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Updated: Feb 19, 2026

Rat Burn Model to Study Full-Thickness Cutaneous Thermal Burn and Infection
Published on: August 23, 2022
Clinical infection in burn patients and its consequences
Cem Emir Güldoğan1, Murat Kendirci, Deniz Tikici
1Department of General Surgery, Altınbaş University Faculty of Medicine, İstanbul-Turkey. drguldogan@gmail.com.
Background:
Burn injuries facilitate invasive infections and sepsis not only by destroying the continuity of the protective skin barrier but also through systemic effects. The burn wound, blood, and urine samples are frequently cultured to determine the pathogen agent. The aim of this study was to analyze pathogen growth in patients' cultures confirmed as "infection positive" by the hospital Infection Control Committee and to assess the clinical implications of these growths.
Methods:
Hospitalized patients included in the study were those with a total burned body surface area of >10% and "presence of infection" confirmed by the Infection Control Committee. The patients were evaluated with respect to age, gender, burn etiology, the total body surface area burned (TBSA), the presence of inhalation injury, sepsis, positive cultures, the microorganisms cultured in wound-blood-urine samples, and septic focus.
Results:
Of the total 36 (10.3%) "infection-positive" patients, 26 (72.2%) were male; the mean age of patients was 44±21 years. The mean burned TBSA of the whole group was 45.58%±23.1%. Acinetobacter baumannii was the most isolated organism in the wound cultures. In patients with confirmed infection, there was a correlation between the pathogen isolated in urine cultures and mortality rates (p=0.023). Sepsis was diagnosed in 23 (63.9%) patients, of whom 21 had inhalation injuries. There was a significant correlation between inhalation injury and sepsis (p=0.015), and both the presence of sepsis or inhalation injury increased mortality (p=0.027 and p=0.009, respectively).
Conclusion:
According to the study data, the TBSA burned demonstrated a greater significance for mortality, although the presence of sepsis and/or urinary tract infection should also be noted as a cause of mortality in burned patients.
Insights
Burn infections increase sepsis risk. Larger burn surface area and sepsis/inhalation injuries significantly elevate mortality in patients with confirmed infections.
Area of Science:
- Infectious Diseases
- Critical Care Medicine
- Burn Surgery
Background:
- Burn injuries compromise the skin barrier, leading to invasive infections and sepsis.
- Microbial cultures from burn wounds, blood, and urine are crucial for identifying pathogens.
- Systemic effects of burns exacerbate infection risks.
Purpose of the Study:
- To analyze pathogen growth in infection-positive burn patients.
- To assess the clinical implications of identified microorganisms.
- To correlate culture findings with patient outcomes and mortality.
Main Methods:
- Inclusion criteria: hospitalized patients with >10% total burned body surface area (TBSA) and confirmed infection.
- Data collected: age, gender, burn etiology, TBSA, inhalation injury, sepsis, culture results (wound, blood, urine), and septic focus.
- Statistical analysis to determine correlations between variables and mortality.
Main Results:
- Acinetobacter baumannii was the most common wound isolate.
- Positive urine cultures correlated with mortality (p=0.023).
- Sepsis (63.9%) and inhalation injuries (72.2% of sepsis cases) were common; both significantly increased mortality (p=0.027, p=0.009 respectively).
Conclusions:
- Total burned body surface area (TBSA) is a significant predictor of mortality.
- Sepsis and urinary tract infections are critical factors contributing to mortality in burn patients.
- Early identification and management of infections are vital for improving outcomes.
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