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Author Spotlight: A Multi-Depth Porcine Model for Comprehensive Study of Burn Injuries and Healing Processes
Published on: February 23, 2024
An Assessment of Research Priorities to Dampen the Pendulum Swing of Burn Resuscitation
David M Burmeister1,2, Susan L Smith3, Kuzhali Muthumalaiappan4
1Department of Medicine, Uniformed Services University of the Health Sciences, Bethesda, Maryland.
Abstract:
On June 17 to 18, 2019, the American Burn Association, in conjunction with Underwriters Laboratories, convened a group of experts on burn resuscitation in Washington, DC. The goal of the meeting was to identify and discuss novel research and strategies to optimize the process of burn resuscitation. Patients who sustain a large thermal injury (involving >20% of the total body surface area [TBSA]) face a sequence of challenges, beginning with burn shock. Over the last century, research has helped elucidate much of the underlying pathophysiology of burn shock, which places multiple organ systems at risk of damage or dysfunction. These studies advanced the understanding of the need for fluids for resuscitation. The resultant practice of judicious and timely infusion of crystalloids has improved mortality after major thermal injury. However, much remains unclear about how to further improve and customize resuscitation practice to limit the morbidities associated with edema and volume overload. Herein, we review the history and pathophysiology of shock following thermal injury, and propose some of the priorities for resuscitation research. Recommendations include: studying the utility of alternative endpoints to resuscitation, reexamining plasma as a primary or adjunctive resuscitation fluid, and applying information about inflammation and endotheliopathy to target the underlying causes of burn shock. Undoubtedly, these future research efforts will require a concerted effort from the burn and research communities.
Insights
Experts met to optimize burn resuscitation for large thermal injuries. Future research should explore alternative endpoints, plasma fluids, and targeting inflammation to improve outcomes and reduce complications.
Area of Science:
- Burn resuscitation
- Thermal injury pathophysiology
- Shock management
Background:
- Large thermal injuries (>20% TBSA) cause burn shock, risking organ dysfunction.
- Historical research clarified the need for fluid resuscitation, improving mortality.
- Current practices face challenges in managing edema and volume overload.
Purpose of the Study:
- Identify novel research and strategies to optimize burn resuscitation.
- Discuss challenges and future directions in managing burn shock.
- Review the history and pathophysiology of thermal injury shock.
Main Methods:
- Convened experts from the American Burn Association and Underwriters Laboratories.
- Reviewed existing literature on burn shock pathophysiology and resuscitation.
- Proposed priorities for future resuscitation research.
Main Results:
- Acknowledged improved mortality with crystalloid resuscitation for major burns.
- Highlighted the need for further research to customize resuscitation.
- Identified key areas for future investigation.
Conclusions:
- Further research is needed to refine burn resuscitation strategies.
- Investigating alternative resuscitation endpoints and plasma fluids is recommended.
- Targeting inflammation and endotheliopathy may address underlying causes of burn shock.
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