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Updated: Jan 19, 2026

A Quantitative Detection Method for MicroRNAs in the Kidney of an Ischemic Kidney Injury Mouse Model
Published on: September 11, 2020
Age-Dependent Changes of Kidney Injury Biomarkers in Pediatrics
Tamara van Donge1, Tatjana Welzel1, Andrew Atkinson1
1Pediatric Pharmacology and Pharmacometrics, University Children's Hospital Basel (UKBB), University of Basel, Basel, Switzerland.
Insights
New kidney injury (KI) biomarkers show promise for early detection in children, unlike current creatinine tests. Further research is needed to establish age-specific reference values for these critical biomarkers in pediatric populations.
Area of Science:
- Pediatric Nephrology
- Biomarker Discovery
- Drug Safety
Background:
- Current creatinine-based tests lack sensitivity for early kidney injury (KI), especially tubular damage, in children.
- Novel KI biomarkers offer potential for earlier detection of glomerular and tubular damage.
- Preventing drug-related chronic kidney diseases in pediatrics necessitates improved diagnostic tools.
Purpose of the Study:
- To review current research on KI biomarkers in pediatric populations.
- To investigate reference values for KI biomarkers in neonates, infants, and children.
- To understand age-related changes in KI biomarker levels.
Main Methods:
- Literature review of 237 screened studies, with 12 fulfilling inclusion criteria.
- Analysis of studies including preterm neonates, neonates, infants, and children.
- Examination of KI biomarkers measured in urine, serum/plasma, or both.
Main Results:
- Urinary neutrophil gelatinase-associated lipocalin, urinary kidney injury molecule-1, and serum cystatin C are the most common KI biomarkers analyzed.
- Most KI biomarkers are measured in urine.
- KI biomarker values appear to decrease from prematurity to infancy.
Conclusions:
- There is a significant need for more research on age-dependent changes of KI biomarkers in pediatrics.
- Establishing reference values for healthy pediatric populations is crucial.
- Further studies should evaluate the utility of these biomarkers in detecting drug-related KI in children.
Abstract:
Currently used creatinine-based parameters for monitoring kidney function are not reliable for early detection of kidney injury (KI), particularly tubular damage. Several KI biomarkers allow for early detection of glomerular and tubular damage and may help to prevent drug-related chronic kidney diseases in pediatrics. This literature review describes the state of current research and investigates reference values for these KI biomarkers in neonates, infants, and children to better understand age-related changes. A total of 12 of 237 screened studies fulfilled predefined criteria, including 219 preterm neonates, 70 neonates, 596 infants, and 1726 children. KI biomarkers were analyzed in urine (6 studies), in serum/plasma (5 studies) and in serum and urine (1 study). Four studies (n = 555) measured urinary kidney injury molecule-1, whereas urinary neutrophil gelatinase-associated lipocalin was assessed in 5 studies (n = 888), and 2 studies (n = 203) investigated serum cystatin C. This review of KI biomarkers in different pediatric age groups indicates that (1) the majority of KI biomarkers are measured in urine; (2) the 3 most commonly analyzed KI biomarkers are urinary neutrophil gelatinase-associated lipocalin, urinary kidney injury molecule-1, and serum cystatin C; (3) values of KI biomarkers appear to decrease from prematurity to infancy; and (4) there is an unmet need to further enhance knowledge on age-dependent changes of KI biomarkers in pediatrics. Studies are needed to better characterize reference values for these key KI biomarkers in healthy pediatric populations and to evaluate the value of these markers in the early detection of drug-related KI in neonates, infants, and children.
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