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May 8, 2026Pediatric Research0 citationsOpen Access

Neonatal kidney injury in the hyperoxia-induced bronchopulmonary dysplasia mouse models: effect on morphology and biomarkers

FGFred GraumullerTSTheesitha SrikanthDRDivya T. Rajendran

Key Points

  • To examine the effects of hyperoxia on renal injury in neonatal mouse models of bronchopulmonary dysplasia.
  • Utilized a mouse model of experimental bronchopulmonary dysplasia with moderate (60% O2) to severe (100% O2) exposure.
  • Assessed kidney morphology by recording glomeruli numbers and lengths on postnatal day 14.
  • Evaluated cell death and expression of biomarkers including Angiopoietin-1, Angiopoietin-2, and various cytokines.
  • Significant decrease in glomeruli observed from room air to 60% BPD in both male and female mice.
  • Bowman’s capsule length significantly increased from room air to 100% BPD in female kidneys.
  • Increased cell death indicated by TUNEL staining and elevated cleaved caspase 3 and 9 in moderate and severe BPD models.

Abstract

Abstract Background Preterm infants have reduced nephrons at birth and are exposed to hyperoxic environments. The objective was to examine the effects of hyperoxia on renal injury. Methods We utilized a mouse model of experimental moderate (60% O 2 )-severe (100% O 2 ) bronchopulmonary dysplasia (BPD), obtaining kidney tissue on postnatal day 14. The number of glomeruli, glomerulus length, and Bowman’s capsule’s length were recorded. Cell death and expression of multiple biomarkers were assessed. Results Morphometric analyses showed a significant decrease in glomeruli in male and female mice from room air (RA) to 60% BPD. Bowman’s capsule length was significantly increased from RA to 100% BPD in female kidneys. TUNEL staining, cleaved caspase 3, and 9 expression revealed significantly increased cell death in the kidneys in the moderate and severe BPD models. There was increased expression of Angiopoietin-2 in male kidneys of the moderate BPD group, whereas Angiopoietin-1 and vascular endothelial growth factor were decreased in female mice. In the moderate BPD model, there was upregulation of nuclear factor-kappa B, transforming growth factor-β1, interleukin (IL)-6, and IL-1β in male and female mice. Conclusion We report here that there is significant renal injury and cell death in moderate and severe mouse models of experimental BPD. Impact Neonatal kidneys are still developing at birth. Hyperoxia exposure to the whole mouse also impacts the developing neonatal kidney. There is significant renal injury in moderate and severe mouse models of experimental BPD. This includes morphometric changes in the kidney tissue and increased cell death. In addition, there are significant alterations in the expression of vascular and inflammatory biomarkers.

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Cite This Study

Graumuller et al. (2026) studied this question.

synapsesocial.com/papers/69fd7ec6bfa21ec5bbf0708dhttps://doi.org/10.1038/s41390-026-04925-5
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Titrating cumulative neonatal hyperoxia in mice to model bronchopulmonary dysplasia severities2026
  2. 2Decreased Liver Kinase B1 Expression and Impaired Angiogenesis in a Murine Model of Bronchopulmonary Dysplasia2024 · 3 citations
  3. 3Double hit of foetal growth restriction and postnatal hyperoxia alters lung structure and function in a preterm rabbit model of bronchopulmonary dysplasia2025
  4. 4The impact of hyperoxia and antibiotics on lung mesenchymal cells in experimental bronchopulmonary dysplasia2025 · 1 citations
  5. 5C107-18 Endothelial HIF-1a Is Essential for Vascular and Alveolar Development in Neonatal Murine Model of Bronchopulmonary Dysplasia2026