Staphylococcus aureus and Acinetobacter baumannii Inhibit Osseointegration of Orthopedic Implants.
Hyonmin ChoeJoscelyn M TatroBryan S HausmanKristine M HujerSteve H MarshallOzan AkkusPhillip N RatherZhenghong LeeRobert A BonomoEdward M GreenfieldPublished in: Infection and immunity (2022)
Bacterial infections routinely cause inflammation and thereby impair osseointegration of orthopedic implants. Acinetobacter spp., which cause osteomyelitis following trauma, on or off the battlefield, were, however, reported to cause neither osteomyelitis nor osteolysis in rodents. We therefore compared the effects of Acinetobacter strain M2 to those of Staphylococcus aureus in a murine implant infection model. Sterile implants and implants with adherent bacteria were inserted in the femur of mice. Bacterial burden, levels of proinflammatory cytokines, and osseointegration were measured. All infections were localized to the implant site. Infection with either S. aureus or Acinetobacter strain M2 increased the levels of proinflammatory cytokines and the chemokine CCL2 in the surrounding femurs, inhibited bone formation around the implant, and caused loss of the surrounding cortical bone, leading to decreases in both histomorphometric and biomechanical measures of osseointegration. Genetic deletion of TLR2 and TLR4 from the mice partially reduced the effects of Acinetobacter strain M2 on osseointegration but did not alter the effects of S. aureus. This is the first report that Acinetobacter spp. impair osseointegration of orthopedic implants in mice, and the murine model developed for this study will be useful for future efforts to clarify the mechanism of implant failure due to Acinetobacter spp. and to assess novel diagnostic tools or therapeutic agents.
Keyphrases
- acinetobacter baumannii
- soft tissue
- multidrug resistant
- drug resistant
- staphylococcus aureus
- pseudomonas aeruginosa
- high fat diet induced
- immune response
- toll like receptor
- biofilm formation
- inflammatory response
- oxidative stress
- cystic fibrosis
- type diabetes
- insulin resistance
- wild type
- bone mineral density
- escherichia coli
- skeletal muscle
- gene expression
- adipose tissue
- metabolic syndrome
- copy number
- methicillin resistant staphylococcus aureus
- liver fibrosis