Biomarkers of AKI Progression after Pediatric Cardiac Surgery
Jason H Greenberg1,2, Michael Zappitelli3, Yaqi Jia2
1Departments of Pediatrics and.
Insights
Plasma IL-8 shows promise in predicting acute kidney injury (AKI) progression in children. This inflammatory biomarker could help clinicians manage AKI and enroll patients in trials.
Area of Science:
- Pediatric Nephrology
- Biomarker Discovery
- Critical Care Medicine
Background:
- Acute kidney injury (AKI) in children, especially after cardiopulmonary bypass, carries a high risk of adverse outcomes.
- Current methods for predicting AKI progression in hospitalized children are unreliable.
- Identifying predictive biomarkers is crucial for timely intervention and improved patient management.
Purpose of the Study:
- To investigate the predictive value of inflammation and kidney injury biomarkers for AKI progression in children.
- To assess specific biomarkers, including urine and plasma analytes, for their ability to forecast worsening AKI.
- To identify potential tools for clinical decision-making in pediatric AKI.
Main Methods:
- A prospective, three-center cohort study involving children undergoing cardiopulmonary bypass.
- Measurement of 17 urine and plasma biomarkers on the first day of AKI diagnosis.
- Definition of AKI progression as an increase in AKI stage or persistent stage 3 AKI for at least two consecutive days.
Main Results:
- Of 408 children, 176 (43%) developed AKI; 28 (7%) experienced AKI progression.
- Nine of 17 measured biomarkers were significantly elevated in children with AKI progression.
- Plasma IL-8 demonstrated high discrimination for AKI progression (AUC 0.80), outperforming other inflammatory markers.
Conclusions:
- Plasma IL-8 is a potential predictive biomarker for AKI progression in pediatric patients.
- Further validation in diverse cohorts is needed to confirm its clinical utility.
- IL-8 could aid in clinical care decisions and patient selection for therapeutic trials in AKI.
Abstract:
Background As children progress to higher stages of AKI, the risk for adverse outcomes dramatically increases. No reliable methods exist to predict AKI progression in hospitalized children. To determine if biomarkers of inflammation and kidney injury can predict AKI progression, we conducted a three-center prospective cohort study of children undergoing cardiopulmonary bypass.Methods On the first day of serum creatinine-defined AKI, we measured urine biomarkers (neutrophil gelatinase-associated lipocalin [NGAL], IL-18, kidney injury molecule 1, liver fatty acid binding protein [L-FABP], albumin, and cystatin C) and plasma biomarkers (IFN, IL-1, IL-2, IL-4, IL-6, IL-8, IL-10, IL-12, IL-13, TNF-α, NGAL, and cystatin C). We defined AKI progression as a worsening of AKI stage or persisting stage 3 AKI (≥2 consecutive days).Results In all, 176 of 408 (43%) children developed postoperative AKI. Among the children with AKI, we diagnosed stages 1, 2, and 3 AKI in 145 (82.5%), 25 (14%), and six (3.5%) children, respectively, on the first day of AKI; 28 (7%) children had AKI progression. On the first day of AKI, nine of 17 biomarkers were significantly higher in patients with than without AKI progression. Urine L-FABP (among injury biomarkers) and plasma IL-8 (among inflammatory biomarkers) had the highest discrimination for AKI progression: optimism-corrected area under the curve, 0.70; 95% confidence interval, 0.58 to 0.81 and optimism-corrected area under the curve, 0.80; 95% confidence interval, 0.69 to 0.91, respectively.Conclusions If validated in additional cohorts, plasma IL-8 could be used to improve clinical care and guide enrollment in therapeutic trials of AKI.
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