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In Vivo Mouse Model of Spinal Implant Infection
Published on: June 23, 2020
Vancomycin and phage COP-80B combination therapy for Staphylococcus epidermidis periprosthetic joint infections: a
Vida Štilec1,2, Monika Marušić3, Helena Motaln3
1COBIK, Mirce 21, Ajdovščina, 5270, Slovenia. vida.stilec@cobik.si.
Abstract:
The increasing number of joint replacement surgeries has led to an increase in periprosthetic joint infections (PJI). Chronic PJI caused by Staphylococcus epidermidis is very common and challenging to treat, prompting interest in bacteriophage therapy. Preclinical studies are essential for optimizing phage administration routes and dosages. Here, phage replication and bacterial growth inhibition using phage and vancomycin were first assessed in vitro. Then, chronic PJI was induced in mice using biofilm-coated titanium implants inoculated with S. epidermidis COB-SE3 to evaluate the efficacy of phage COP-80B and vancomycin therapy. Mice received one intra-articular and two intraperitoneal phage doses over three days, along with vancomycin administered twice daily for five days. Four weeks after implantation, we quantified and compared bacterial loads in periarticular tissues and implants across four groups: untreated controls, phage monotherapy, vancomycin monotherapy, and phage-vancomycin combination. Infection persistence was lower than expected, limiting the ability to detect treatment effects and assess therapeutic efficacy in this low-virulence model. Intra-articular administration of 1010 PFU of COP-80B did not alter plasma alanine aminotransferase levels, indicating no hepatotoxicity. Bacterial isolates remained susceptible to both phage and vancomycin, while phage-neutralizing antibodies developed during treatment. Overall, this study evaluates phage-vancomycin therapy while also contributing a murine model that advances methodological development for chronic S. epidermidis PJI research, with additional refinement of infection kinetics needed to reliably assess therapeutic efficacy.
Insights
Bacteriophage therapy shows promise for treating Staphylococcus epidermidis periprosthetic joint infections (PJI). This study evaluated phage COP-80B and vancomycin in a mouse model, finding no significant toxicity but needing model refinement for efficacy assessment.
Area of Science:
- Microbiology
- Infectious Diseases
- Biotechnology
Background:
- Periprosthetic joint infections (PJI) are increasing due to joint replacement surgeries.
- Chronic PJI caused by Staphylococcus epidermidis presents treatment challenges.
- Bacteriophage therapy is a potential alternative for antibiotic-resistant infections.
Purpose of the Study:
- To evaluate the efficacy of bacteriophage COP-80B and vancomycin in treating chronic Staphylococcus epidermidis PJI in a murine model.
- To assess phage administration routes and dosages for optimizing therapy.
- To investigate potential toxicity and immune responses to phage therapy.
Main Methods:
- In vitro assessment of phage replication and bacterial growth inhibition.
- Induction of chronic PJI in mice using biofilm-coated implants and S. epidermidis.
- Administration of phage COP-80B (intra-articular and intraperitoneal) and vancomycin.
- Quantification of bacterial loads in periarticular tissues and implants post-treatment.
Main Results:
- The murine model exhibited lower-than-expected infection persistence, limiting treatment effect detection.
- Phage COP-80B administration showed no hepatotoxicity (normal ALT levels).
- Bacterial isolates remained susceptible to phage and vancomycin; phage-neutralizing antibodies developed.
Conclusions:
- The developed murine model requires refinement for reliable assessment of chronic S. epidermidis PJI therapeutic efficacy.
- Phage-vancomycin combination therapy warrants further investigation with optimized infection models.
- Bacteriophage therapy is a promising avenue for PJI treatment, with no observed toxicity in this study.
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