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Titanium versus Biodegradable Implants for Fracture Fixation: A Retrospective Comparative Study.
Wajid Ullah1, Aierbanjiang Shali1, Alimujiang Abulaiti1,2
1Department of Trauma and Microreconstructive Surgery, The First Affiliated Hospital of Xinjiang Medical University, Urumqi, Xinjiang, People's Republic of China.
Orthopedic Research and Reviews
|April 20, 2026
Summary
Biodegradable implants reduce secondary surgeries for limb fractures, but titanium offers superior strength for diaphyseal fractures. This comparison aids in selecting appropriate fracture fixation implants.
Area of Science:
- Orthopedic surgery
- Biomaterials science
- Trauma management
Background:
- Titanium alloy implants provide mechanical stability but necessitate removal surgeries.
- Biodegradable implants avoid removal but raise concerns about mechanical strength in load-bearing applications.
- This study compares titanium and biodegradable implants for limb and pelvic fractures, evaluating the trade-off between rigidity and secondary surgery burden.
Purpose of the Study:
- To compare the clinical outcomes of titanium versus biodegradable implants in fracture fixation.
- To assess implant palpability, reoperation rates, and the need for secondary surgeries.
- To evaluate the suitability of each implant type based on fracture location and weight-bearing requirements.
Main Methods:
- Retrospective cohort study of 73 patients (November 2021 - August 2024).
- Groups: Titanium (n=40, diaphyseal fractures) and Biodegradable (n=33, metaphyseal/peri-articular fractures).
- Outcomes assessed: implant palpability, reoperation rates, and stratified analysis for weight-bearing fractures.
Main Results:
- Titanium implants showed significantly higher palpability (45.0% vs 9.1%) and reoperation rates (35.0% vs 9.1%).
- Elective removal for discomfort was common with titanium (17.5%) but absent with biodegradable implants.
- Biodegradable implants reduced palpability in weight-bearing fractures without increasing complications, but refractures occurred (9.1% vs 0%).
Conclusions:
- Biodegradable implants are advantageous for metaphyseal/peri-articular fractures, reducing palpability and elective removal surgeries.
- Titanium remains preferred for diaphyseal fractures due to its superior mechanical stability.
- Study limitations include retrospective design and fracture site heterogeneity.

