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Updated: May 26, 2026

Development of a Novel Internal Fixation Model for Rat Radial Fractures: Fracture Healing Assessment and Dorsal Root Ganglion Isolation
Published on: March 13, 2026
Early antibiotics and debridement independently reduce infection in an open fracture model
J G Penn-Barwell1, C K Murray, J C Wenke
1Royal Centre for Defence Medicine, Academic Department of Military Surgery and Trauma, Birmingham Research Park, Vincent Drive, Birmingham B15 2SQ, UK. jowan@doctors.net.uk
Abstract:
Most animal studies indicate that early irrigation and debridement reduce infection after an open fracture. Unfortunately, these studies often do not involve antibiotics. Clinical studies indicate that the timing of initial debridement does not affect the rate of infection but these studies are observational and fraught with confounding variables. The purpose of this study was to control these variables using an animal model incorporating systemic antibiotics and surgical treatment. We used a rat femur model with a defect which was contaminated with Staphylococcus aureus and treated with a three-day course of systemic cefazolin (5 mg/kg 12-hourly) and debridement and irrigation, both of which were initiated independently at two, six and 24 hour time points. After 14 days the bone and hardware were harvested for separate microbiological analysis. No animal that received antibiotics and surgery two hours after injury had detectable bacteria. When antibiotics were started at two hours, a delay in surgical treatment from two to six hours significantly increased the development of infection (p = 0.047). However, delaying surgery to 24 hours increase the rate of infection, but not significantly (p = 0.054). The timing of antibiotics had a more significant effect on the proportion of positive samples than earlier surgery. Delaying antibiotics to six or 24 hours had a profoundly detrimental effect on the infection rate regardless of the timing of surgery. These findings are consistent with the concept that bacteria progress from a vulnerable planktonic form to a treatment-resistant biofilm.
Insights
Early antibiotic administration is crucial for preventing open fracture infections. Delaying antibiotics significantly increases infection risk, more so than delaying surgical debridement.
Area of Science:
- Orthopedic Surgery
- Infectious Disease
- Bacteriology
Background:
- Open fractures carry a high risk of infection.
- Previous studies on irrigation and debridement timing have limitations.
- The role of systemic antibiotics in conjunction with surgical timing is not well-defined.
Purpose of the Study:
- To investigate the independent effects of early systemic antibiotics and surgical debridement on infection rates in a contaminated open fracture model.
- To control for confounding variables present in previous clinical and animal studies.
Main Methods:
- A rat femur defect model was contaminated with Staphylococcus aureus.
- Animals received systemic cefazolin and surgical debridement/irrigation initiated at 2, 6, or 24 hours.
- Microbiological analysis of bone and hardware was performed after 14 days.
Main Results:
- No infections were detected when both antibiotics and surgery were initiated at 2 hours.
- Delaying surgery from 2 to 6 hours significantly increased infection when antibiotics were given at 2 hours (p=0.047).
- Delaying antibiotic administration had a more profound negative impact on infection rates than delaying surgery.
Conclusions:
- Early administration of systemic antibiotics is critical for preventing infection after open fractures.
- Bacteria transition to a treatment-resistant biofilm, emphasizing the importance of prompt antibiotic intervention.
- While timely debridement is important, the timing of antibiotic initiation appears to be the most significant factor in preventing infection.
