## Abstract This __in vitro__ study aimed to evaluate a pH‐cycling model for simulation of caries‐affected dentin (CAD) surfaces, by comparing the bond strength of etch‐and‐rinse adhesive systems on sound and artificially‐created CAD. Dentin substrates with different mineral contents and morphologi
The effect of loading on μTBS of four all-in-one adhesives on bonding to dentin
✍ Scribed by Sema Belli; Betül Özçopur; Cemal Yeşilyurt; Güneş Bulut; Xingzhe Ding; Greg Dorsman
- Publisher
- John Wiley and Sons
- Year
- 2009
- Tongue
- English
- Weight
- 608 KB
- Volume
- 91B
- Category
- Article
- ISSN
- 1552-4973
No coin nor oath required. For personal study only.
✦ Synopsis
Abstract
This in vitro study analyzed the effect of mechanical loading on microtensile bond strength (μTBS) to dentin of four all‐in‐one adhesives and compared with a total‐etch adhesive system. The tested adhesives were Danville Experimental (an unfilled single‐component adhesive containing a proprietary organophosphate and hydrophobic monomers; Danville Materials), G Bond (GC), Clearfil S^3^ Bond (Kuraray), AdheSE One (Vivadent), and Prelude Total‐Etch (Danville Materials). Dentin surfaces were exposed and composite resin (AP‐X, Kuraray) build‐ups were created. The samples were divided into two subgroups and the first subgroups were subjected to mechanical fatigue loading (5 × 10^4^; 50 Nat 0.2 Hz). Testing was performed after 1 week using a “nontrimming” μTBS test at a cross head speed of 1 mm/min. The data was calculated as MPa and statistically analyzed using Multivariate Analysis of Variance. Multiple comparisons were done using t‐test. Mechanical loading significantly decreased μTBS of the tested materials (p = 0.000). Prelude Total‐etch showed the highest bond strength values when compared to the tested all‐in‐one adhesives (p < 0.01). G Bond and Clearfil S^3^ Bond showed significantly higher bond strength values than Danville Experimental and AdheSE One (p < 0.01). © 2009 Wiley Periodicals, Inc. J Biomed Mater Res Part B: Appl Biomater, 2009
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