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February 28, 2026Biomedicines1 citationsOpen Access

The Link Between Preterm Birth and Long-Term Renal Consequences: Current Knowledge and Emerging Therapeutic Targets

JDJohn DotisAristotle University of ThessalonikiASAlexandra SkarlatouDemocritus University of ThraceMFMaria FourikouAristotle University of Thessaloniki

Key Points

  • The aim is to examine the long-term renal consequences of preterm birth and the associated pathophysiological mechanisms.
  • Comprehensive review of clinical cohort studies and population-based registries.
  • Integration of evidence from meta-analyses and experimental models.
  • Evaluation of factors like neonatal acute kidney injury and nephrotoxic exposures.
  • Reduced nephron endowment and compensatory glomerular hypertrophy result from preterm birth.
  • Higher prevalence of reduced estimated glomerular filtration rates, albuminuria, and elevated blood pressure was observed.
  • Emerging biomarkers like cystatin C may improve early identification of high-risk individuals.

Abstract

Background/Objectives: Preterm birth interrupts nephrogenesis during a critical developmental window, resulting in reduced nephron endowment and lifelong renal vulnerability. Evidence indicates that individuals born preterm are at increased risk for hypertension, albuminuria, and chronic kidney disease (CKD) across the life course. This review synthesizes current evidence linking prematurity with adverse renal outcomes, explores key pathophysiological mechanisms, and discusses emerging biomarkers together with therapeutic strategies. Methods: This comprehensive review integrates evidence from clinical cohort studies, population-based registries, meta-analyses and experimental models. Factors such as neonatal acute kidney injury (AKI), nephrotoxic exposures and cardiometabolic interactions were integrated to provide a life-course perspective. Results: Preterm birth leads to reduced nephron endowment, compensatory glomerular hypertrophy, and hyperfiltration, which predispose to progressive nephron loss. Postnatal factors, including neonatal AKI, inflammation, nephrotoxic medications, and later cardiometabolic stress, act as cumulative “hits”, accelerating renal injury trajectories. Clinical studies demonstrate a higher prevalence of reduced estimated glomerular filtration rate, albuminuria, elevated blood pressure, and smaller kidney volumes from childhood into adulthood. Emerging biomarkers such as cystatin C, alongside imaging-based estimates of nephron endowment, may enhance early risk stratification. Conclusions: Preterm birth represents an independent, lifelong risk factor for CKD through combined developmental and postnatal mechanisms. Structured long-term surveillance and early preventive strategies are essential to preserve renal reserve in this population. Advances in biomarker-guided monitoring and targeted interventions may enable earlier identification of high-risk individuals and support precision approaches to nephroprotection after prematurity.

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Cite This Study

Dotis et al. (2026) studied this question.

synapsesocial.com/papers/69a2877b0a974eb0d3c03455https://doi.org/10.3390/biomedicines14030517
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