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Long-Term Effects of Neonatal Hyperoxia in Adult Mice
Vasantha H S Kumar1, Huamei Wang1, Sergei Kishkurno1
1Department of Pediatrics, University at Buffalo, Buffalo, New York.
Insights
Neonatal hyperoxia exposure in mice leads to lasting lung damage, pulmonary hypertension, and structural changes in kidneys and aorta. These findings suggest potential long-term health risks for adults with a history of high oxygen exposure as newborns.
Area of Science:
- Neonatal physiology
- Pulmonary medicine
- Developmental biology
Background:
- Premature infant outcomes have improved, but long-term adult health risks remain unclear.
- Bronchopulmonary dysplasia (BPD) in premature infants, linked to hyperoxia, impairs lung function and increases respiratory risks.
- Neonatal hyperoxia is a critical factor affecting infant development and long-term health.
Purpose of the Study:
- To investigate the long-term effects of neonatal hyperoxia on multiple organ systems in adult mice.
- To determine if early-life high oxygen exposure causes irreversible damage.
- To explore the link between neonatal hyperoxia and chronic adult diseases.
Main Methods:
- Newborn mice were exposed to 85% oxygen or room air from postnatal day 3 for 12 days.
- Organ systems (lungs, aorta, kidneys) were assessed at various time points up to 9 months.
- Histopathology, morphometry, and immunohistochemistry were used to evaluate structural changes.
Main Results:
- Hyperoxia-exposed mice showed progressive alveolar simplification and impaired weight gain.
- Pulmonary hypertension worsened over time, indicated by increased arteriolar thickness and Fulton index.
- Adult mice exhibited altered aortic structure and smaller glomeruli, suggesting kidney damage.
Conclusions:
- Prolonged neonatal hyperoxia induces irreversible lung damage and pulmonary hypertension in adult mice.
- Neonatal high oxygen exposure causes lasting structural changes in the aorta and kidneys.
- These findings highlight potential risks for chronic adult diseases following newborn hyperoxia exposure.
Abstract:
The outcomes of premature infants have improved greatly; however, the health risks in adulthood are still relatively unclear. Bronchopulmonary dysplasia (BPD) in premature infants is a major risk factor for alteration in lung function and predisposition to respiratory morbidity, and is associated with hyperoxia. The study explores the effect of neonatal hyperoxia on organ systems in adult mice. Newborn mouse litters were randomized to 85%O2 or room air (RA) on P3 for 12 days; mice were sacrificed at P3, P7, P15, 3 months and 9 months. Lungs were assessed by histopathology, radial alveolar count, mean linear intercept, and α-Smooth muscle actin immunohistochemistry. Aortic assessment included histology, wall thickness, elastin, and collagen content. Glomerular histology and nephron number were assessed in the kidneys. Hyperoxia-exposed mice had progressive alveolar simplification and poor weight gain over time. Greater thickness of pulmonary arterioles by 3 months and a higher Fulton index by 9 months suggest worsening pulmonary hypertension. Aortic wall thickness to lumen ratio was greater with a lower aortic elastin-to-collagen ratio suggesting long-term effects of neonatal hyperoxia. Hyperoxia-exposed mice at 9 months had smaller glomeruli as indicated by glomerular diameter and volume. Prolonged neonatal hyperoxia during the critical period of development induces irreversible lung damage, pulmonary hypertension and structural changes in the kidneys and aorta in adult mice. This could have implications for chronic adult diseases following exposure to high levels of oxygen in the newborn period. Anat Rec, 301:717-726, 2018. © 2017 Wiley Periodicals, Inc.
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