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Purpose: Bilayered restorations have both the strength of the substructure material and the esthetics of the veneer material; however, they should have appropriate bonding between the two materials. This study aimed to evaluate the shear bond strength (SBS) according to the substructure material and veneering technique used in bilayered restorations.
Materials And Methods: The experimental group was divided into four groups (n = 15 per group) based on the substructure materials (cobalt-chromium [Co-Cr] alloy and 3 mol% yttrium-stabilized tetragonal zirconia polycrystal [3Y-TZP]) and veneering techniques (pressing and layering). Veneering was performed with disk shape (diameter: 5 mm, height: 2 mm) on a substructure using each veneering technique. Shear stress was applied to the interface of the substructure and the veneering ceramic using a universal testing machine. The shear bond strength, according to the substructure and veneering technique, was analyzed using a two-way analysis of variance with a post-hoc Tukey's honestly significant difference test. The failure mode was observed, and the surface was analyzed using a scanning electron microscope and energy-dispersive spectroscopy.
Results: The shSBS of the Co-Cr alloy and 3Y-TZP substructure was not different (p > 0.05); however, the pressing technique showed a higher SBS than the layering technique (p < 0.05). The SBS did not differ depending on the veneering technique in the Co-Cr alloys (p > 0.05), whereas the SBS in the pressing technique was higher than that in the layering technique for 3Y-TZP (p < 0.05). In the layering technique, the Co-Cr alloy showed a higher SBS than 3Y-TZP (p < 0.05). In the failure mode, mixed failure occurred most frequently in all groups. Extensive elemental interdiffusion was observed through the opaque layer in the Co-Cr alloy, regardless of the veneering technique. In 3Y-TZP, a wider range of elemental interdiffusion was observed in the pressing technique than in the layering technique.
Conclusions: In bilayered restorations with a 3Y-TZP substructure, the pressing technique yielded higher bonding strength than layering. Using the layering technique, 3Y-TZP showed a lower SBS than the Co-Cr alloy. In bilayered restorations using 3Y-TZP as a substructure, the veneering technique and thermal compatibility of the materials must be considered.
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http://dx.doi.org/10.1111/jopr.13889 | DOI Listing |
J Prosthet Dent
September 2025
Full Professor and Department Head, Department of Prosthodontics, University of Heidelberg, Heidelberg, Germany.
Statement Of Problem: Despite high survival rates of implant-supported single crowns, retention loss remains common and decementation of crowns can compromise long-term stability, patient satisfaction, and treatment costs. Limited long-term evidence on cement type, abutment design, and materials requires further research to optimize clinical outcomes.
Purpose: The aim of this retrospective clinical study was to analyze the survival and decementation rates of zirconia and metal-ceramic implant-supported crowns in combination with different abutments (prefabricated or custom and unabraded or airborne-particle abraded).
Dent Mater
September 2025
Dental Materials Science, Applied Oral Sciences and Community Dental Care, Faculty of Dentistry, The University of Hong Kong, Hong Kong. Electronic address:
Objectives: This study aims to enhance precision in Digital Light Processing (DLP) 3D printing for ultra-thin zirconia dental prostheses by systematically evaluating key accuracy-influencing factors beyond isolated parameter optimizations.
Methods: Four critical factors, namely, light curing fidelity, support structure stability, asymmetric sintering shrinkage, and whole-process deformation, were analyzed. Parametric optimizations were applied across these stages to improve accuracy, utilizing a 70 μm resolution DLP system to fabricate ultra-thin zirconia veneers (0.
J Prosthodont Res
September 2025
Department of Prosthodontics, Medical Faculty and University Hospital Düsseldorf, Heinrich-Heine-University, Düsseldorf, Germany.
Purpose: To investigate the effect of ceramic material (lithium disilicate, LDS vs. composition-gradient multilayered zirconia [4Y-PSZ and 5-PSZ], Z) and ceramic layer thickness (0.5 mm, 1.
View Article and Find Full Text PDFInt J Prosthodont
September 2025
Purpose: To evaluate current surgical and prosthetic concepts in adult patients requiring complete tooth extraction for immediate implant placement and restoration in full-arch situations.
Materials And Methods: A narrative review was conducted using a comprehensive search strategy on MEDLINE via PubMed based on the PIO question to identify studies published up to October 2024. Data on treatment strategies, survival and success rates, marginal bone loss (MBL), peri-implant health, patient satisfaction, and quality of life (QoL) were extracted and synthesized.
Cureus
July 2025
Prosthodontics, Faculty of Dental Medicine, Mohammed V University, Rabat, MAR.
This article presents a clinical case where layered zirconia veneers were used to restore the patient's function and aesthetics. Composite direct layering restoration is a difficult therapeutic option that can lead to aesthetic and functional failure. Zirconia has come a long way since its introduction, and now layered zirconia veneers have become a popular option in prosthodontics due to their exceptional mechanical properties and aesthetic appeal.
View Article and Find Full Text PDF