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Bonding to sound vs caries-affected dentin using photo- and dual-cure adhesives.

机译:使用光固化和双固化粘合剂将声音粘合到龋齿与龋齿之间。

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This study aimed to evaluate the microtensile bond strength (microTBS) of photo- and dual-cure adhesives to sound and caries-affected dentin using total- and self-etch techniques. Human third molars with occlusal caries were prepared as previously described by Nakajima and others (1995). Dentin surfaces were bonded with Optibond Solo Plus (Kerr; photo-cure adhesive) or Optibond Solo Plus + Dual-cure activator (Kerr; dual-cure adhesive) with total- and self-etch technique. Clearfil AP-X (Kuraray) was used for composite buildups. Following storage in distilled water at 37 degrees C for 24 hours, the teeth were sectioned into 0.7-mm thick slices to obtain sound and caries-affected dentin slabs, then trimmed to form hour glass shapes with a 1 mm2 cross-sectional area. The specimens were subjected to microtensile testing using EZ-test (Shimadzu) at 1 mm/minute. Data were analyzed using three-way ANOVA and Student's t-Test (p<0.05). Bond strengths to sound dentin with photo- and dual-cure adhesives using total- and self-etch techniques were significantly higher than those to caries-affected dentin. Dual-cure adhesive significantly decreased bond strengths both to sound and caries-affected dentin. The total-etch technique showed no beneficial effect on caries-affected dentin compared with the self-etch technique. Scanning electron microscopic observation of the resin-dentin interfaces revealed that hybrid layers in caries-affected dentin were thicker than those observed in sound dentin with photo- and dual-cure adhesives. Resin infiltration into dentinal tubules of caries-affected dentin was hampered by the presence of mineral deposits.
机译:这项研究的目的是使用全蚀刻和自蚀刻技术评估光固化和双固化胶粘剂对受声音和龋齿影响的牙本质的微拉伸粘合强度(microTBS)。如前Nakajima等人(1995)所述,制备具有咬合龋的人第三磨牙。牙本质表面采用全蚀刻和自蚀刻技术通过Optibond Solo Plus(Kerr;光固化粘合剂)或Optibond Solo Plus +双固化活化剂(Kerr;双固化粘合剂)粘合。 Clearfil AP-X(Kuraray)用于复合材料堆积。将其在37摄氏度的蒸馏水中储存24小时后,将牙齿切成0.7毫米厚的切片,以获取有声且受龋齿影响的牙本质板,然后修整以形成横截面为1平方毫米的沙漏形状。使用EZ测试(Shimadzu)以1mm /分钟对样品进行微拉伸测试。使用三向方差分析和Student t检验分析数据(p <0.05)。使用全蚀刻和自蚀刻技术的光固化和双固化胶粘剂对健全牙本质的粘接强度显着高于龋齿影响的牙本质。双固化胶粘剂显着降低了对健全和龋齿影响的牙本质的粘合强度。与自蚀刻技术相比,全蚀刻技术对龋齿影响的牙本质没有显示出有益的作用。扫描电子显微镜对树脂-牙本质界面的观察表明,受龋影响的牙本质中的杂化层比使用光固化和双固化粘合剂的声音牙本质中的杂化层厚。矿物沉积物的存在阻碍了树脂浸入龋齿影响的牙本质的牙本质小管中。

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