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Updated: Jan 15, 2026

Novel Diagnostics in Revision Arthroplasty: Implant Sonication and Multiplex Polymerase Chain Reaction
Published on: December 3, 2017
Phage therapy in revision arthroplasty: State of the art and application protocols
Julius Michael Wolfgart1,2, Hanno Schenker3, Matthias Gatz3
1Department of Orthopaedic, Trauma, and Reconstructive Surgery, Division of Arthroplasty and Tumour Surgery, RWTH University Hospital, 52074, Aachen, Germany. jwolfgart@ukaachen.de.
Introduction:
Periprosthetic joint infections (PJI) pose significant clinical challenges due to biofilm formation and antibiotic resistance. Standard treatment often involves implant removal and prolonged antibiotic therapy. Novel strategies target intracellular pathogens and biofilm-associated bacteria, including liposomal antibiotics, antimicrobial peptides, and bacteriophage therapy. Bacteriophages offer specificity and minimal disruption to human microbiota but remain experimental in PJI. Combining phages with targeted antibiotics shows promising results in preclinical models, though further research is needed to confirm efficacy in human PJI and optimise delivery methods.
Objectives:
This study updates the current evidence on the use of bacteriophages for patients with PJI, proposing guidelines for their clinical application.
Method:
PubMed was searched for articles containing phage therapy in revision arthroplasty. No additional filters or time constraints were used. All eligible studies were accessed by hand.
Results:
A total of 39 studies (20 clinical, 19 reviews) on phage therapy for PJI were analysed, covering 56 patients. Of those, negative outcomes were only reported in five. Most studies involved elderly patients with periprosthetic infections of the knee or hip and showed high success rates when combined with antibiotics and surgery. Phage therapy was well tolerated, with only mild adverse effects, such as fever and reversible transaminitis, occurring predominantly with intravenous administration. Review articles reveal that despite promising outcomes, challenges remain, including a lack of standardisation, limited clinical data, and regulatory hurdles.
Conclusion:
This study highlights the potential of phage therapy for PJI, emphasising its high specificity, ability to target antibiotic-resistant bacteria, and capacity to disrupt biofilms, and provides a guideline for its clinical administration. Clinical adoption, however, remains limited by regulatory barriers, lack of standardised protocols, and insufficient trial data. Key steps for implementation include establishing regulatory frameworks, developing academic-industrial partnerships and reference centres, and identifying indications supported by controlled trials. With these in place, phage therapy could become a promising adjunct in managing periprosthetic joint infections. Video Abstract.
Insights
Bacteriophage therapy shows promise for treating periprosthetic joint infections (PJI), effectively targeting antibiotic-resistant bacteria and biofilms. Further research and regulatory advancements are needed for widespread clinical adoption.
Area of Science:
- Orthopedics
- Infectious Diseases
- Microbiology
Background:
- Periprosthetic joint infections (PJI) present significant challenges due to biofilm formation and antibiotic resistance.
- Current treatments like implant removal and prolonged antibiotics are often insufficient.
- Novel strategies, including bacteriophage therapy, are being explored to combat resistant pathogens.
Purpose of the Study:
- To review current evidence on bacteriophage therapy for PJI.
- To propose guidelines for the clinical application of phages in PJI management.
Main Methods:
- A comprehensive search of PubMed for studies on phage therapy in revision arthroplasty.
- Analysis of 39 studies, including clinical cases and review articles.
- Hand-accessed retrieval of all eligible studies.
Main Results:
- Phage therapy was analyzed across 39 studies involving 56 patients with PJI.
- High success rates were observed, particularly when phages were combined with antibiotics and surgery.
- Phage therapy was generally well-tolerated, with mild adverse effects noted, primarily with intravenous administration.
Conclusions:
- Bacteriophage therapy demonstrates significant potential for PJI due to its specificity and biofilm-disrupting capabilities.
- Clinical implementation faces hurdles including regulatory barriers, lack of standardization, and limited trial data.
- Establishing regulatory frameworks and conducting controlled trials are crucial for integrating phage therapy into PJI treatment protocols.
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