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Published on: February 2, 2021
Assessment of kidney function in preterm infants: lifelong implications
Carolyn L Abitbol1, Marissa J DeFreitas2, José Strauss3
1Division of Pediatric Nephrology, University of Miami/ Holtz Children's Hospital, Miami, FL, USA. cabitbol@med.miami.edu.
Insights
Neonatal kidney function, crucial for lifelong health, is influenced by gestational age and renal mass. Early assessment and monitoring are vital for predicting and preventing future cardiovascular and renal diseases in infants.
Area of Science:
- Neonatology
- Pediatric Nephrology
- Developmental Biology
Background:
- Neonatal kidney function is critical, with preterm infants facing unique risks due to ongoing nephrogenesis during the last trimester.
- Kidney development is intrinsically linked to gestational age, renal mass, and hemodynamic stability.
- Decreased nephron endowment in preterm infants can result from prenatal and postnatal factors, impacting lifelong health.
Purpose of the Study:
- To review historical and contemporary understanding of neonatal kidney function measurement.
- To emphasize the importance of assessing kidney function in neonates, particularly preterm infants.
- To highlight the predictive value of early kidney function for long-term cardiovascular and renal health.
Main Methods:
- Review of historical and contemporary literature on neonatal kidney function.
- Discussion of challenges in accurately measuring glomerular filtration rate (GFR) in infants.
- Exploration of validated estimation equations and surrogate markers for GFR.
Main Results:
- Neonatal kidney function and its progression predict lifelong renal and cardiovascular disease risks.
- Glomerular filtration rate (GFR) measurement in infants is complicated by the lack of inulin and the unreliability of creatinine.
- Alternative markers like cystatin C and beta trace protein (BTP) show promise for estimating GFR in neonates.
- Postnatal kidney function adaptation correlates with perfused nephron number, total kidney volume (TKV), mean arterial pressure (MAP), and gestational age.
Conclusions:
- Accurate assessment of neonatal kidney function is essential for identifying at-risk infants and guiding long-term management.
- Pediatric nephrologists must consider developmental aspects, including congenital nephron endowment, for lifelong kidney health preservation.
- Lifelong monitoring of renal function, including GFR, TKV, and cardiovascular risks, is recommended for preterm infants.
Abstract:
This educational review will highlight the historical and contemporary references that establish a basic understanding of measurements of kidney function in the neonate and its relevance for the life of an individual. Importantly, the differential renal function of preterm infants relative to term infants has become paramount with the increased viability of preterm infants and the realization that kidney function is associated with gestational age. Moreover, neonatal kidney function is primarily associated with absolute renal mass and hemodynamic stability. Neonatal kidney function and its early developmental progression predict lifelong cardiovascular and renal disease risks. Validation of estimation equations of kidney function in this population has provided important reference data for other investigations and a clinical basis for prospective and longitudinal follow-up. Future research should be directed towards a better understanding of surrogate markers of kidney function from infancy through adulthood. Pediatric nephrologists should be aware of the developmental aspects of kidney function including the importance of the congenital nephron endowment and the preservation of kidney function throughout a lifetime. • Nephrogenesis occurs in utero in concert with other organ systems by branching morphogenesis, including the lungs, pancreas, and vascular tree, with over 60 % of nephrons being formed during the last trimester. • Infants born preterm before 36 weeks' gestation are in active nephrogenesis and are at increased risk of having a decreased nephron endowment from prenatal and postnatal genetic and epigenetic hazards that will impact the patient for a lifetime. • Post-natal adaptation of kidney function is directly proportional to the number of perfused nephrons, estimated by total kidney volume (TKV), mean arterial pressure (MAP), and gestational age. • Accurate measurement of glomerular filtration rate (GFR) in infants is problematic due to the unavailability of the gold standard inulin. The traditional use of creatinine to estimate GFR is unreliable in preterm infants due to its tubular reabsorption by immature kidneys and its dependence on muscle mass as an endogenous marker. Alternative endogenous markers to estimate GFR are cystatin C and beta trace protein (BTP). • Long-term follow-up of renal function in those born preterm should be life long and should include assessment of GFR, total kidney volume (TKV) relative to body surface area (BSA), and cardiovascular risks including hypertension and vascular stiffness.
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