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Updated: Dec 28, 2025

Assessment of Vascular Function in Patients With Chronic Kidney Disease
Published on: June 16, 2014
Oxidant stress and renal function among children with chronic kidney disease: a repeated measures study
Melanie H Jacobson1, Mengling Liu2, Yinxiang Wu2
1Department of Pediatrics, Division of Environmental Pediatrics, NYU Langone Medical Center, New York, NY, USA.
Insights
Oxidant stress biomarkers, 8-OHdG and F2-isoprostane, were not linked to worsening kidney function over time in children with chronic kidney disease (CKD). Their excretion may reflect changes in kidney function rather than cause progression.
Area of Science:
- Pediatric Nephrology
- Oxidative Stress Research
- Biomarker Analysis
Background:
- Chronic kidney disease (CKD) is hypothesized to involve oxidant stress, but longitudinal data in children are lacking.
- Urinary biomarkers like 8-OH deoxyguanosine (8-OHdG) and F2-isoprostane are indicators of oxidant stress.
Purpose of the Study:
- To investigate longitudinal associations between urinary oxidant stress biomarkers and renal function in children with CKD.
- To determine if 8-OHdG and F2-isoprostane predict changes in estimated glomerular filtration rate (eGFR) and proteinuria over time.
Main Methods:
- Utilized data from the Chronic Kidney Disease in Children (CKiD) study.
- Examined longitudinal associations between baseline and time-varying urinary 8-OHdG and F2-isoprostane levels with eGFR and urinary protein:creatinine ratio.
- Controlled for relevant covariates in statistical models.
Main Results:
- Baseline 8-OHdG was positively associated with eGFR over time, but this attenuated with longitudinal analysis.
- Baseline 8-OHdG also correlated with decreased proteinuria over time.
- F2-isoprostane showed associations with eGFR increases only when baseline levels were considered.
- No significant associations were found between either biomarker and blood pressure changes.
Conclusions:
- Urinary 8-OHdG and F2-isoprostane do not appear to be associated with worsening kidney function (GFR decline) in children with CKD.
- The excretion patterns of these biomarkers may be influenced by concurrent changes in glomerular and tubular function.
- Their utility in evaluating the direct impact of oxidant stress on pediatric CKD progression is limited.
Abstract:
It is hypothesized that chronic kidney disease (CKD) induces oxidant stress which contributes to the decline in kidney function. However, few studies have incorporated longitudinal designs and no studies have investigated this association among children. Using data from the Chronic Kidney Disease in Children (CKiD) study, we examined longitudinal associations between urinary biomarkers of oxidant stress, 8-OH deoxyguanosine (8-OHdG) and F2-isoprostane, and measures of renal function and blood pressure among children with CKD. Baseline levels of 8-OHdG were positively associated with estimated glomerular filtration rate (eGFR) over time and a log-unit increase in baseline 8-OHdG predicted a 5.68 ml/min/1.73 m2 increase in eGFR (95% Confidence Interval (CI): 3.75, 7.61). This association was attenuated when longitudinal measures of 8-OHdG were analyzed in relation to longitudinal eGFR (per log-unit increase in 8-OHdG, β = 0.81, 95% CI: 0.22, 1.39). Baseline 8-OHdG concentrations were also associated with decreased proteinuria over time, as measured by urinary protein:creatinine ratio. In addition, F2-isoprostane concentrations were associated with increases in eGFR, but only when baseline levels (vs. longitudinal levels) were considered in relation to longitudinal eGFR. There were no significant associations between either 8-OHdG or F2-isoprostane and blood pressure over time. Urinary measures of oxidant stress are not associated with worsening GFR over time. Our findings suggest that excretion of these biomarkers may be influenced by changes in glomerular and tubular function in varying patterns, which would limit their value in evaluating the impact of oxidant stress on CKD progression in children.
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