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Published on: August 9, 2013
Furosemide response predicts acute kidney injury in children after cardiac surgery
Jamie Penk1, Katja M Gist2, Eric L Wald3
1Department of Pediatrics, Advocate Children's Hospital, Oak Lawn, Ill.
Insights
Assessing furosemide (a diuretic) response in children after heart surgery can predict acute kidney injury. Lower urine output within 6 hours indicates higher risk and longer hospital stays.
Area of Science:
- Pediatric Nephrology
- Cardiovascular Surgery
- Critical Care Medicine
Background:
- Furosemide response assessment predicts acute kidney injury (AKI) in adults.
- Limited data exists on furosemide responsiveness in pediatric patients post-cardiac surgery.
- AKI is a significant concern in critically ill children.
Purpose of the Study:
- To evaluate furosemide responsiveness as a predictor of AKI in pediatric patients after cardiac surgery.
- To determine the association between early urine flow rate and AKI development.
- To assess the link between furosemide response and hospital length of stay.
Main Methods:
- Retrospective analysis of 166 pediatric patients (Society of Thoracic Surgeons-European Association for Cardiothoracic Surgery score ≥3) from four institutions.
- Recorded first furosemide dose and hourly urine output for 6 hours post-dose.
- Calculated urine flow rate (mL/kg/h) to predict AKI development.
Main Results:
- Acute kidney injury occurred in 33% of patients (n=54).
- Lower 2-hour and 6-hour urine flow rates were significantly associated with AKI development (P=.004 and P=.001, respectively).
- Both 2-hour and 6-hour urine flow rates were independently associated with AKI and longer hospital stay.
Conclusions:
- Reduced urine flow rate post-furosemide administration is an independent predictor of AKI in children after cardiac surgery.
- This assessment may also predict longer hospital length of stay.
- Prospective studies are warranted to validate furosemide responsiveness for AKI prediction in this population.
Objective:
A standardized assessment of response to furosemide is predictive of acute kidney injury progression in adults, but a paucity of data exists in pediatric patients. We evaluate furosemide responsiveness in a multicenter cohort of pediatric patients after cardiac surgery.
Methods:
Children who underwent cardiac surgery with a Society of Thoracic Surgeons-European Association for Cardiothoracic Surgery score of 3 or greater were retrospectively identified. The first dose of furosemide after surgery was recorded, and hourly urine output for 6 hours was recorded after the index dose. Urine flow rate calculated as urine output per hour was used to predict development of acute kidney injury.
Results:
A total of 166 patients from 4 institutions (median age, 6.3 months; interquartile range, 0.4-27.7) were included. Acute kidney injury occurred in 54 patients (33%). Compared with those without acute kidney injury, the 2- and 6-hour urine flow rates were significantly lower in patients in whom acute kidney injury developed: 2.9 (0.9-6.5) versus 5.0 (2.5-9.0) mL/kg/h for 2-hour urine flow rate, P = .004, and 2.4 (1.2-4.0) versus 4.0 (2.3-5.9) mL/kg/h for 6-hour flow rate, P = .001. In multivariable regression analysis, 2-hour (odds ratio, 1.2, P = .002) and 6-hour (odds ratio, 1.40, P < .001) urine flow rates were independently associated with acute kidney injury development. Lower urine flow rate at both 2 and 6 hours was also independently associated with longer hospital length of stay.
Conclusions:
Lower urine flow rate after furosemide administration, when evaluated in a heterogeneous cohort of children from multiple institutions after pediatric cardiac surgery, was independently associated with subsequent acute kidney injury and longer length of stay. Future prospective studies are needed to validate furosemide responsiveness as a predictor of acute kidney injury.
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