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Updated: Sep 7, 2026

Treatment with Vancomycin Loaded Calcium Sulphate and Autogenous Bone in an Improved Rabbit Model of Bone Infection
Published on: March 14, 2019
Combined application of antibiotic bone cement and bone transport technique in tibial osteomyelitis with bone defect:
Jie Wang1, Bowen Song, Honghao Xu
1Affiliated Hospital of Shandong University of Traditional Chinese Medicine, Jinan, Shandong Province, China.
Rationale:
Management of post-traumatic tibial osteomyelitis accompanied by substantial segmental bone defects (>5 cm) presents a formidable clinical challenge, primarily due to biofilm-associated persistent infections and the inherent complexities of bone regeneration. Single-stage interventions are often insufficient for such complex lesions. This case report demonstrates the value of a staged protocol integrating antibiotic-loaded bone cement (ALBC) with bone transport, which sequentially addresses infection and mechanical bone discontinuity.
Patient Concerns:
A 54-year-old male presented with chronic tibial osteomyelitis and a 6 cm segmental bone defect following internal fixation for an open fracture.
Diagnoses:
Post-traumatic chronic tibial osteomyelitis with a 6 cm segmental tibial bone defect.
Interventions:
Staged surgical management was adopted. The first stage included radical debridement, implant removal, infected bone resection, ALBC spacer implantation, and external fixation. After a 3-month interval for infection eradication, the second-stage surgery was performed, consisting of cement removal, antibiotic-impregnated calcium sulfate implantation, and bone transport via distraction osteogenesis at 1 mm/day. Autologous iliac bone grafting was utilized to achieve docking-site union.
Outcomes:
Final bony union was achieved at the docking site.
Lessons:
This staged approach combining ALBC with bone transport is a viable strategy for complex tibial osteomyelitis with large bone defects. ALBC first creates a sterile and mechanically stable environment, which serves as a critical prerequisite for the success of subsequent reconstructive bone-transport procedures.