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.