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Burn Infections and Sepsis: Challenges and Future Prospects of Antibacterial Therapy
Ghazaleh Dadashizadeh1,2,3, Margarita Elloso2,3,4, Marc G Jeschke1,2,3,4
1Department of Biochemistry and and Biomedical Sciences, McMaster University, Hamilton, ON L8S 4L8, Canada.
Abstract:
Infectious complications remain a principal determinant of late morbidity and mortality following major thermal injury, reflecting a convergence of barrier disruption, microbial adaptation, and host immune dysfunction. The post-burn environment creates a uniquely permissive niche for pathogen persistence, characterized by altered tissue perfusion, biofilm formation, and dynamic shifts in microbial ecology toward multidrug-resistant organisms. Concurrently, profound and evolving changes in host immunity and metabolism reshape both susceptibility to infection and response to therapy. This review integrates current evidence across pathophysiology, microbiology, diagnostics, and treatment, with a focus on challenges that limit effective infection control in burn patients. Particular attention is given to diagnostic uncertainty arising from overlap between sterile inflammation and true infection, the clinical implications of biofilm-associated tolerance, and the impact of burn-specific pharmacokinetic variability on antimicrobial efficacy. We further examine emerging diagnostic and therapeutic innovations, including host-response profiling, rapid molecular detection platforms, and next-generation anti-infective strategies targeting microbial virulence, biofilm structure, and host immune pathways. Despite substantial scientific advances, translation into clinical practice remains constrained by limited burn-specific trials, heterogeneous definitions, and systemic barriers to antimicrobial development. Collectively, these challenges underscore the need for integrated, precision-based approaches that combine early source control, individualized antimicrobial optimization, and advanced diagnostic frameworks. Future progress will depend on coordinated efforts to standardize definitions, generate high-quality multicenter data, and align innovation with clinical applicability across diverse healthcare settings.
Insights
Infectious complications are a major cause of death after severe burns. This review highlights challenges in infection control and proposes precision-based strategies for better patient outcomes.
Area of Science:
- Infectious disease
- Burn care
- Microbiology
- Immunology
Background:
- Infectious complications are a primary cause of mortality and morbidity in burn patients.
- The post-burn environment promotes pathogen persistence, including multidrug-resistant organisms.
- Altered host immunity and metabolism increase infection susceptibility and affect treatment response.
Purpose of the Study:
- To review current evidence on infection control in burn patients.
- To identify challenges in diagnosis and treatment of burn-related infections.
- To explore emerging diagnostic and therapeutic innovations.
Main Methods:
- Literature review integrating pathophysiology, microbiology, diagnostics, and treatment.
- Focus on diagnostic uncertainty, biofilm tolerance, and antimicrobial pharmacokinetics.
- Examination of novel diagnostic and therapeutic strategies.
Main Results:
- Diagnostic uncertainty complicates distinguishing sterile inflammation from infection.
- Biofilm formation confers tolerance to antimicrobial therapies.
- Burn-specific pharmacokinetic variability impacts antimicrobial efficacy.
- Emerging innovations include host-response profiling and rapid molecular diagnostics.
Conclusions:
- Effective infection control requires integrated, precision-based approaches.
- Early source control, individualized antimicrobial therapy, and advanced diagnostics are crucial.
- Standardized definitions, multicenter data, and clinical applicability are needed for future progress.
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