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February 16, 20260 citationsOpen Access

Structure–Property–Function Evaluation of a β-Type Ti–Nb–Zr Alloy for Dental Implant Applications with Short-Term Clinical Validation

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DJDeukwon JoSBSoo-Hwan ByunSPSang-Yoon Park

Key Points

  • This research assesses the structure-property-function relationship of a Ti-Nb-Zr alloy for dental implants and its clinical performance.
  • Evaluated tensile properties and fatigue resistance of TNZ compared to MG4T
  • Conducted a randomized controlled clinical trial with 80 participants
  • Assessed clinical outcomes including implant success and survival, peri-implant soft tissue parameters, and adverse events
  • TNZ demonstrated superior fatigue resistance compared to MG4T
  • Both TNZ and MG4T implants achieved 100% implant success and survival
  • No implant-related adverse events were reported
  • Fractal dimension analysis indicated time-dependent bone remodeling

Abstract

Titanium-based alloys are widely used in dental implantology; however, the mechanical limitations of commercially pure titanium (cpTi) and unresolved concerns regarding stress shielding remain. This study evaluated the structure–property–function relationship of a novel β-type titanium–niobium–zirconium (Ti–Nb–Zr; TNZ) alloy for dental implant applications. Laboratory testing assessed the elemental composition, tensile properties, and fatigue resistance of the cpTi, compared with modified Grade 4 cpTi (MG4T). In parallel, a randomized, single-blind, controlled clinical trial was conducted over 12 months to compare the clinical performance of TNZ and MG4T implants under functional loading. A total of 80 participants (mean age: 54.2 years; 43 females, 37 males) were enrolled, with 77 completing the 12-month follow-up (TNZ: n = 38; MG4T: n = 39). Clinical outcomes included implant success and survival, peri-implant soft tissue parameters, marginal bone levels, fractal dimension (FD) analysis of trabecular bone, and adverse events. TNZ implants demonstrated superior fatigue resistance without an increase in the elastic modulus relative to MG4T. Clinically, both groups achieved 100% implant success and survival, with no implant-related adverse events. FD analysis revealed time-dependent bone remodeling without evidence of pathological adaptation. These findings support the functional viability of TNZ as a mechanically robust, biocompatible implant material. Further long-term, multicenter trials are warranted to confirm sustained clinical benefits and broader applicability.

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Cite This Study

Jo et al. (2026) studied this question.

synapsesocial.com/papers/69926503eb1f82dc367a0e47https://doi.org/10.3390/jfb17020096
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1ADVANCES IN TNZT ALLOYS FOR BIOMEDICAL APPLICATIONS: MECHANICAL PERFORMANCE, TRIBOLOGICAL BEHAVIOR, AND SURFACE MODIFICATION STRATEGIES2026
  2. 2Tribological Investigations of the Novel Titanium Alloy TNTZ-O for Dental Implant Applications: Subsequent Results of a Comparative Study2025
  3. 3Microstructure, Hardness and EIS Evaluation of Ti-15Zr-5Nb Dental Alloy2024 · 1 citations
  4. 4Multifunctional Hybrid Material for Endoprosthetic Implants Based on Alumina-Toughened Zirconia Ceramics and Additively Manufactured TiNbTa Alloy2024
  5. 5Computational Design and Development of a Potent Nano‐Structured Zr–Nb Alloy for Dental Implants2026