Degradation Potential of Bulk Versus Incrementally Applied and Indirect Composites: Color, Microhardness, and Surface Deterioration

Author:

El Gezawi M1,Kaisarly D2,Al-Saleh H3,ArRejaie A4,Al-Harbi F5,Kunzelmann KH6

Affiliation:

1. Moataz El Gezawi, BDS, MDSc, DDSc, Restorative Dental Sciences Department, College of Dentistry, University of Dammam, Dammam, Saudi Arabia

2. Dalia Kaisarly, BDS, MDSc, PhD, Department of Conservative Dentistry and Periodontology, LMU Munich, Munich, Germany; Biomaterials Department, Faculty of Oral and Dental Medicine, Cairo University, Cairo, Egypt

3. Hamad Al-Saleh, Restorative Dental Sciences Department, College of Dentistry, University of Dammam, Dammam, Saudi Arabia

4. Aws ArRejaie, BDS, DScD, FRCD, Prosthetic Dental Science, College of Dentistry, King Saud University, Saudi Arabia

5. Fahad Al-Harbi, BDS, MSD, FACP, DScD, Department of Substitutive Dental Sciences, College of Dentistry, University of Dammam, Dammam, Saudi Arabia

6. Karl-Heinz Kunzelmann, PhD, Department of Conservative Dentistry and Periodontology, LMU Munich, Munich, Germany

Abstract

SUMMARY This study investigated the color stability and microhardness of five composites exposed to four beverages with different pH values. Composite discs were produced (n=10); Filtek Z250 (3M ESPE) and Filtek P90 (3M ESPE) were applied in two layers (2 mm, 20 seconds), and Tetric N-Ceram Bulk Fill (TetricBF, Ivoclar Vivadent) and SonicFill (Kerr) were applied in bulk (4 mm) and then light cured (40 seconds, Ortholux-LED, 1600 mW/cm2). Indirect composite Sinfony (3M ESPE) was applied in two layers (2 mm) and cured (Visio system, 3M ESPE). The specimens were polished and tested for color stability; ΔE was calculated using spectrophotometer readings. Vickers microhardness (50 g, dwell time=45 seconds) was assessed on the top and bottom surfaces at baseline, 40 days of storage, subsequent repolishing, and 60 days of immersion in distilled water (pH=7.0), Coca-Cola (pH=2.3), orange juice (pH=3.75), or anise (pH=8.5) using scanning electron microscopy (SEM). The materials had similar ΔE values (40 days, p>0.05), but TetricBF had a significantly greater ΔE than P90 or SF (40 days). The ΔE was less for P90 and TetricBF than for Z250, SonicFill, and Sinfony (60 days). Repolishing and further immersion significantly affected the ΔE (p<0.05) except for P90. All composites had significantly different top vs bottom baseline microhardnesses. This was insignificant for the Z250/water, P90/orange juice (40 days), and Sinfony groups (40 and 60 days). Immersion produced variable time-dependent deterioration of microhardness in all groups. Multivariate repeated measures analysis of variance with post hoc Bonferroni tests were used to compare the results. ΔE and microhardness changes were significantly inversely correlated at 40 days, but this relationship was insignificant at 60 days (Pearson test). SEM showed degradation (40 days) that worsened (60 days). Bulk-fill composites differ regarding color-stability and top-to-bottom microhardness changes compared with those of other composites. P90 showed better surface degradation resistance. In conclusion, bulk-fill composites are not promising alternatives to incremental and indirect composites regarding biodegradation.

Publisher

Operative Dentistry

Subject

General Dentistry

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