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Analysis of Nephron Composition and Function in the Adult Zebrafish Kidney
Published on: August 9, 2014
Preterm birth and the kidney: implications for long-term renal health
Lina Gubhaju1, Megan R Sutherland, M Jane Black
1Department of Anatomy and Developmental Biology, Monash University, Clayton, Victoria, Australia.
Insights
Preterm birth may negatively impact kidney development, increasing the risk of hypertension and renal impairment later in life. Further research is needed to identify strategies to optimize long-term kidney health for preterm infants.
Area of Science:
- Neonatal Medicine
- Developmental Biology
- Nephrology
Background:
- Preterm birth survivors face increased risks of hypertension and renal impairment.
- This risk is linked to potential negative impacts on nephron endowment during critical third-trimester development.
- Limited research exists on the structural kidney consequences of preterm birth.
Purpose of the Study:
- To investigate the structural consequences of preterm birth on kidney development.
- To explore factors influencing nephrogenesis and final nephron endowment in preterm neonates.
- To identify potential interventional strategies for optimizing long-term renal health.
Main Methods:
- Review of epidemiological and clinical studies on preterm birth and renal outcomes.
- Examination of kidney structure in preterm baboon models.
- Analysis of glomerular abnormalities in autopsied preterm infants.
Main Results:
- Preterm birth may disrupt ongoing nephrogenesis, leading to abnormal glomeruli (up to 18% in some cases).
- Similar glomerular abnormalities observed in both animal models and human infants.
- Prenatal and postnatal factors (medications, hyperoxia, growth restriction) influence nephron endowment.
Conclusions:
- Preterm birth poses a risk to kidney structure and long-term renal health.
- Abnormalities in nephrogenesis and glomerular development are significant concerns.
- Further research is crucial to identify interventions that maximize nephron endowment and promote renal health in preterm individuals.
Abstract:
Although the majority of preterm neonates now survive infancy, there is emerging epidemiological evidence to demonstrate that individuals born preterm exhibit an elevated risk for the development of hypertension and renal impairment later in life, thus supporting the developmental origins of health and disease hypothesis. The increased risk may potentially be attributed to a negative impact of preterm birth on nephron endowment. Indeed, at the time when most preterm neonates are delivered, nephrogenesis in the kidney is still ongoing with the majority of nephrons normally formed during the third trimester of pregnancy. A number of clinical studies have provided evidence of altered renal function during the neonatal period, but to date there have been limited studies describing the consequences of preterm birth on kidney structure. Importantly, studies in the preterm baboon have shown that nephrogenesis is clearly ongoing following preterm birth; however, the presence of abnormal glomeruli (up to 18% in some cases) is of concern. Similar glomerular abnormalities have been described in autopsied preterm infants. Prenatal and postnatal factors such as exposure to certain medications, hyperoxia and intrauterine and/or extrauterine growth restriction are likely to have a significant influence on nephrogenesis and final nephron endowment. Further studies are required to determine the factors contributing to renal maldevelopment and to identify potential interventional strategies to maximize nephron endowment at the start of life, thereby optimizing long-term renal health for preterm individuals.
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