Journal article
Influence of 38% silver diamine fluoride application on bond stability to enamel and dentin using universal adhesives in self-etch mode
European journal of oral sciences, Vol.128(4), pp.354-360
08/2020
DOI: 10.1111/eos.12701
PMID: 32395905
Abstract
In order to evaluate the influence of 38% silver diamine fluoride (SDF) application on enamel and dentin bond stability of universal adhesives in self-etch mode, a 38% SDF and three universal adhesives were used in this study. Initial shear bond strength (ISBS), fatigue bond strength (FBS), and shear bond strength of survivors (SBSS) to enamel and dentin of universal adhesives in self-etch mode, with and without SDF application, were determined. SDF was applied to the polished enamel or dentin surface for 1 min, water-rinsed and air-dried for comparison with controls. The universal adhesives were applied to the prepared samples and composite resin was bonded using a mold-enclosed method. Enamel bond stability of universal adhesives with SDF (ISBS: 14.7-20.4 MPa; FBS: 5.5-7.4 MPa and SBSS: 14.4-21.5 MPa) was significantly weaker than those without SDF (ISBS: 28.0-29.2 MPa; FBS: 12.1-15.6 MPa and SBSS: 28.4-34.4 MPa). Dentin bond stability with SDF (ISBS: 14.8-20.9 MPa; FBS: 7.1-8.2 MPa and SBSS: 17.3-21.8 MPa) was also significantly weaker than without SDF (ISBS: 19.3-36.1 MPa; FBS: 11.0-13.7 MPa and SBSS: 22.2-34.6 MPa). The results suggest that SDF application on enamel and dentin reduces the bond stability of universal adhesives in self-etch mode.
Details
- Title: Subtitle
- Influence of 38% silver diamine fluoride application on bond stability to enamel and dentin using universal adhesives in self-etch mode
- Creators
- Mark D Markham - Department of General Dentistry, Creighton University School of Dentistry, Omaha, NE, USAAkimasa Tsujimoto - Department of Operative Dentistry, Nihon University School of Dentistry, Tokyo, JapanWayne W Barkmeier - Department of General Dentistry, Creighton University School of Dentistry, Omaha, NE, USACarlos A Jurado - Clinical Digital Dentistry, A.T. Still University Arizona School of Dentistry & Oral Health, Mesa, AZ, USANicholas G Fischer - Minnesota Dental Research Center for Biomaterials and Biomechanics, University of Minnesota School of Dentistry, Minneapolis, MN, USAHidehiko Watanabe - Department of Restorative Dentistry, Oregon Health and Science University School of Dentistry, Portland, OR, USAAndrew G Baruth - Department of Physics, Creighton University College of Arts and Sciences, Omaha, NE, USAMark A Latta - Department of General Dentistry, Creighton University School of Dentistry, Omaha, NE, USAFranklin Garcia-Godoy - Department of Bioscience Research, University of Tennessee Health Science Center College of Dentistry, Memphis, TN, USA
- Resource Type
- Journal article
- Publication Details
- European journal of oral sciences, Vol.128(4), pp.354-360
- DOI
- 10.1111/eos.12701
- PMID
- 32395905
- ISSN
- 0909-8836
- eISSN
- 1600-0722
- Language
- English
- Date published
- 08/2020
- Academic Unit
- Prosthodontics; Operative Dentistry
- Record Identifier
- 9984176824502771
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