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Effect of Erosive‐Abrasive Challenge and Surface Finishing Protocols on Optical Properties and Microhardness of CAD‐CAM Ceramics

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Wiley

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PURPOSE: To evaluate the effect of erosive-abrasive challenge on the optical properties, microhardness, and surface morphology of CAD-CAM ceramics with different surface finishing protocols. METHODS: CAD-CAM ceramics used were: IPS e.max CAD (DIS), IPS Empress CAD (LEU), Cerec Blocs (FEL), and Celtra Duo (CEL). Specimens were divided into five groups (n = 10): Polishing (P), Conventional Glaze (CG-control), Conventional Glaze with 2 firings (CG<sub>2</sub>), Extended Glaze firing (EG), and Extended Glaze with 2 firings (EG<sub>2</sub>). An erosive-abrasive challenge was performed with citric acid and simulated toothbrushing. Color change (ΔE<sub>00</sub>), translucency, contrast ratio, gloss, Vickers microhardness, and surface morphology were evaluated. The evaluations were performed before and after the erosive-abrasive challenge. ΔE<sub>00</sub> was analyzed with one-way ANOVA with Welch correction and Games-Howell, while the other data were evaluated with two-way repeated measures ANOVA and Bonferroni post-test (α = 0.05%). RESULTS: After the challenge, CG groups showed clinically unacceptable color changes. Translucency decreased in LEU-P, FEL-P, FEL-EG, and CEL-EG groups, but increased in DIS-CG<sub>2</sub>, DIS-EG<sub>2</sub>, and CEL-EG groups. The contrast ratio was close to 1. No gloss reduction was observed in CG groups. Microhardness decreased in DIS-EG, DIS-EG<sub>2</sub>, LEU, FEL, and CEL groups, but remained unchanged in LEU-CG, FEL-CG<sub>2</sub>, and CEL-EG<sub>2</sub> groups. CONCLUSION: Erosive-abrasive challenge affected the properties of CAD-CAM ceramics with different behaviors depending on the surface finishing protocol used. CLINICAL SIGNIFICANCE: The optical properties and microhardness of CAD-CAM ceramics are negatively affected by erosive-abrasive conditions. Manual polishing showed similar performance in maintaining these properties and may represent a viable and effective alternative to glaze application.

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Araraquara, Faculdade de Odontologia - FOAR
FOAR
Campus: Araraquara

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