Burn injury is marked by a large release of inflammatory mediators which disrupt the normal capillary barrier and cause a rapid shift of intravascular fluid into interstitial spaces, ultimately leading to shock and death. As such, adequate fluid management and resuscitation is critical for burn patients to prevent further cellular injury. Technologies and medical options such as cardiac output monitoring along with early tube feeding and vitamin C administration have developed slowly over the years. Effective management of the Systemic Inflammatory Response Syndrome response and metabolic derangement is crucial for the survival of burn patients. In particular, vitamin C administration has shown to significantly decreases early post-burn lipid peroxidation, reduce microvascular leak of fluid by preventing endothelial dysfunction, and decreases edema formation in burned tissue. Vitamin C is a cheap and widely available antioxidant which has been shown to significantly effective in positively impacting clinical outcomes in burn resuscitation. We aim to evaluate the efficacy of vitamin C in burns greater than 20% total body surface area on clinical outcomes such as length of hospital stay, total fluid requirements, and mortality.
Burn injury is marked by a large release of inflammatory mediators which disrupt the normal capillary barrier and cause a rapid shift of intravascular fluid into interstitial spaces, ultimately leading to shock and death. As such, adequate fluid management and resuscitation is critical for burn patients to prevent further cellular injury. Technologies and medical options such as cardiac output monitoring along with early tube feeding and vitamin C administration have developed slowly over the years. Effective management of the systemic inflammatory response syndrome response and metabolic derangement is crucial for the survival of burn patients. In particular, vitamin C administration has shown to significantly decreases early post-burn lipid peroxidation, reduce microvascular leak of fluid by preventing endothelial dysfunction, and decreases edema formation in burned tissue. Vitamin C is a cheap and widely available antioxidant which has been shown to significantly effective in positively impacting clinical outcomes in burn resuscitation. While vitamin C is a regular part of burn resuscitation, there is no consensus on the most effective dose when considering impacting mortality, fluid resuscitation requirement, and other various clinical outcomes. Defining clinically efficacious minimal dosage of vitamin C can assist surgeons to better guide care for patients requiring burn resuscitation. In this study, we aim to evaluate the efficacy of vitamin C in burns greater than 20% total body surface area on various clinical outcomes through a retrospective chart review of burn patients. Through this retrospective chart review, we aim to arrive at a better-defined vitamin C dose to achieve positive clinically significant outcomes.
Study Type
OBSERVATIONAL
Enrollment
54
Due to clinical research supporting high dose vitamin C, the institution's surgical intensivists started utilizing a high IV vitamin C dose in higher total body surface area burns while continuing to use the standard PO vitamin C dose of 500 mg to 1,000 mg daily on patients with lower total body surface area burns. Looking at the initial 72 hours, patients with smaller burns were given 2,500 mg PO vitamin C and larger total body surface area burns were given 15,000 mg IV vitamin C.
Arrowhead Regional Medical Center
Colton, California, United States
Mortality
Survival within the first 28 days
Time frame: 28 hours
Infection rate
The time frame of any clinically documented infections and when they occurred
Time frame: 180 days
Ventilator days
The total duration of time a patient spends intubated on a ventilator while in the hospital. The initial intubation will be the only intubation considered
Time frame: 180 days
Fluid Requirement
Total fluid requirements in first 72 hours
Time frame: 72 hours
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