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1.
J. appl. oral sci ; 24(1): 24-30, Jan.-Feb. 2016. tab, graf
Article in English | LILACS, BBO | ID: lil-777364

ABSTRACT

ABSTRACT Development of new materials for tooth bleaching justifies the need for studies to evaluate the changes in the enamel surface caused by different bleaching protocols. Objective The aim of this study was to evaluate the bovine dental enamel wear in function of different bleaching gel protocols, acid etching and pH variation. Material and Methods Sixty fragments of bovine teeth were cut, obtaining a control and test areas. In the test area, one half received etching followed by a bleaching gel application, and the other half, only the bleaching gel. The fragments were randomly divided into six groups (n=10), each one received one bleaching session with five hydrogen peroxide gel applications of 8 min, activated with hybrid light, diode laser/blue LED (HL) or diode laser/violet LED (VHL) (experimental): Control (C); 35% Total Blanc Office (TBO35HL); 35% Lase Peroxide Sensy (LPS35HL); 25% Lase Peroxide Sensy II (LPS25HL); 15% Lase Peroxide Lite (LPL15HL); and 10% hydrogen peroxide (experimental) (EXP10VHL). pH values were determined by a pHmeter at the initial and final time periods. Specimens were stored, subjected to simulated brushing cycles, and the superficial wear was determined (μm). ANOVA and Tukey´s tests were applied (α=0.05). Results The pH showed a slight decrease, except for Group LPL15HL. Group LPS25HL showed the highest degree of wear, with and without etching. Conclusion There was a decrease from the initial to the final pH. Different bleaching gels were able to increase the surface wear values after simulated brushing. Acid etching before bleaching increased surface wear values in all groups.


Subject(s)
Animals , Cattle , Tooth Bleaching/methods , Acid Etching, Dental/methods , Dental Enamel/drug effects , Tooth Wear/chemically induced , Tooth Bleaching Agents/chemistry , Reference Values , Surface Properties/drug effects , Time Factors , Toothbrushing , Materials Testing , Random Allocation , Analysis of Variance , Gels , Hydrogen-Ion Concentration , Hydrogen Peroxide/chemistry
2.
J. appl. oral sci ; 17(5): 462-466, Sept.-Oct. 2009. ilus, tab
Article in English | LILACS | ID: lil-531398

ABSTRACT

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 (µTBS) 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 percent phosphoric acid gel (PA) + adhesive system (AS); (B) PA + 10 percent NaOCl + AS; (C) PA + oxalate + AS and (D) PA + oxalate + 10 percent 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: µTBS 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 percent NaOCl alone or in combination with oxalic acid, resulted in increased microleakage. CONCLUSIONS: Dentin deproteinization with 10 percent 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)
Humans , Composite Resins/chemistry , Dental Bonding , Dental Marginal Adaptation , Dental Leakage/classification , Dental Materials/chemistry , Dentin/ultrastructure , Acid Etching, Dental , Bisphenol A-Glycidyl Methacrylate/chemistry , Coloring Agents , Dental Cavity Preparation , Dentin-Bonding Agents/chemistry , Methylene Blue , Oxalates/chemistry , Oxidants/chemistry , Phosphoric Acids/chemistry , Smear Layer , Stress, Mechanical , Silicon Dioxide/chemistry , Sodium Hypochlorite/chemistry , Temperature , Tensile Strength , Time Factors , Water/chemistry , Zirconium/chemistry
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