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J Appl Oral Sci ; 17(5): 462-6, 2009.
Article in English | MEDLINE | ID: mdl-19936527

ABSTRACT

UNLABELLED: Dentin adhesion procedure presents limitations, especially regarding to lifetime stability of formed hybrid layer. Alternative procedures have been studied in order to improve adhesion to dentin. OBJECTIVE: The aim of this study was to evaluate in vitro the influence of deproteinization or dentin tubular occlusion, as well as the combination of both techniques, on microtensile bond strength (microTBS) and marginal microleakage of composite resin restorations. MATERIAL AND METHODS: Extracted erupted human third molars were randomly divided into 4 groups. Dentin surfaces were treated with one of the following procedures: (A) 35% phosphoric acid gel (PA) + adhesive system (AS); (B) PA + 10% NaOCl + AS; (C) PA + oxalate + AS and (D) PA + oxalate + 10% NaOCl + AS. Bond strength data were analyzed statistically by two-way ANOVA and Tukey's test. The microleakage scores were analyzed using Kruskal-Wallis and Mann-Whitney non-parametric tests. Significance level was set at 0.05 for all analyses. RESULTS: microTBS data presented statistically lower values for groups D and B, ranking data as A>C>B>D. The use of oxalic acid resulted in microleakage reduction along the tooth/restoration interface, being significant when used alone. On the other hand, the use of 10% NaOCl alone or in combination with oxalic acid, resulted in increased microleakage. CONCLUSIONS: Dentin deproteinization with 10% NaOCl or in combination with oxalate significantly compromised both the adhesive bond strength and the microleakage at interface. Tubular occlusion prior to adhesive system application seems to be a useful technique to reduce marginal microleakage.


Subject(s)
Composite Resins/chemistry , Dental Bonding , Dental Leakage/classification , Dental Marginal Adaptation , Dental Materials/chemistry , Dentin/ultrastructure , Acid Etching, Dental , Bisphenol A-Glycidyl Methacrylate/chemistry , Coloring Agents , Dental Cavity Preparation , Dentin-Bonding Agents/chemistry , Humans , Methylene Blue , Oxalates/chemistry , Oxidants/chemistry , Phosphoric Acids/chemistry , Silicon Dioxide/chemistry , Smear Layer , Sodium Hypochlorite/chemistry , Stress, Mechanical , Temperature , Tensile Strength , Time Factors , Water/chemistry , Zirconium/chemistry
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