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Transfusion-associated hyperkalemic cardiac arrest in pediatric patients receiving massive transfusion
Angela C Lee1, Leila L Reduque, Naomi L C Luban
1Division of Anesthesiology and Pain Medicine, Division of Laboratory Medicine, Children's National Medical Center; Department of Anesthesiology and Pediatrics, Department of Pediatrics and Pathology, George Washington University School of Medicine and Health Sciences, Washington, DC; Transfusion Medicine Division, Department of Pathology, Department of Anesthesiology and Critical Care Medicine, Department of Pediatrics, Johns Hopkins University School of Medicine; Clinical Liaison for Library Services, Welch Medical Library, Johns Hopkins University, Baltimore, Maryland.
Insights
Hyperkalemic cardiac arrest during massive transfusions in children is linked to transfusion rate, not just volume. Using fresher blood products and prompt electrolyte correction can mitigate risks in pediatric patients.
Area of Science:
- Pediatric critical care medicine
- Transfusion medicine
- Cardiology
Background:
- Massive transfusion in children carries a risk of hyperkalemic cardiac arrest (TAHCA).
- Identifying risk factors and preventive strategies for TAHCA in pediatric populations is crucial.
Purpose of the Study:
- To review the literature on transfusion-associated hyperkalemic cardiac arrest in pediatric patients.
- To identify risk factors and potential preventive measures for TAHCA.
Main Methods:
- Conducted literature searches in MEDLINE and the Cochrane Database of Systematic Reviews.
- Analyzed nine case reports of pediatric TAHCA and 13 clinical studies on transfusion-related potassium levels.
Main Results:
- Nine pediatric cases of cardiac arrest during massive transfusion were identified, with a mean serum potassium of 9.2 mmol/L.
- Risk factors included infancy, older red blood cell (RBC) age, transfusion site, and comorbidities (hyperkalemia, hypocalcemia, acidemia, hypotension).
- Transfusion rate, rather than volume or infusion site, was a key factor in TAHCA development.
Conclusions:
- TAHCA case reports predominantly involve infants and neonates.
- Preventive measures include anticipating blood loss, using larger IV catheters, frequent electrolyte monitoring, and utilizing fresher RBCs for massive transfusions.
- Prompt management of hemodynamic compromise and electrolyte imbalances is vital.
Background:
Hyperkalemic cardiac arrest is a potential complication of massive transfusion in children. Our objective was to identify risk factors and potential preventive measures by reviewing the literature on transfusion-associated hyperkalemic cardiac arrest (TAHCA) in the pediatric population.
Study Design And Methods:
Literature searches were performed in MEDLINE and the Cochrane Database of Systematic Reviews.
Results:
We identified nine case reports of pediatric patients who had experienced cardiac arrest during massive transfusion. Serum potassium concentration was reported in eight of those reports; the mean was 9.2 ± 1.8 mmol/L. Risk factors for TAHCA noted in the case reports included infancy (n = 6); age of red blood cells (RBCs; n = 5); site of transfusion (n = 5); and the presence of comorbidities such as hyperkalemia, hypocalcemia, acidemia, and hypotension (n = 9). We also identified 13 clinical studies that examined potassium levels associated with transfusion. Of those 13, five studied routine transfusion, two were registries, and six examined massive transfusion.
Conclusions:
Key points identified from this literature search are as follows: 1) Case reports are skewed toward infants and neonates in particular and 2) the rate of blood transfusion, more so than total volume, cardiac output, and the site of infusion, are key factors in the development of TAHCA. Measures to reduce the risk of TAHCA in young children include anticipating and replacing blood loss before significant hemodynamic compromise occurs, using larger-bore (>23-gauge) peripheral intravenous catheters rather than central venous access, checking and correcting electrolyte abnormalities frequently, and using fresher RBCs for massive transfusion.
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