• Title of article

    Prolonged exposure times of one-step self-etch adhesives on adhesive properties and durability of dentine bonds

  • Author/Authors

    Hass، نويسنده , , Viviane and Luque-Martinez، نويسنده , , Issis and Sabino، نويسنده , , Nilson Biagini and Loguercio، نويسنده , , Alessandro D. and Reis، نويسنده , , Alessandra، نويسنده ,

  • Pages
    13
  • From page
    1090
  • To page
    1102
  • Abstract
    Objectives luate the effect of prolonged exposure times on immediate and 6-month adhesive properties: degree of conversion (DC), nanoleakage (NL) and resin–dentine bond strength (μTBS) of three one-step self-etch adhesive systems (Adper Easy One [EO], Clearfil S3 Bond [CS3] and Go [GO]). al and methods hesives were applied on exposed dentine surfaces of 90 human molars according to manufacturers’ instructions and light polymerized for 10, 20, and 40 s at 600 mW/cm2. Bonded teeth were sectioned to obtain stick-shaped specimens (0.8 mm2) and tested under tensile stress (0.5 mm/min) immediately (IM) or after 6 months of water storage. Two bonded sticks from each tooth at each storage time interval were analysed by SEM for NL evaluation. The in situ DC was evaluated by micro-Raman spectroscopy. Data were analysed by appropriate ANOVA and Tukeyʹs test (α = 0.05). s ged exposure times significantly increased the DC (%) (10 s [67.4 ± 17.3]; 20 s [85.9 ± 8.9] and 40 s [85.2 ± 9.0]) and decreased the NL (%) (10 s [24.8 ± 13.2]; 20 s [13.3 ± 7.5] and 40 s [13.5 ± 9.3]) for all adhesives; however it did not increase the IM μTBS for two (EO, GO) out of the three adhesives. Furthermore, this technique did not minimize dentine bond degradation. sion gh longer exposure times than those recommended could not prevent degradation of dentine bonds, they could increase DC within the hybrid layer and reduced NL for all adhesives tested.
  • Keywords
    Dentine-bonding agents , Polymerization , Bond strength , Nanoleakage , Degree of conversion , Raman spectrum analysis
  • Journal title
    Astroparticle Physics
  • Record number

    2039496