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Updated: Aug 9, 2025

Novel Diagnostics in Revision Arthroplasty: Implant Sonication and Multiplex Polymerase Chain Reaction
Published on: December 3, 2017
Advances in the Microbiological Diagnosis of Prosthetic Joint Infections
Maria Eugenia Portillo1, Ignacio Sancho2
1Department of Clinical Microbiology, University Hospital of Navarra, Institute of Healthcare Research of Navarra IdiSNA, 31008 Pamplona, Spain.
Abstract:
A significant number of prosthetic joint infections (PJI) are culture-negative and/or misinterpreted as aseptic failures in spite of the correct implementation of diagnostic culture techniques, such as tissue sample processing in a bead mill, prolonged incubation time, or sonication of removed implants. Misinterpretation may lead to unnecessary surgery and needless antimicrobial treatment. The diagnostic value of non-culture techniques has been investigated in synovial fluid, periprosthetic tissues, and sonication fluid. Different feasible improvements, such as real-time technology, automated systems and commercial kits are now available to support microbiologists. In this review, we describe non-culture techniques based on nucleic acid amplification and sequencing methods. Polymerase chain reaction (PCR) is a frequently used technique in most microbiology laboratories which allows the detection of a nucleic acid fragment by sequence amplification. Different PCR types can be used to diagnose PJI, each one requiring the selection of appropriate primers. Henceforward, thanks to the reduced cost of sequencing and the availability of next-generation sequencing (NGS), it will be possible to identify the whole pathogen genome sequence and, additionally, to detect all the pathogen sequences present in the joint. Although these new techniques have proved helpful, strict conditions need to be observed in order to detect fastidious microorganisms and rule out contaminants. Specialized microbiologists should assist clinicians in interpreting the result of the analyses at interdisciplinary meetings. New technologies will gradually be made available to improve the etiologic diagnoses of PJI, which will remain an important cornerstone of treatment. Strong collaboration among all specialists involved is essential for the correct diagnosis of PJI.
Insights
Culture-negative prosthetic joint infections (PJI) pose diagnostic challenges. Nucleic acid amplification and sequencing methods, like polymerase chain reaction (PCR) and next-generation sequencing (NGS), offer promising non-culture techniques for accurate PJI diagnosis.
Area of Science:
- Microbiology
- Molecular Diagnostics
- Orthopedic Surgery
Background:
- Prosthetic joint infections (PJI) are often culture-negative, leading to misdiagnosis as aseptic failures.
- Misinterpretation can result in inappropriate interventions, including unnecessary surgeries and antimicrobial therapies.
- Current diagnostic methods, while improving, still face limitations in detecting all causative pathogens.
Purpose of the Study:
- To review non-culture diagnostic techniques for prosthetic joint infections (PJI).
- To highlight the role of nucleic acid amplification and sequencing in improving PJI diagnosis.
- To discuss the potential and challenges of emerging molecular diagnostic technologies.
Main Methods:
- Review of non-culture techniques, focusing on nucleic acid amplification and sequencing.
- Discussion of polymerase chain reaction (PCR) and its variations for PJI detection.
- Exploration of next-generation sequencing (NGS) for comprehensive pathogen identification.
Main Results:
- Non-culture techniques, including PCR and NGS, show significant diagnostic value in synovial fluid, periprosthetic tissues, and sonication fluid.
- These molecular methods can detect a broader range of pathogens, including fastidious microorganisms.
- NGS enables whole pathogen genome sequencing and detection of multiple pathogen sequences within the joint.
Conclusions:
- Advanced molecular techniques like PCR and NGS are crucial for improving the etiologic diagnosis of PJI.
- Strict adherence to protocols is necessary to minimize contamination and detect difficult-to-grow organisms.
- Interdisciplinary collaboration between microbiologists and clinicians is essential for accurate PJI diagnosis and effective treatment.
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