## Background and objective: This study aimed to evaluate the extent of microleakage in cavities prepared with bur and er:yag laser, hybridized with different bonding systems. ## Study design: Sixty bovine teeth were randomly divided into six groups (n = 10): (g1) diamond bur + single bond; (g2)
Microleakage and interfacial morphology of self-etching adhesives in class V resin composite restorations
✍ Scribed by Osorio, Raquel ;Toledano, Manuel ;de Leonardi, Guillermo ;Tay, Franklin
- Publisher
- John Wiley and Sons
- Year
- 2003
- Tongue
- English
- Weight
- 658 KB
- Volume
- 66B
- Category
- Article
- ISSN
- 0021-9304
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✦ Synopsis
Abstract
The purpose of the study was to evaluate the marginal leakage of three adhesive systems in Class V resin composite restorations. Two adhesive systems containing acidic primers: Clearfil SE Bond (CSEB) and Etch & Prime 3.0 (E&P), were compared with a conventional water‐based primer: Scotchbond Multipurpose Plus (SBMP). Class V cavities were made at the cementum–enamel junction of extracted human molars, which were then divided between three groups. One of the adhesive systems was applied to each group following manufacturers' instructions. Composite restorations were placed, light cured for 40 s, and polished. Specimens were then immersed in a solution of 2% basic fuchsin dye for 24 h. Longitudinal sections were obtained and studied with a stereomicroscope for assessment of the microleakage according to the degree of dye penetration (scale of 0–3). Data were analyzed by Kruskal‐Wallis one‐way ANOVA, Mann‐Whitney tests, and the Wilcoxon matched‐pairs signed rank test. Two specimens for each group were analyzed by scanning‐electron microscopy (SEM). Bonded interfaces of dentin were also examined by transmission‐electron microscopy (TEM). On enamel, there were no significant differences between the three groups. On dentin, CSEB showed the lowest dye penetration values among the three adhesive systems. SEM and TEM studies showed hybrid layer and resin tag formations in all groups. © 2003 Wiley Periodicals, Inc. J Biomed Mater Res Part B: Appl Biomater 66B: 399–409, 2003
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