Effect of Diode Laser (810 nm) Irradiation on Marginal Microleakage of Multi-mode Adhesive Resins in Class V Composite Restorations
Journal of Lasers in Medical Sciences,
Vol. 10 No. 4 (2019),
1 October 2019
,
Page 275-282
Abstract
Introduction: Some studies have shown that laser irradiation on unpolymerized adhesives can improve composite-dentin adhesion. The aim of the present study was to evaluate the effect of the Diode laser (810 nm) on the microleakage of multi-mode adhesive systems at enamel and dentin margins of composite restorations.
Methods: Classic Class V boxes were prepared on 48 sound premolar teeth and randomly divided into six groups (n=16). In the control groups, Scotch bond U(SBC), G-Premio (GBC), and Ambar U (AMC) were used by a self-etch mode. In the test groups (SBL, GBL, ABL), the 810 nm Diode laser was irradiated (1 Watt) for 10 seconds before the polymerization of the adhesive. The Boxes were restored by the resin composite. After finishing and polishing, the samples were thermocycled (5℃ to55℃) for 1000 cycles and then immersed in 0.1% Methylene blue dye (48 hours). Dye penetration through the gingival and occlusal margins was measured by Stereomicroscope. The data were analyzed at the 5% significance level using Kruskal-Wallis and Mann-Whitney U tests.
Results: Significant differences were found between the control and test groups (p<0.05). The occlusal margins of the SBL and GBL groups and the cervical margin of the SBL group exhibited the lowest microleakage (p<0.05). The AM control group showed maximum microleakage at cervical and occlusal margins.
Conclusions: The irradiation of the 810 nm Diode laser on the unpolymerized universal adhesive systems in a self-etch mode caused a significant reduction in enamel and dentin marginal microleakage of composite restorations.
- Adhesive
- Lasers
- Dental leakage
- dentin bonding agent
- Diode Lasers
How to Cite
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