Di Hipólito Vinicius, Reis André Figueiredo, Mitra Sumita B, de Goes Mario Fernando
Biomaterials Research Group, School of Dentistry, Anhanguera-Bandeirante University of São Paulo - UNIBAN, São Paulo, SP, BRAZIL.
Eur J Dent. 2012 Oct;6(4):349-60.
To evaluate the effect of nanofillers incorporated into adhesives on the microtensile bond strength (μ-TBS) and interfacial micromorphology to dentin.
The occlusal enamel of 5 human molars was removed and each tooth sectioned into four quarters. The exposed dentin was treated with one of the following adhesives: Adper Single Bond (SB-unfilled), OptiBond Solo Plus (OS-barium aluminoborosilicate, 400nm Ø), Prime & Bond NT (NT-colloidal silica, 7-40 nm Ø) and Adper Single Bond 2 (SB2-colloidal silica, 5nm Ø). Cylinders of resin-based composite were constructed on the adhesive layers. After 24-hour storage, the restored tooth-quadrants were sectioned to obtain stick-shaped specimens (0.8 mm2, cross-sectional area) and submitted to μ-TBS at a cross-speed of 0.5 mm/min. Data were analyzed using one-way ANOVA and Tukey's test (alpha = .05). Twenty-eight additional teeth were used for interfacial micro-morphologic analysis by SEM (16-teeth) and TEM (12-teeth). The dentin surfaces of 32 discs were treated with the adhesives (8 discs for adhesive) and laminated to form disc-pairs using a flowable resin composite for SEM/EDS analysis. For TEM, 90nm-thick nondemineralized unstained sections were processed.
SB2 showed significant higher bond strength than SB, OS and NT. The SEM/EDS and TEM analysis revealed nanofillers infiltrated within the interfibrillar spaces of the SB2-hybrid layer. Fillers were concentrated around patent tubular orifices and in the adhesive layer for OS and NT.
The presence of nanofillers within the interfibrillar spaces of the SB2-hybrid layer suggests its importance in the improvement of the μ-TBS.
评估添加纳米填料的黏结剂对微拉伸粘结强度(μ-TBS)及与牙本质界面微观形态的影响。
去除5颗人磨牙的咬合面釉质,每颗牙齿切成四等份。将暴露的牙本质用以下黏结剂之一处理:Adper单组分粘结剂(SB-未填充)、OptiBond Solo Plus(OS-铝硼硅钡,直径400nm)、Prime & Bond NT(NT-胶体二氧化硅,直径7 - 40nm)和Adper单组分粘结剂2(SB2-胶体二氧化硅,直径5nm)。在黏结剂层上构建树脂基复合材料圆柱体。储存24小时后,将修复后的牙齿象限切片以获得棒状试件(横截面积0.8mm²),并以0.5mm/min的交叉速度进行微拉伸粘结强度测试。数据采用单因素方差分析和Tukey检验(α = 0.05)进行分析。另外使用28颗牙齿通过扫描电子显微镜(SEM,16颗牙齿)和透射电子显微镜(TEM,12颗牙齿)进行界面微观形态分析。用黏结剂处理32个圆盘的牙本质表面(每种黏结剂8个圆盘),并用可流动树脂复合材料层压形成圆盘对,用于SEM/能谱分析。对于TEM,制备90nm厚的未脱矿未染色切片。
SB2的粘结强度显著高于SB、OS和NT。SEM/能谱分析和TEM分析显示纳米填料渗入SB2混合层的纤维间空间。对于OS和NT,填料集中在开放的牙本质小管口周围和黏结剂层中。
SB2混合层纤维间空间中存在纳米填料表明其对提高微拉伸粘结强度具有重要作用。