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Updated: Jan 20, 2026

Author Spotlight: Advancing Research on Candida albicans Biofilm-Associated Prosthetic Joint Infections
Published on: February 2, 2024
Optimal Periprosthetic Tissue Specimen Number for Diagnosis of Prosthetic Joint Infection
Trisha N Peel1,2, Tim Spelman3, Brenda L Dylla1
1Division of Clinical Microbiology, Department of Laboratory Medicine and Pathology, Mayo Clinic, Rochester, Minnesota, USA.
Abstract:
We recently demonstrated improved sensitivity of prosthetic joint infection (PJI) diagnosis using an automated blood culture bottle system for periprosthetic tissue culture [T. N. Peel et al., mBio 7(1):e01776-15, 2016, https://doi.org/10.1128/mBio.01776-15]. This study builds on the prior research by examining the optimal number of periprosthetic tissue specimens required for accurate PJI diagnosis. Current guidelines recommend five to six, which is impractical. We applied Bayesian latent class modeling techniques for estimating diagnostic test properties of conventional culture techniques (aerobic and anaerobic agars and thioglycolate broth) compared to inoculation into blood culture bottles. Conventional, frequentist receiver operating characteristic curve analysis was conducted as a sensitivity analysis. The study was conducted at Mayo Clinic, Rochester, MN, from August 2013 through April 2014 and included 499 consecutive patients undergoing revision arthroplasty from whom 1,437 periprosthetic tissue samples were collected and processed. For conventional periprosthetic tissue culture techniques, the greatest accuracy was observed when four specimens were obtained (91%; 95% credible interval, 77 to 100%), whereas when using inoculation of periprosthetic tissues into blood culture bottles, the greatest accuracy of diagnosis was observed when three specimens were cultured (92%; 95% credible intervals, 79 to 100%). Results of this study show that the greatest accuracy of PJI diagnosis is obtained when three periprosthetic tissue specimens are obtained and inoculated into blood culture bottles or four periprosthetic tissue specimens are obtained and cultured using standard plate and broth cultures. Increasing the number of specimens to five or more, per current recommendations, does not improve accuracy of PJI diagnosis.
Insights
Fewer tissue samples improve prosthetic joint infection diagnosis accuracy. Three samples in blood culture bottles or four in standard cultures yield the highest diagnostic accuracy, challenging current guidelines.
Area of Science:
- Medical Microbiology
- Infectious Diseases
- Orthopedic Surgery
Background:
- Prosthetic joint infection (PJI) diagnosis relies on accurate microbiological cultures.
- Current guidelines recommend 5-6 periprosthetic tissue specimens, which is often impractical for clinicians.
- Previous research indicated improved PJI diagnostic sensitivity using automated blood culture bottle systems.
Purpose of the Study:
- To determine the optimal number of periprosthetic tissue specimens for accurate PJI diagnosis.
- To compare the diagnostic accuracy of conventional culture methods versus blood culture bottle inoculation.
- To evaluate if increasing specimen numbers beyond current recommendations improves diagnostic accuracy.
Main Methods:
- Bayesian latent class modeling was used to estimate diagnostic test properties.
- Conventional culture techniques (agar plates, broth) were compared to blood culture bottle inoculation.
- Frequentist receiver operating characteristic (ROC) curve analysis served as a sensitivity analysis.
Main Results:
- Maximum diagnostic accuracy for conventional cultures was achieved with four specimens (91%).
- Maximum diagnostic accuracy for blood culture bottles was achieved with three specimens (92%).
- Collecting five or more specimens did not enhance diagnostic accuracy for either method.
Conclusions:
- Optimal PJI diagnosis can be achieved with fewer specimens than currently recommended.
- Using three specimens with blood culture bottles or four with conventional cultures provides the highest diagnostic accuracy.
- This research offers a more practical approach to PJI diagnosis, potentially reducing unnecessary sample collection.
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