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Updated: Jul 31, 2025

Establishing a Diaphyseal Femur Fracture Model in Mice
Published on: December 9, 2022
Biological aspects to enhance fracture healing
Paul L Rodham1, Vasileios P Giannoudis1, Nikolaos K Kanakaris1,2
1Academic Department of Trauma & Orthopaedics, Leeds General Infirmary, Leeds, United Kingdom of Great Britain and Northern Ireland.
Abstract:
The ability to enhance fracture healing is paramount in modern orthopaedic trauma, particularly in the management of challenging cases including peri-prosthetic fractures, non-union and acute bone loss. Materials utilised in enhancing fracture healing should ideally be osteogenic, osteoinductive, osteoconductive, and facilitate vascular in-growth. Autologous bone graft remains the gold standard, providing all of these qualities. Limitations to this technique include low graft volume and donor site morbidity, with alternative techniques including the use of allograft or xenograft. Artificial scaffolds can provide an osteoconductive construct, however fail to provide an osteoinductive stimulus, and frequently have poor mechanical properties. Recombinant bone morphogenetic proteins can provide an osteoinductive stimulus; however, their licencing is limited and larger studies are required to clarify their role. For recalcitricant non-unions or high-risk cases, the use of composite graft combining the above techniques provides the highest chances of successfully achieving bony union.
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