Inhibition of apoptosis by 60% oxygen: a novel pathway contributing to lung injury in neonatal rats

Author:

Yi Man1,Masood Azhar12,Ziino Adrian123,Johnson Ben-Hur12,Belcastro Rosetta1,Li Jun1,Shek Samuel1,Kantores Crystal3,Jankov Robert P.23,Keith Tanswell A.12

Affiliation:

1. Lung Biology Programme, Physiology and Experimental Medicine, Hospital for Sick Children Research Institute, Toronto;

2. The Departments of Paediatrics and Physiology, University of Toronto, Toronto; and

3. Clinical Integrative Biology, Sunnybrook Research Institute, Toronto, Ontario, Canada

Abstract

During early postnatal alveolar formation, the lung tissue of rat pups undergoes a physiological remodeling involving apoptosis of distal lung cells. Exposure of neonatal rats to severe hyperoxia (≥95% O2) both arrests lung growth and results in increased lung cell apoptosis. In contrast, exposure to moderate hyperoxia (60% O2) for 14 days does not completely arrest lung cell proliferation and is associated with parenchymal thickening. On the basis of similarities in lung architecture observed following either exposure to 60% O2, or pharmacological inhibition of physiological apoptosis, we hypothesized that exposure to 60% O2would result in an inhibition of physiological lung cell apoptosis. Consistent with this hypothesis, we observed that the parenchymal thickening induced by exposure to 60% O2was associated with decreased numbers of apoptotic cells, increased expressions of the antiapoptotic regulator Bcl-xL, and the putative antiapoptotic protein survivin, and decreased expressions of the proapoptotic cleaved caspases-3 and -7. In summary, exposure of the neonatal rat lung to moderate hyperoxia results in an inhibition of physiological apoptosis, which contributes to the parenchymal thickening observed in the resultant lung injury.

Publisher

American Physiological Society

Subject

Cell Biology,Physiology (medical),Pulmonary and Respiratory Medicine,Physiology

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