Standardized quantification of biofilm in a novel rabbit model of periprosthetic joint infection

Anabelle Visperas1, Daniel Santana1,2, Minseon Ju3

  • 1Department of Orthopaedic Surgery, Cleveland Clinic, Cleveland, OH, USA.

Insights

A new rabbit model for knee periprosthetic joint infection (PJI) was developed. This model allows for biofilm quantification and demonstrates that debridement, antibiotics, and implant retention (DAIR) significantly reduces biofilm.

Area of Science:

  • Orthopedics
  • Infectious Diseases
  • Biomaterials Science

Background:

  • Periprosthetic joint infection (PJI) is a severe complication of joint replacement surgery.
  • Bacterial biofilm formation on implants hinders treatment and immune response.
  • Effective models are needed to study PJI pathogenesis and treatment.

Purpose of the Study:

  • To develop a reliable rabbit model of knee PJI for biofilm quantification.
  • To evaluate the efficacy of debridement, antibiotics, and implant retention (DAIR) in reducing biofilm.
  • To provide a platform for testing novel PJI treatments.

Main Methods:

  • New Zealand white rabbits underwent knee arthrotomy, tibial implant insertion, and inoculation with bioluminescent *Staphylococcus aureus* (Xen36) or saline.
  • Biofilm was quantified using scanning electron microscopy (SEM) 14 days post-inoculation.
  • Animals received DAIR or sham surgery 14 days post-inoculation, with sacrifice 14 days post-treatment.

Main Results:

  • The rabbit model successfully produced quantifiable bacterial biofilm.
  • DAIR treatment significantly reduced biofilm coverage (61.4%) compared to sham treatment (90.1%) (p < 0.0011).
  • No significant differences in weight or CRP levels were observed between DAIR and sham groups post-treatment.

Conclusions:

  • A reproducible rabbit knee PJI model was established, enabling reliable biofilm measurement.
  • The model validates DAIR as an effective treatment for reducing established biofilm in PJI.
  • This model serves as a valuable tool for investigating PJI mechanisms and assessing new therapeutic strategies.

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