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Long-term renal follow-up of extremely low birth weight infants
Juan Rodríguez-Soriano1, Mireia Aguirre, Roberto Oliveros
1Division of Pediatric Nephrology, Department of Pediatrics, Hospital de Cruces and Basque University School of Medicine, Plaza de Cruces s/n, Baracaldo, 48903, Vizcaya, Spain. j.soriano@telefonica.net
Insights
Children born extremely prematurely show impaired kidney function, including reduced glomerular filtration rate and tubular phosphate transport. These findings suggest potential long-term renal health issues in this vulnerable population.
Area of Science:
- Pediatric Nephrology
- Neonatalogy
- Developmental Biology
Background:
- Low birth weight from intrauterine growth retardation can negatively impact kidney development.
- Limited data exists on renal development in extremely premature infants.
Purpose of the Study:
- To assess clinical and functional renal parameters in school-aged children born weighing less than 1000g at birth.
- To compare renal function in extremely premature children with healthy controls.
Main Methods:
- Evaluated 40 extremely premature children (6.1-12.4 years) and 43 healthy controls.
- Assessed anthropometrics, blood pressure, renal sonography, plasma creatinine, creatinine clearance, microalbuminuria, and tubular phosphate and calcium excretion.
- Compared key renal function indicators between the two groups.
Main Results:
- Extremely premature children were smaller and thinner but had similar blood pressure and renal sonography findings compared to controls.
- Significantly lower estimated creatinine clearance and impaired tubular phosphate transport (lower TmP/GFR and TRP) were observed in the premature group.
- Higher urinary calcium excretion and a notable percentage of microalbuminuria cases were found in extremely premature children.
Conclusions:
- Extreme prematurity is associated with diminished glomerular filtration rate and impaired tubular phosphate transport in school-aged children.
- These renal functional deficits may stem from impaired postnatal nephrogenesis.
- Long-term renal health monitoring is crucial for extremely premature infants.
Abstract:
There is evidence that low birth weight caused by intrauterine growth retardation adversely affects normal renal development. Very little information on this issue is available on children born very prematurely. This investigation examined clinical and functional renal parameters in 40 children (23 boys, 17 girls) ranging in age between 6.1 and 12.4 years and weighing less than 1000 g at birth. Results were compared to those obtained in 43 healthy children of similar age and gender. Study subjects were significantly smaller and thinner than control subjects (mean height SDS: -0.36 vs. +0.70; and mean BMI SDS: -0.56 vs. +1.18). Systolic, diastolic, and mean blood pressures did not differ from those of controls. Renal sonography revealed no abnormality, and mean percentiles for renal length and volume appeared normal. In comparison with controls, plasma creatinine concentration (0.62+/-0.1 vs. 0.53+/-0.1 mg/dl) and estimated creatinine clearance (117+/-17 vs. 131+/-17 ml min(-1) 1.73 m(-2)) differed significantly. No significant differences were observed in microalbuminuria values, but five study subjects (12.5%) presented values above the upper limit of normality. A defect in tubular phosphate transport was also evident: TmP/GFR (3.6+/-0.4 vs. 4.2+/-0.8 mg/dl) and TRP (83+/-5% vs. 90+/-4%) were significantly lower, and urinary P excretion, estimated by the ratio UP/UCr, was significantly higher (1.2+/-0.4 vs. 0.9+/-0.4 mg/mg) than controls. Urinary calcium excretion, estimated by the UCa/UCr ratio, was also significantly higher (0.15+/-0.07 vs. 0.12+/-0.09 mg/mg). These data clearly demonstrate that both GFR and tubular phosphate transport are significantly diminished in school-age children born with extreme prematurity, probably as a consequence of impaired postnatal nephrogenesis.
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