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Increased intrapulmonary retention of radiolabeled neutrophils in early oxygen toxicity
J E Rinaldo1, D English, J Levine
1Department of Medicine, University of Pittsburgh School of Medicine, Pennsylvania 15261.
Abstract:
Sequential lung injuries, such as oxygen toxicity followed by septicemia, are common during the adult respiratory distress syndrome (ARDS). As these forms of vascular injury may be mediated in part by polymorphonuclear leukocytes (PMN), aberrant interactions between PMN and previously injured pulmonary endothelium are of both theoretical interest and clinical importance. The present study was undertaken to test the hypothesis that early oxygen toxicity at a dose that injuries pulmonary endothelium relatively selectively alters intrapulmonary neutrophil kinetics. Unanesthetized rats breathing 1.0 atmospheres oxygen for 36 h showed ultrastructural endothelial damage but no edema, injury, or neutrophilic inflammation by histologic criteria. However, in these oxygen-toxic animals, whereas initial accumulation of radiolabeled PMN in lungs was normal, washout of PMN was abnormal at 120 min after infusion, at which point the pulmonary retention of radiolabeled PMN in the lungs of oxygen-treated animals was significantly higher than in control animals (139% of control, p less than 0.0096). Features of our methodology, including avoidance of osmotic stress and use of paired control animals, appear to have greatly enhanced the sensitivity of radiolabeled neutrophils for detecting a subtle abnormality of neutrophil-endothelial interactions. Our studies in the oxygen toxicity model provide the first demonstration in vivo of abnormal intrapulmonary neutrophil kinetics in early oxygen toxicity prior to the onset of histologic evidence of lung injury or inflammation.
Insights
Early lung injury from oxygen toxicity alters how neutrophils interact with pulmonary endothelium. This study shows abnormal neutrophil retention in lungs before visible inflammation, suggesting a new mechanism in acute respiratory distress syndrome.
Area of Science:
- Pulmonary Medicine
- Cellular Biology
- Toxicology
Background:
- Sequential lung injuries are common in adult respiratory distress syndrome (ARDS).
- Polymorphonuclear leukocytes (PMN) may mediate vascular injury, highlighting the importance of PMN-endothelial interactions in ARDS.
- Early pulmonary endothelial injury can precede significant inflammation.
Purpose of the Study:
- To investigate the hypothesis that early oxygen toxicity selectively alters intrapulmonary neutrophil kinetics.
- To determine if subtle endothelial damage affects neutrophil behavior before histologic signs of lung injury.
Main Methods:
- Unanesthetized rats were exposed to 1.0 atm oxygen for 36 hours.
- Radiolabeled PMN were infused, and their lung accumulation and washout kinetics were measured.
- Ultrastructural and histologic analyses were performed to assess endothelial damage and inflammation.
Main Results:
- Oxygen exposure caused ultrastructural endothelial damage without edema or histologic inflammation.
- While initial PMN lung accumulation was normal, PMN washout was impaired.
- Pulmonary retention of radiolabeled PMN was significantly higher (139% of control) in oxygen-exposed rats.
Conclusions:
- Early oxygen toxicity induces abnormal intrapulmonary neutrophil kinetics.
- This occurs prior to the development of histologic evidence of lung injury or inflammation.
- The findings demonstrate an in vivo abnormality in neutrophil-endothelial interactions during early oxygen toxicity.