Department of Preventive Dentistry, Periodontology and Cariology, University of Zurich, 8032 Zurich, Switzerland.
Angle Orthod. 2013 Mar;83(2):306-12. doi: 10.2319/052112-409.1. Epub 2012 Aug 22.
To investigate the influence of caries infiltrant preconditioning on the shear bond strength of orthodontic resin cements on sound and demineralized enamel.
Stainless-steel brackets were bonded to sound or artificially demineralized (14 d, acidic buffer, pH 5.0) bovine enamel specimens using a resin cement or a combination of caries infiltrant preconditioning (Icon, DMG) and the respective resin cement (light-curing composite: Heliosit Orthodontic, Transbond XT, using either Transbond XT Primer or Transbond Plus Self Etching Primer; light-curing resin-modified glass ionomer cement: Fuji Ortho; or self-curing composite: Concise Orthodontic Bonding System). Each group consisted of 15 specimens. Shear bond strength was evaluated after thermo-cycling (10,000×, 5°C to 55°C) at a crosshead speed of 1 mm/min, and data were statistically analyzed by analysis of variance, Mann-Whitney test, and Weibull statistics. Adhesive Remnant Index (ARI) scores and enamel fractures were determined at 25× magnification and were statistically analyzed by regression analyses (P < .05).
The caries infiltrant system significantly increased the shear bond strength of Transbond XT Primer, Transbond Plus Self Etching Primer, and Fuji Ortho in sound specimens, and of all resin cements except for the Concise Orthodontic Bonding System in demineralized enamel. Overall, caries infiltrant preconditioning decreased significantly the number of enamel fractures, but it did not affect ARI scores.
Preconditioning of sound and demineralized enamel with the caries infiltrant system did not impair but rather increased the shear bond strength of most orthodontic resin cements while decreasing the risk of enamel fracture at debonding.
研究龋蚀处理剂预处理对正畸树脂水门汀在正常釉质和脱矿釉质上黏结剪切强度的影响。
使用树脂水门汀或龋蚀处理剂预处理(Icon,DMG)联合相应树脂水门汀(光固化复合树脂:Heliosit Orthodontic,Transbond XT,使用 Transbond XT Primer 或 Transbond Plus Self Etching Primer;光固化树脂改良型玻璃离子水门汀:Fuji Ortho;或自固化复合树脂:Concise Orthodontic Bonding System)将不锈钢托槽黏结到正常或人工脱矿(14 d,酸性缓冲液,pH 值 5.0)牛牙釉质标本上。每组有 15 个标本。在热循环(10,000×,5°C 至 55°C)下以 1mm/min 的十字头速度进行剪切黏结强度评估,然后使用方差分析、Mann-Whitney 检验和威布尔统计对数据进行统计学分析。在 25×放大倍数下通过回归分析评估黏附残余指数(ARI)评分和釉质断裂情况(P<0.05)。
龋蚀处理剂系统显著提高了 Transbond XT Primer、Transbond Plus Self Etching Primer 和 Fuji Ortho 在正常标本中的剪切黏结强度,以及除 Concise Orthodontic Bonding System 外所有树脂水门汀在脱矿釉质中的剪切黏结强度。总体而言,龋蚀处理剂预处理显著降低了釉质断裂的数量,但并未影响 ARI 评分。
龋蚀处理剂预处理正常和脱矿釉质不会损害但会增加大多数正畸树脂水门汀的黏结剪切强度,同时降低分离时釉质断裂的风险。