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  • Research Article
    Interface between calcium silicate cement and adhesive systems according to adhesive families and cement maturation
    Nelly Pradelle-Plasse, Caroline Mocquot, Katherine Semennikova, Pierre Colon, Brigitte Grosgogeat
    Restor Dent Endod 2021;46(1):e3.   Published online December 9, 2020
    DOI: https://doi.org/10.5395/rde.2021.46.e3
    AbstractAbstract PDFPubReaderePub
    Objectives

    This study aimed to evaluate the interface between a calcium silicate cement (CSC), Biodentine and dental adhesives in terms of sealing ability.

    Materials and Methods

    Microleakage test: 160 standardized class II cavities were prepared on 80 extracted human molars. The cavities were filled with Biodentine and then divided into 2 experimental groups according to the time of restoration: composite resin obturation 15 minutes after Biodentine handling (D0); restoration after 7 days (D7). Each group was then divided into 8 subgroups (n = 5) according to the adhesive system used: etch-and-rinse adhesive (Prime & Bond); self-etch adhesive 2 steps (Optibond XTR and Clearfil SE Bond); self-etch adhesive 1 step (Xeno III, G-aenial Bond, and Clearfil Tri-S Bond); and universal used as etch-and-rinse or self-etch (ScotchBond Universal ER or SE). After thermocycling, the teeth were immersed in a silver nitrate solution, stained, longitudinally sectioned, and the Biodentine/adhesive percolation was quantified. Scanning electron microscopic observations: Biodentine/adhesive interfaces were observed.

    Results

    A tendency towards less microleakage was observed when Biodentine was etched (2.47%) and when restorations were done without delay (D0: 4.31%, D7: 6.78%), but this was not significant. The adhesives containing 10-methacryloyloxydecyl dihydrogen phosphate monomer showed the most stable results at both times studied. All Biodentine/adhesive interfaces were homogeneous and regular.

    Conclusions

    The good sealing of the CSC/adhesive interface is not a function of the system adhesive family used or the cement maturation before restoration. Biodentine can be used as a dentine substitute.

    Citations

    Citations to this article as recorded by  
    • Effect of Er Cr YSGG laser etching procedure on the bond strength of different calcium silicate cements
      Yesim Sesen Uslu, Hakan Yasin Gönder, Pinar Sesen, Gizem Gunduz Bektaş
      Lasers in Dental Science.2024;[Epub]     CrossRef
    • Managing Cracked Teeth with Root Extension: A Prospective Preliminary Study Using Biodentine™ Material
      Kênia Maria Soares de Toubes, Isabella Sousa Corrêa, Regina Célia Lopes Valadares, Stephanie Quadros Tonelli, Fábio Fernandes Borém Bruzinga, Frank Ferreira Silveira, Dr Karthikeyan Ramalingam
      International Journal of Dentistry.2024;[Epub]     CrossRef
    • In Vitro Resistance of Natural Molars vs. Additive-Manufactured Simulators Treated with Pulpotomy and Endocrown
      Marie-Laure Munoz-Sanchez, Alexis Gravier, Olivier Francois, Emmanuel Nicolas, Martine Hennequin, Nicolas Decerle
      Journal of Functional Biomaterials.2023; 14(9): 444.     CrossRef
    • Characterisation of the calcium silicate‐based cement–composite interface and the bonding strength with total‐etch or single/two‐stage self‐etch adhesive systems
      Abidin Talha Mutluay, Merve Mutluay
      Australian Endodontic Journal.2022; 48(3): 501.     CrossRef
    • Bond Strength of Adhesive Systems to Calcium Silicate-Based Materials: A Systematic Review and Meta-Analysis of In Vitro Studies
      Louis Hardan, Davide Mancino, Rim Bourgi, Alejandra Alvarado-Orozco, Laura Emma Rodríguez-Vilchis, Abigailt Flores-Ledesma, Carlos Enrique Cuevas-Suárez, Monika Lukomska-Szymanska, Ammar Eid, Maya-Line Danhache, Maryline Minoux, Youssef Haïkel, Naji Kharo
      Gels.2022; 8(5): 311.     CrossRef
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