2021 Frank Stinchfield Award: A novel cemented hip hemiarthroplasty infection model with real-time in vivo imaging in rats

Author:

Hadden William J.12ORCID,Ibrahim Mazen2,Taha Mariam3,Ure Kerstin4,Liu Yun5,Paish Adam D. M.6,Holdsworth David W.6,Abdelbary Hesham123

Affiliation:

1. The Ottawa Hospital Division of Orthopaedic Surgery, Ottawa, Canada

2. The University of Ottawa Faculty of Medicine, Ottawa, Canada

3. The Ottawa Hospital Research Institute, Ottawa, Canada

4. The Animal Behaviour & Physiology Core, University of Ottawa Faculty of Medicine, Ottawa, Canada

5. Materials Characterization Core Facility, Centre for Advanced Materials Research (CAMaR), University of Ottawa, Ottawa, Canada

6. Department of Medical Biophysics, Bone & Joint Institute, Dr. Sandy Kirkley Centre for Musculoskeletal Research, University Hospital B6-200, Western University, London, Canada

Abstract

Aims The aims of this study were to develop an in vivo model of periprosthetic joint infection (PJI) in cemented hip hemiarthroplasty, and to monitor infection and biofilm formation in real-time. Methods Sprague-Dawley rats underwent cemented hip hemiarthroplasty via the posterior approach with pre- and postoperative gait assessments. Infection with Staphylococcus aureus Xen36 was monitored with in vivo photoluminescent imaging in real-time. Pre- and postoperative gait analyses were performed and compared. Postmortem micro (m) CT was used to assess implant integration; field emission scanning electron microscopy (FE-SEM) was used to assess biofilm formation on prosthetic surfaces. Results All animals tolerated surgery well, with preservation of gait mechanics and weightbearing in control individuals. Postoperative in vivo imaging demonstrated predictable evolution of infection with logarithmic signal decay coinciding with abscess formation. Postmortem mCT qualitative volumetric analysis showed high contact area and both cement-bone and cement-implant interdigitation. FE-SEM revealed biofilm formation on the prosthetic head. Conclusion This study demonstrates the utility of a new, high-fidelity model of in vivo PJI using cemented hip hemiarthroplasty in rats. Inoculation with bioluminescent bacteria allows for non-invasive, real-time monitoring of infection. Cite this article: Bone Joint J 2021;103-B(7 Supple B):9–16.

Publisher

British Editorial Society of Bone & Joint Surgery

Subject

Orthopedics and Sports Medicine,Surgery

Reference31 articles.

1. No authors listed. The American Joint Replacement Registry Annual Report. American Academy of Orthopaedic Surgeons. 2020. https://www.aaos.org/registries/publications/ajrr-annual-report/ (date last accessed 28 April 2021).

2. No authors listed. Canadian Joint Replacement Registry. Canadian Institute for Health Information. 2018. https://www.cihi.ca/en/canadian-joint-replacement-registry-cjrr (date last accessed 28 April 2021).

3. The Epidemiology of Revision Total Hip Arthroplasty in the United States

4. No authors listed. Repeat hip and knee replacements cost $130 million annually. Canadian Institute for Health Information. 2018. https://www.newswire.ca/news-releases/repeat-hip-and-knee-replacements-cost-130-million-annually-836917568.html (date last accessed 28 April 2021).

5. Economic Burden of Periprosthetic Joint Infection in the United States

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