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Case report: Local bacteriophage therapy for fracture-related infection with polymicrobial multi-resistant bacteria:
Volker Alt1, André Gessner2, Maya Merabishvili3
1Department of Trauma Surgery, University Hospital Regensburg, Regensburg, Germany.
Abstract:
Fracture-related infections can be challenging, particularly with concomitant severe bone defects and multi-resistant microorganisms. We present a case of a 42-year-old patient with a fracture-related infection following a war injury from a gunshot, resulting in a 12-cm subtrochanteric segmental bone defect and the detection of four different multi-resistant Gram-negative bacteria. Due to antibiotic drug resistance, treatment with bacteriophages was considered. Phage susceptibility testing revealed the activity of a commercially available bacteriophage cocktail (Intesti bacteriophage, Eliava Institute, Tbilisi, Georgia). This phage cocktail was included in a modified two-stage Masquelet technique. During the first intervention, the bone was debrided and samples for microbiological and phage testing were harvested. The indwelling intramedullary rod was removed, and the bone defect was filled with a PMMA spacer loaded with colistin and the bone stabilized with a plate. During the second procedure, the PMMA spacer was removed and a silver-coated angular stable plate was implanted. The bone defect was filled with a fibular autograft and allograft cancellous bone chips. At the end of the procedure, the Intesti bacteriophage cocktail was injected into a DAC hydrogel and this bacteriophage hydrogel composite was then put onto the angular stable plate. Postoperatively the wound fluid was collected over 72 h, and high-throughput metagenomic sequencing was performed. This showed a time-dependent release of the bacteriophages in the wound fluid, with a relatively high concentration after 12 h, decreasing to DNA copies of 0 after 72 h. Furthermore, we have assessed the release of phages from DAC gel and the effect of DAC gel on the phages in vitro. The results showed a stable and rapid release of phages from the DAC gel (~1×103 PFU/mL). The clinical course of the patient showed no relapse of the infection with good bone consolidation of the bone defect after 1 year without the need for any surgical revision. To the best of our knowledge, this is the first case that shows the detection of bacteriophage DNA copies by high-throughput metagenomics sequencing in a patient with a complex fracture-related infection. Successful treatment of this case encourages further investigation of bacteriophage therapy in patients with complex bone and joint infections.
Insights
Bacteriophage therapy successfully treated a complex fracture-related infection with multi-resistant bacteria and a large bone defect. This innovative approach, using a bacteriophage cocktail in a hydrogel, offers a promising alternative for challenging orthopedic infections.
Area of Science:
- Orthopedics and Traumatology
- Infectious Diseases
- Microbiology
Background:
- Fracture-related infections (FRIs) pose significant challenges, especially with extensive bone defects and antibiotic-resistant pathogens.
- War injuries can lead to complex FRIs with severe bone loss and polymicrobial infections.
- Multi-resistant Gram-negative bacteria complicate the management of FRIs, limiting conventional treatment options.
Observation:
- A 42-year-old patient presented with a 12-cm subtrochanteric segmental bone defect and a severe FRI caused by four multi-resistant Gram-negative bacteria following a gunshot wound.
- Conventional antibiotic therapy was insufficient due to widespread drug resistance.
- A commercially available bacteriophage cocktail demonstrated in vitro activity against the identified multi-resistant bacteria.
Findings:
- The bacteriophage cocktail was integrated into a modified two-stage Masquelet technique, utilizing a polymethyl methacrylate (PMMA) spacer and subsequently a fibular autograft/allograft.
- The bacteriophages were loaded into a DAC hydrogel and applied during the second surgical stage.
- High-throughput metagenomic sequencing confirmed a time-dependent release of bacteriophages from the hydrogel in vivo, with detectable levels up to 72 hours post-application.
- In vitro studies showed a stable and rapid release of bacteriophages from the DAC hydrogel.
Implications:
- This case represents the first documented use of bacteriophage DNA detection via high-throughput metagenomics in a complex FRI.
- The successful clinical outcome, with no infection relapse and good bone consolidation after one year, supports bacteriophage therapy as a viable treatment for complex FRIs.
- Further research into bacteriophage therapy for bone and joint infections is warranted, particularly for cases involving antibiotic resistance and significant bone defects.
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