Fruits T J, Duncanson M G, Miller R C
Department of Operative Dentistry, University of Oklahoma College of Dentistry, Oklahoma City 73190, USA.
Am J Dent. 1996 Oct;9(5):219-22.
To compare the shear bond strengths to dentin of four tooth-colored fluoride-releasing restorative materials that utilize different mechanisms of dentin-bonding.
Four materials were tested: a chemically-cured glass ionomer (Ketac-Fil); a light-cured resin-modified glass ionomer (Photac-Fil); a light-cured resin-modified glass ionomer in conjunction with a resin dentin-bonding agent (Vitremer); and a light-cured resin composite in conjunction with a resin dentin-bonding agent (Tetric). The enamel was removed from four sides of the twenty human noncarious extracted molars which had their roots embedded in acrylic blocks. Cylindrical samples of the materials were prepared in plastic molds and bonded to the dentin surface according to the manufacturers' instructions. After 24 hours of storage in a humidor, the samples were sheared with an Instron testing machine at a crosshead speed of 0.5 mm/minute.
Statistical evaluation (ANOVA and Duncan's test) suggests that the fluoride-releasing resin composite material utilizing a resin dentin-bonding agent provided a significantly greater mean shear bond strength (16.5 MPa) after 24 hours storage than any of the selected glass ionomer materials. Of the three glass ionomer materials compared, the light-cured resin-modified material with a resin dentin-bonding agent provided a significantly greater mean shear bond strength (6.7 MPa) than the light-cured resin-modified material without a resin dentin-bonding agent (3.0 MPa) or the chemically-cured material (3.8 MPa).
比较四种采用不同牙本质粘结机制的牙齿颜色的释氟修复材料与牙本质的剪切粘结强度。
测试了四种材料:化学固化玻璃离子水门汀(Ketac - Fil);光固化树脂改性玻璃离子水门汀(Photac - Fil);与树脂牙本质粘结剂联合使用的光固化树脂改性玻璃离子水门汀(Vitremer);以及与树脂牙本质粘结剂联合使用的光固化树脂复合材料(Tetric)。从20颗牙根嵌入丙烯酸块中的人类非龋性拔除磨牙的四个侧面去除釉质。在塑料模具中制备材料的圆柱形样本,并按照制造商的说明粘结到牙本质表面。在保湿器中储存24小时后,使用Instron测试机以0.5毫米/分钟的十字头速度对样本进行剪切。
统计评估(方差分析和邓肯检验)表明,与任何选定的玻璃离子材料相比,使用树脂牙本质粘结剂的释氟树脂复合材料在储存24小时后提供了显著更高的平均剪切粘结强度(16.5兆帕)。在比较的三种玻璃离子材料中,与树脂牙本质粘结剂联合使用的光固化树脂改性材料提供的平均剪切粘结强度(6.7兆帕)显著高于未与树脂牙本质粘结剂联合使用的光固化树脂改性材料(3.0兆帕)或化学固化材料(3.8兆帕)。