Fatigue Failure Load of Restored Premolars: Effect of Etching the Intaglio Surface of Ceramic Inlays With Hydrofluoric Acid at Different Concentrations

Author:

Missau T1,Venturini AB2,Pereira GKR3,Prochnow C4,Valandro LF5,Rippe MP6

Affiliation:

1. Taiane Missau, DDS, MSc, Restorative Dentistry–Prosthodontics, Federal University of Santa Maria, Santa Maria, Brazil

2. Andressa Borin Venturini, DDS, MSc, PhD (c), Restorative Dentistry–Prosthodontics, Federal University of Santa Maria, Santa Maria, Brazil

3. Gabriel Kalil Rocha Pereira, DDS, MSc, PhD, researcher and assistant professor, MSciD Graduate Program–School of Dentistry, Meridional Faculty – IMED, Passo Fundo, Brazil.

4. Catina Prochnow, DDS, MSc, PhD (c), Restorative Dentistry–Prosthodontics, Federal University of Santa Maria, Santa Maria, Brazil

5. Luiz Felipe Valandro, DDS, MSc, PhD, associate professor, Restorative Dentistry–Prosthodontics, Federal University of Santa Maria, Santa Maria, Brazil

6. Marília Pivetta Rippe, DDS, MSc, PhD, adjunct professor, Restorative Dentistry–Prosthodontics, Federal University of Santa Maria, Santa Maria, Brazil

Abstract

SUMMARY The aim of this study was to evaluate the effect of etching, with different hydrofluoric acid concentrations at the intaglio surface of feldspathic ceramic inlays, on the fatigue failure load of restored premolars. A total of 60 upper premolars were embedded in plastic cylinders with acrylic resin (up to 3 mm below the cement-enamel junction) and prepared using a device specially designed for that purpose. Teeth were randomly assigned to three groups (n=20): HF1, HF5, and HF10 (etching with hydrofluoric acid for 60 seconds at concentrations of 1%, 5%, and 10%, respectively). Preparations were scanned and restorations were milled by a computer-aided design / computer-aided manufacturing system. The inner surfaces of the inlays were etched and received an application of a silane coupling agent; the dentin and enamel were treated appropriately for the luting system (RelyX ARC, 3M-ESPE). The restorations were cemented and the fatigue failure load (in N) was determined using the staircase method (10 Hz; 105 cycles in each step). The initial load (585.5 N) was applied on the slopes of the cusps (labial and palatal/lingual, simultaneously) through a cylinder attached to the test machine (Instron ElectroPuls E3000). The tested samples were analyzed under a stereomicroscope for failure analysis. Fatigue data were analyzed by one-way analysis of variance. There was no statistical difference among the fatigue failure loads (in N): HF1 (448.5±79.1), HF5 (360.7±55.4), and HF10 (409.5±121.1). Regarding the fracture mode, there was a predominance of interfacial fracture (50%), followed by cusp fracture (34.6%). It may be concluded that the etching with hydrofluoric acid at the tested concentrations (1%, 5%, and 10%) does not influence the fatigue failure load of feldspathic ceramic inlays cemented on premolars.

Publisher

Operative Dentistry

Subject

General Dentistry

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