Key result
Deep surgical site infections following open fractures presented significantly later (median 48.5 days) compared to closed fractures (median 9.5 days), with 32% of all infections involving multidrug-resistant pathogens.
Observational (n=103)
No
Absolute Event Rate: 48.5% vs 9.5%
p-value: p=0.019
Deep surgical site infections following orthopaedic trauma surgery in a West African setting frequently present late (>4 weeks) and are commonly caused by multidrug-resistant pathogens, highlighting the need for extended post-discharge surveillance.
Late deep SSI after open fractures may warrant extended surveillance; hypothesis-generating for MDR protocols in trauma cohorts.
The epidemiology of surgical site infections (SSIs) in surgical programmes in sub-Saharan Africa is inadequately described. We reviewed deep and organ-space SSIs occurring within a trauma project that had a high-quality microbiology partnership and active follow-up. Included patients underwent orthopaedic surgery in Teme Hospital (Port Harcourt, Nigeria) for trauma and subsequently developed a SSI requiring debridement and microbiological sampling. Data were collected from structured chart reviews and programmatic databases for 103 patients with suspected SSI [79% male, median age 30 years, interquartile range (IQR) 24-37]. SSIs were commonly detected post-discharge with 58% presenting >28 days after surgery. The most common pathogens were: Staphylococcus aureus (34%), Pseudomonas aeruginosa (16%) and Enterobacter cloacae (11%). Thirty-three (32%) of infections were caused by a multidrug-resistant (MDR) pathogen, including 15 patients with methicillin-resistant S. aureus. Antibiotics were initiated empirically for 43% of patients and after culture and sensitivity report in 32%. The median number of additional surgeries performed in patients with SSI was 5 (IQR 2-6), one patient died (1%), and amputation was performed or recommended in three patients. Our findings suggest the need for active long-term monitoring of SSIs, particularly those associated with MDR organisms, resulting in increased costs for readmission surgery and treatment with late-generation antibiotics.
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Murphy et al. (2016) conducted an observational in Surgical site infections following orthopaedic trauma surgery (n=103). Open fracture vs. Closed fracture was evaluated on Median time to surgical site infection detection (days) (p=0.019). Deep surgical site infections following open fractures presented significantly later (median 48.5 days) compared to closed fractures (median 9.5 days), with 32% of all infections involving multidrug-resistant pathogens.
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