Effects of adhesive temperature on the early and 6-month dentin bonding |
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Authors: | Alessandra Reis, Celso Afonso Klein-Jú nior, Maria de Lourdes Rodrigues Accorinte, Rosa Helena Miranda Grande, Celso Bilynkievycz dos Santos,Alessandro D. Loguercio |
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Affiliation: | aSchool of Dentistry, Department of Restorative Dentistry, University Estadual de Ponta Grossa, Ponta Grossa, PR, Brazil;bSchool of Dentistry, Department of Dentistry, University Luterana do Brasil, Cachoeira do Sul, RS, Brazil;cSchool of Dentistry, University Brás Cubas, São Paulo, SP, Brazil;dSchool of Dentistry, Department of Dental Materials, University of São Paulo, São Paulo, SP, Brazil |
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Abstract: |
ObjectivesThe aim of this study was to test the effect of adhesive temperature on the bond strength to dentin (μTBS) and silver nitrate uptake (SNU) of an ethanol/water (Adper Single Bond 2 [SB]) and an acetone-based (Prime&;Bond 2.1 [PB]) etch-and-rinse adhesive system.MethodsThe bottles of each adhesive were kept in various temperatures (5 °C, 20 °C, 37 °C and 50 °C) for 1 h previously to its application in the occlusal demineralized dentin of 40 molars. Bonded sticks (0.8 mm2) were tested in tension (0.5 mm/min) immediately (IM) or after 6 months (6 M) of water storage. Two bonded sticks from each hemi-tooth were immersed in silver nitrate and analyzed by SEM. Data were analyzed by two-way repeated measures ANOVA and Tukey's test (α = 0.05).ResultsNo significant difference in μTBS was detected for both adhesives at 5 °C and 20 °C. The highest bond strength for PB was observed in the 37 °C group while for SB it was in the 50 °C. Significant reductions of bond strengths were observed for PB at 37 °C and SB at 50 °C after 6 M of water storage. Silver nitrate deposition was seen in all hybrid layers, irrespective of the group. Lower silver nitrate deposition (water trees) in the adhesive layer was seen for PB and SB at higher temperatures.ConclusionsThe heating or refrigeration of the adhesives did not improve their resin–dentin bond resistance to water degradation over time. |
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Keywords: | Adhesive system Microtensile bond strength Longevity Nanoleakage Dentin Temperature |
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