Duarte Rosângela Marques, de Goes Mario Fernando, Montes Marcos Antonio Japiassú Resende
School of Dentistry, Federal University of Paraíba, UFPB, João Pessoa-PB, Brazil.
J Dent. 2006 Jan;34(1):52-61. doi: 10.1016/j.jdent.2005.03.002.
The purpose of this study was to evaluate the tensile bond strength (TBS) of Panavia F resin cement (PF) applied on dentine pre-treated with ED Primer (ED) and Clearfil Liner Bond 2V (CLB) coated with a layer of low-viscosity composite Protect Liner F (PLF) at 10 min, 24 h and 12 months after curing.
The labial surfaces of 60 bovine lower incisors were ground to obtain a flat dentine surface, allowing a demarcation of a 4.0 mm-diameter area with adhesive tape. The teeth were randomly divided in six groups; ED was applied in groups A I, A II and A III and CLB was applied, followed by PLF, in groups B I, B II and B III. A resin composite rod with a wire loop was luted directly to the prepared surface of each group with PF. The specimens of groups A I and B I were submitted to TBS test after 10 min. Groups A II and B II were submitted to TBS test after 24 h storage and groups A III and B III were submitted to TBS test after 12 months storage. Each specimen was inspected by SEM and classified according to the failure mode. Additionally, two representative specimens of each failure mode were sectioned for a composite/dentine interface SEM evaluation.
No significant statistical differences were observed among the groups at 10 min and 24 h. Groups A III and B III presented the lowest TBS values (p<0.05) after 12 months storage. PF on resin-coated dentin (PLF) showed the highest TBS values and was statistically different to PF on dentine for all the groups. The fracture pattern was generally cohesive on the adhesive/hybrid layer for groups A I, A II and A III and cohesive on composite resin for B I, B II and B III.
The use of a less hydrophilic self-etching system to pre-treat dentine, coating with a low-viscosity composite layer prior luting with resin cement, may provide a protection of the hybridised complex, allowing a dentine seal during the 12 months storage period.
本研究旨在评估在固化后10分钟、24小时和12个月时,应用于经ED底漆(ED)预处理的牙本质以及涂有一层低粘度复合保护衬层F(PLF)的Clearfil Liner Bond 2V(CLB)上的Panavia F树脂水门汀(PF)的拉伸粘结强度(TBS)。
将60颗牛下颌切牙的唇面磨平以获得平整的牙本质表面,用胶带划出一个直径4.0毫米的区域。牙齿随机分为六组;A I、A II和A III组应用ED,B I, B II和B III组应用CLB,随后应用PLF。用带有金属丝环的树脂复合材料棒通过PF直接粘结到每组的制备表面。A I和B I组的标本在10分钟后进行TBS测试。A II和B II组在储存24小时后进行TBS测试,A III和B III组在储存12个月后进行TBS测试。每个标本通过扫描电子显微镜检查并根据失效模式分类。此外,对每种失效模式的两个代表性标本进行切片,用于复合树脂/牙本质界面的扫描电子显微镜评估。
在10分钟和24小时时,各组之间未观察到显著的统计学差异。储存12个月后,A III和B III组的TBS值最低(p<0.05)。树脂涂层牙本质(PLF)上的PF显示出最高的TBS值,并且在所有组中与牙本质上的PF在统计学上有差异。对于A I、A II和A III组,断裂模式在粘结剂/混合层上通常是内聚性的,对于B I、B II和B III组,在复合树脂上是内聚性的。
使用亲水性较低的自酸蚀系统预处理牙本质,在使用树脂水门汀粘结之前涂覆低粘度复合层,可能会为杂交复合体提供保护,在12个月的储存期内实现牙本质封闭。