Literature DB >> 29234754

Durability of Resin Bonding to Lithium Disilicate and Zirconia Ceramic using a Self-etching Primer.

Sebastian Wille, Frank Lehmann, Matthias Kern.   

Abstract

PURPOSE: The purpose of this in vitro study was twofold: 1. To evaluate the surface conditioning effect of a self-etching ceramic primer on lithium disilicate and zirconia ceramics; (2) to study the bond durability provided by the self-etching ceramic primer after artificial aging compared with conventional ceramic conditioning methods.
MATERIALS AND METHODS: Lithium disilicate blocks (10 × 10 mm, 3.4 mm thick) and zirconia disks (8 mm diameter, 3.4 mm thick) were each divided into two groups. In group 1, the lithium disilicate disks (Li) were etched with hydrofluoric acid (HF), while zirconia (Zr) disks were treated with airborne-particle abrasion, both followed by application of a universal primer for restorative materials (MP; Monobond Plus, Ivoclar Vivadent). In group 2, Li disks were not etched with HF, while Zr disks were treated with airborne-particle abrasion, both followed by a self-etching primer (ME; Monobond Etch & Prime, Ivoclar Vivadent). Surface conditioning effects were evaluated using SEM. The specimens in both groups were bonded to a composite with a luting resin and divided into two subgroups. Subgroup 1 was stored in water (37°C) for 3 days, and subgroup 2 was stored in water for 30 days before undergoing 7500 thermal cycles (5°C to 55°C).
RESULTS: The self-etching ceramic primer had a significant effect only on the lithium disilicate surface topography. The mean initial bond strength of ME-Zr was relatively low (24.4 MPa) in comparison with all other material combinations (MP-Li: 34.3 MPa; ME-Li: 33.5 MPa; MP-Zr: 31.1 MPa). After 30 days of water storage and thermocycling, the bond strength decreased significantly in all groups.
CONCLUSION: The self-etching primer provided bond strengths to lithium disilicate ceramic comparable with those of the well-established bonding method using hydrofluoric acid etching and a primer containing silane. To zirconia ceramic, however, it provided statistically significantly lower bond strength than did the established bonding method.

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Year:  2017        PMID: 29234754     DOI: 10.3290/j.jad.a39545

Source DB:  PubMed          Journal:  J Adhes Dent        ISSN: 1461-5185            Impact factor:   2.359


  6 in total

1.  A novel porous silica-zirconia coating for improving bond performance of dental zirconia.

Authors:  Zhiwei Su; Mingxing Li; Ling Zhang; Chaoyang Wang; Leiqing Zhang; Jingqiu Xu; Baiping Fu
Journal:  J Zhejiang Univ Sci B       Date:  2021-03-15       Impact factor: 3.066

2.  Effect of active application of self-etching ceramic primer on the long-term bond strength of different dental CAD/CAM materials.

Authors:  João-Paulo-Mendes Tribst; Pedro-Jacy-Santos Diamantino; Maiara-Rodrigues de Freitas; Isabela-Vitelli Tanaka; Lais-Regiane Silva-Concílio; Renata-Marques de Melo; Guilherme-de Siqueira-Ferreira-Anzaloni Saavedra
Journal:  J Clin Exp Dent       Date:  2021-11-01

3.  Effect of a single-component ceramic conditioner on shear bond strength of precoated brackets to different CAD/CAM materials.

Authors:  Carlos González-Serrano; Jin-Ho Phark; María Victoria Fuentes; Alberto Albaladejo; Andrés Sánchez-Monescillo; Sillas Duarte; Laura Ceballos
Journal:  Clin Oral Investig       Date:  2020-08-15       Impact factor: 3.573

4.  Self-Etch Silane Primer: Reactivity and Bonding with a Lithium Disilicate Ceramic.

Authors:  Maria Dimitriadi; Spiros Zinelis; Maria Zafiropoulou; Nikolaos Silikas; George Eliades
Journal:  Materials (Basel)       Date:  2020-01-31       Impact factor: 3.623

Review 5.  Adhesion to Zirconia: A Systematic Review of Current Conditioning Methods and Bonding Materials.

Authors:  Daniele Scaminaci Russo; Francesca Cinelli; Chiara Sarti; Luca Giachetti
Journal:  Dent J (Basel)       Date:  2019-08-01

6.  Increasing Acid Concentration, Time and Using a Two-Part Silane Potentiates Bond Strength of Lithium Disilicate-Reinforced Glass Ceramic to Resin Composite: An Exploratory Laboratory Study.

Authors:  Matilde Almiro; Beatriz Marinho; António H S Delgado; João Rua; Paulo Monteiro; Inês Caetano Santos; Luís Proença; José João Mendes; Marco M M Gresnigt
Journal:  Materials (Basel)       Date:  2022-03-10       Impact factor: 3.623

  6 in total

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