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  3. Titanium Base-Free Multi-Unit Abutment Connections: A Critical Review of Prosthetic Screw Design, Biomechanical Behavior, and Clinical Performance.
 

Titanium Base-Free Multi-Unit Abutment Connections: A Critical Review of Prosthetic Screw Design, Biomechanical Behavior, and Clinical Performance.

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BORIS DOI
10.48620/98661
Publisher DOI
10.3390/ma19112212
PubMed ID
42279866
Description
Titanium base-free multi-unit abutment (MUA) restorations have been introduced to simplify implant prosthetic workflows by eliminating intermediate titanium bases and bonding interfaces. However, this approach modifies the biomechanical behavior of the prosthesis-abutment-implant complex and increases reliance on prosthetic screw performance. Despite growing clinical and commercial interest in these systems, the available evidence remains limited and fragmented, and the biomechanical consequences of removing the titanium base have not been clearly synthesized. Therefore, this critical review evaluated the influence of prosthetic screw design on the biomechanical behavior of titanium base-free MUA restorations, focusing on preload maintenance, load transfer, and mechanical stability. The evidence indicates that preload loss, screw loosening, and fatigue behavior are primary determinants of mechanical performance. Screw material, surface characteristics, and head geometry may affect preload generation, load distribution, and resistance to micromovement, although current evidence remains limited and heterogeneous. Short-term clinical outcomes appear acceptable when appropriate biomechanical and prosthetic protocols are followed; however, long-term comparative data are lacking. Titanium base-free MUA restorations should be considered a technique-sensitive approach requiring optimized screw selection, accurate prosthetic fit, and controlled occlusal loading. Further well-designed long-term studies are needed to establish their predictability.
Date of Publication
2026-05-24
Publication Type
Article
Subject(s)
600 Technology > 610 Medicine & health
Keyword(s)
biomechanical phenomena
•
computer-aided design
•
computer-aided manufacturing
•
dental abutments
•
dental implants
•
dental prosthesis
•
implant-supported
•
mechanical
•
prosthesis design
•
stress
•
titanium base-free
•
zirconium oxide
Language(s)
en
Contributor(s)
Mosaddad, Seyed Ali
Rodríguez-Pérez, Iker
Pieralli, Stefano
Beuer, Florian
Molinero-Mourelle, Pedro
School of Dental Medicine, Department of Reconstructive Dentistry and Gerodontology
Çakmak, Gülce
School of Dental Medicine, Department of Reconstructive Dentistry and Gerodontology
Additional Credits
School of Dental Medicine, Department of Reconstructive Dentistry and Gerodontology
Series
Materials
Publisher
MDPI
ISSN
1996-1944
Access(Rights)
open.access
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