Related Experiment Video
Updated: Mar 22, 2026

Isolation of Pulmonary Artery Smooth Muscle Cells from Neonatal Mice
Published on: October 19, 2013
Mast cells and exosomes in hyperoxia-induced neonatal lung disease
A Veerappan1, M Thompson2, A R Savage1
1Department of Physiology and Biophysics, Weill Cornell Medicine, New York, New York;
Insights
Neonatal hyperoxia causes chronic lung disease (CLD) by increasing mast cells, which worsen lung injury. Mast cell products like beta-hexosaminidase may help diagnose CLD in preterm infants.
Area of Science:
- Pulmonary Medicine
- Immunology
- Neonatology
Background:
- Chronic lung disease of prematurity (CLD) is a common complication of premature birth, with oxygen toxicity being a key risk factor.
- Impaired alveolarization, lung scarring, and inflammation characterize CLD.
- Mast cell hyperplasia is observed in CLD, but their role in disease development is unclear.
Purpose of the Study:
- To investigate the role of mast cells in neonatal hyperoxia-induced lung injury, a model for CLD.
- To determine if mast cell products can serve as diagnostic or prognostic biomarkers for CLD in preterm infants.
Main Methods:
- Neonatal wild-type and mast cell-deficient mice were exposed to hyperoxia (80% O2) or room air.
- Lung structure and compliance were assessed after hyperoxia exposure.
- Mast cell mediators (β-hexosaminidase, histamine, elastase) were measured in mouse bronchoalveolar lavage fluid and in tracheal aspirates from preterm infants.
Main Results:
- Hyperoxia increased mast cell numbers, caused alveolar simplification, and increased lung compliance in wild-type mice.
- Mast cell deficiency protected against hyperoxia-induced lung injury, preserving air space integrity.
- Elevated β-hexosaminidase levels were found in hyperoxia-exposed mice and in preterm infants with CLD, correlating with oxygen exposure.
Conclusions:
- Mast cells significantly contribute to hyperoxia-induced lung injury, playing a key role in the pathogenesis of CLD.
- Mast cell mediators, particularly β-hexosaminidase, show potential as biomarkers for diagnosing and predicting CLD in oxygen-exposed preterm infants.
Abstract:
Chronic lung disease of prematurity (CLD) is a frequent sequela of premature birth and oxygen toxicity is a major associated risk factor. Impaired alveolarization, scarring, and inflammation are hallmarks of CLD. Mast cell hyperplasia is a feature of CLD but the role of mast cells in its pathogenesis is unknown. We hypothesized that mast cell hyperplasia is a consequence of neonatal hyperoxia and contributes to CLD. Additionally, mast cell products may have diagnostic and prognostic value in preterm infants predisposed to CLD. To model CLD, neonatal wild-type and mast cell-deficient mice were placed in an O2 chamber delivering hyperoxic gas mixture [inspired O2 fraction (FiO2 ) of 0.8] (HO) for 2 wk and then returned to room air (RA) for an additional 3 wk. Age-matched controls were kept in RA (FiO2 of 0.21). Lungs from HO mice had increased numbers of mast cells, alveolar simplification and enlargement, and increased lung compliance. Mast cell deficiency proved protective by preserving air space integrity and lung compliance. The mast cell mediators β-hexosaminidase (β-hex), histamine, and elastase increased in the bronchoalveolar lavage fluid of HO wild-type mice. Tracheal aspirate fluids (TAs) from oxygenated and mechanically ventilated preterm infants were analyzed for mast cell products. In TAs from infants with confirmed cases of CLD, β-hex was elevated over time and correlated with FiO2 Mast cell exosomes were also present in the TAs. Collectively, these data show that mast cells play a significant role in hyperoxia-induced lung injury and their products could serve as potential biomarkers in evolving CLD.
Related Concept Videos
Overview of Exosomes
Stahl et al. discovered exosomes in 1983, but the exosomes were initially considered waste products released from the...
Inflammation

