji-Hye, Son Sung-Ae, Jung Kyoung-Hwa, Kwon Yong Hoon, Park Jeong-Kil
Department of Conservative Dentistry, School of Dentistry, Pusan National University, Dental Research Institute, Yangsan 50612, Korea.
Department of Oral Pathology & BK21 PLUS Project, School of Dentistry, Institute of Translational Dental Sciences, Pusan National University, Yangsan 50612, Korea.
Materials (Basel). 2017 Oct 25;10(11):1224. doi: 10.3390/ma10111224.
The effects of dentin wetness on the bond strength and adhesive interface morphology of universal adhesives have been investigated using micro-tensile bond strength (μTBS) testing and confocal laser scanning microscopy (CLSM). Seventy-two human third molars were wet ground to expose flat dentin surfaces. They were divided into three groups according to the air-drying time of the dentin surfaces: 0 (without air drying), 5, and 10 s. The dentin surfaces were then treated with three universal adhesives: G-Premio Bond, Single Bond Universal, and All-Bond Universal in self-etch or etch-and-rinse mode. After composite build up, a μTBS test was performed. One additional tooth was prepared for each group by staining the adhesives with 0.01 wt % of Rhodamine B fluorescent dye for CLSM analysis. The data were analyzed statistically using ANOVA and Tukey's tests (α = 0.05). Two-way ANOVA showed significant differences among the adhesive systems and dentin moisture conditions. An interaction effect was also observed ( < 0.05). One-way ANOVA showed that All-Bond Universal was the only material influenced by the wetness of the dentin surfaces. Wetness of the dentin surface is a factor influencing the micro-tensile bond strength of universal adhesives.
使用微拉伸粘结强度(μTBS)测试和共聚焦激光扫描显微镜(CLSM),研究了牙本质湿度对通用粘结剂的粘结强度和粘结界面形态的影响。72颗人类第三磨牙经湿磨以暴露平坦的牙本质表面。根据牙本质表面的空气干燥时间,将它们分为三组:0(未空气干燥)、5和10秒。然后用三种通用粘结剂:G-Premio Bond、Single Bond Universal和All-Bond Universal,以自酸蚀或酸蚀冲洗模式处理牙本质表面。复合树脂充填后,进行μTBS测试。每组额外制备一颗牙齿,用0.01 wt%的罗丹明B荧光染料对粘结剂进行染色,用于CLSM分析。使用方差分析(ANOVA)和Tukey检验(α = 0.05)对数据进行统计学分析。双向方差分析显示粘结剂系统和牙本质湿度条件之间存在显著差异。还观察到交互作用(< 0.05)。单向方差分析表明,All-Bond Universal是唯一受牙本质表面湿度影响的材料。牙本质表面湿度是影响通用粘结剂微拉伸粘结强度的一个因素。