Novel porcine model of implant-associated osteomyelitis: A comprehensive analysis of local, regional, and systemic response.

Jensen, Louise Kruse; Koch, Janne; Dich-Jorgensen, Kirstine; Aalbaek, Bent; Petersen, Andreas; Fuursted, Kurt; Bjarnsholt, Thomas; Kragh, Kasper Nørskov et al. · J Orthop Res · 2017

basic_science · Level V

Where this comes from

Abstract

Pigs are favorable experimental animals for infectious diseases in humans. However, implant-associated osteomyelitis (IAO) models in pigs have only been evaluated using high-inoculum infection (>10<sup>8</sup> CFU) models in 1975 and 1993. Therefore, the aim of this paper was to present a new low inoculum porcine model of human IAO based on 42 experimental pigs. The model was created by drilling an implant cavity in the tibial bone followed by insertion of a small steel implant and simultaneous inoculation of Staphylococcus aureus bacteria (n = 32) or saline (n = 10). The infected pigs were either inoculated with 10<sup>4</sup> CFU (n = 26) or 10<sup>2</sup> and 10<sup>3</sup> CFU (n = 6). All animals were euthanized 5 days after insertion of implants. Pigs receiving the high-inoculum infections showed a significantly higher volume of bone lesion, number of neutrophils around the implant, concentrations of acute phase proteins in serum, and enlargement of regional lymph nodes. A positive correlation was present between a high number of surrounding neutrophils and high values of all other parameters. Furthermore, a threshold of 40 neutrophils per 10 high power fields for the histopathological diagnosis of high grade IAO was defined. This paper describes a novel low-inoculum S. aureus porcine model of IAO which was demonstrated to be reliable, reproducible and discriminative to human IAO, and represents a requested and valuable tool in orthopedic research. © 2016 Orthopaedic Research Society. Published by Wiley Periodicals, Inc. J Orthop Res 35:2211-2221, 2017.

Medical subject headings