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Published on: November 10, 2021
Fibroblast Growth Factor 23 and Risk of CKD Progression in Children
Anthony A Portale1, Myles S Wolf2, Shari Messinger3
1Department of Pediatrics, University of California San Francisco, San Francisco, California.
Insights
High levels of fibroblast growth factor 23 (FGF23) predict chronic kidney disease (CKD) progression in children. This finding highlights FGF23 as a key risk factor for worsening kidney disease in pediatric patients.
Area of Science:
- Nephrology
- Pediatric Endocrinology
- Biochemistry
Background:
- Plasma fibroblast growth factor 23 (FGF23) concentrations rise early in pediatric chronic kidney disease (CKD).
- High FGF23 levels are linked to CKD progression in adults, but its predictive role in children remains unclear.
Purpose of the Study:
- To investigate whether elevated plasma FGF23 is an independent risk factor for CKD progression in children.
- To analyze the association between baseline FGF23 and the risk of adverse kidney disease outcomes in a pediatric cohort.
Main Methods:
- The study enrolled 419 children (aged 1-16 years) from the Chronic Kidney Disease in Children (CKiD) cohort.
- Plasma FGF23 was measured at baseline, and glomerular filtration rate (GFR) was monitored annually.
- Statistical analyses adjusted for demographics, baseline GFR, proteinuria, and other mineral metabolites.
Main Results:
- Higher baseline FGF23 concentrations were independently associated with an increased risk of CKD progression.
- Children in the highest FGF23 tertile had a 2.52-fold higher risk of reaching the composite endpoint (dialysis, transplantation, or 50% GFR decline).
- Progression time was 40% shorter in the highest FGF23 tertile compared to the lowest, unlike phosphorus, vitamin D, or PTH.
Conclusions:
- Elevated plasma FGF23 is an independent predictor of CKD progression in pediatric patients.
- FGF23 may serve as a crucial biomarker for monitoring and managing CKD in children.
Background And Objectives:
Plasma fibroblast growth factor 23 (FGF23) concentrations increase early in the course of CKD in children. High FGF23 levels associate with progression of CKD in adults. Whether FGF23 predicts CKD progression in children is unknown.
Design, Setting, Participants, & Measurements:
We tested the hypothesis that high plasma FGF23 is an independent risk factor for CKD progression in 419 children, aged 1-16 years, enrolled in the Chronic Kidney Disease in Children (CKiD) cohort study. We measured plasma FGF23 concentrations at baseline and determined GFR annually using plasma disappearance of iohexol or the CKiD study estimating equation. We analyzed the association of baseline FGF23 with risk of progression to the composite end point, defined as start of dialysis or kidney transplantation or 50% decline from baseline GFR, adjusted for demographics, baseline GFR, proteinuria, other CKD-specific factors, and other mineral metabolites.
Results:
At enrollment, median age was 11 years [interquartile range (IQR), 8-15], GFR was 44 ml/min per 1.73 m2 (IQR, 33-57), and FGF23 was 132 RU/ml (IQR, 88-200). During a median follow-up of 5.5 years (IQR, 3.5-6.6), 32.5% of children reached the progression end point. Higher FGF23 concentrations were independently associated with higher risk of the composite outcome (fully adjusted hazard ratio, 2.52 in the highest versus lowest FGF23 tertile; 95% confidence interval, 1.44 to 4.39, P=0.002; fully adjusted hazard ratio, 1.33 per doubling of FGF23; 95% confidence interval, 1.13 to 1.56, P=0.001). The time to progression was 40% shorter for participants in the highest compared with the lowest FGF23 tertile. In contrast, serum phosphorus, vitamin D metabolites, and parathyroid hormone did not consistently associate with progression in adjusted analyses.
Conclusions:
High plasma FGF23 is an independent risk factor for CKD progression in children.
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