Alveolar cell apoptosis is dependent on p38 MAP kinase-mediated activation of xanthine oxidoreductase in ventilator-induced lung injury

A Le, R Damico, M Damarla, A Boueiz… - Journal of applied …, 2008 - journals.physiology.org
A Le, R Damico, M Damarla, A Boueiz, HH Pae, J Skirball, E Hasan, X Peng, A Chesley…
Journal of applied physiology, 2008journals.physiology.org
Signaling via p38 MAP kinase has been implicated in the mechanotransduction associated
with mechanical stress and ventilator-induced lung injury (VILI). However, the critical
downstream mediators of alveolar injury remain incompletely defined. We provide evidence
that high-tidal volume mechanical ventilation (HVt MV) rapidly activates caspases within the
lung, resulting in increased alveolar cell apoptosis. Antagonism of MV-induced p38 MAP
kinase activity with SB-203580 suppresses both MV-induced caspase activity and alveolar …
Signaling via p38 MAP kinase has been implicated in the mechanotransduction associated with mechanical stress and ventilator-induced lung injury (VILI). However, the critical downstream mediators of alveolar injury remain incompletely defined. We provide evidence that high-tidal volume mechanical ventilation (HVt MV) rapidly activates caspases within the lung, resulting in increased alveolar cell apoptosis. Antagonism of MV-induced p38 MAP kinase activity with SB-203580 suppresses both MV-induced caspase activity and alveolar apoptosis, placing p38 MAP kinase upstream of MV-induced caspase activation and programmed cell death. The reactive oxygen species (ROS)-producing enzyme xanthine oxidoreductase (XOR) is activated in a p38 MAP kinase-dependent manner following HVt MV. Allopurinol, a XOR inhibitor, also suppresses HVt MV-induced apoptosis, implicating HVt MV-induced ROS in the induction of alveolar cell apoptosis. Finally, systemic administration of the pan-caspase inhibitor, z-VAD-fmk, but not its inactive peptidyl analog, z-FA-fmk, blocks ventilator-induced apoptosis of alveolar cells and alveolar-capillary leak, indicating that caspase-dependent cell death is necessary for VILI-associated barrier dysfunction in vivo.
American Physiological Society