Literature DB >> 16632522

Mechanical stress activates xanthine oxidoreductase through MAP kinase-dependent pathways.

Raja-Elie E Abdulnour1, Xinqi Peng, Jay H Finigan, Eugenia J Han, Emile J Hasan, Konstantin G Birukov, Sekhar P Reddy, James E Watkins, Usamah S Kayyali, Joe G N Garcia, Rubin M Tuder, Paul M Hassoun.   

Abstract

Xanthine oxidoreductase (XOR) plays a prominent role in acute lung injury because of its ability to generate reactive oxygen species. We investigated the role of XOR in ventilator-induced lung injury (VILI). Male C57BL/6J mice were assigned to spontaneous ventilation (sham) or mechanical ventilation (MV) with low (7 ml/kg) and high tidal volume (20 ml/kg) for 2 h after which lung XOR activity and expression were measured and the effect of the specific XOR inhibitor allopurinol on pulmonary vascular leakage was examined. In separate experiments, rat pulmonary microvascular endothelial cells (RPMECs) were exposed to cyclic stretch (5% and 18% elongation, 20 cycles/min) for 2 h before intracellular XOR activity measurement. Lung XOR activity was significantly increased at 2 h of MV without changes in XOR expression. There was evidence of p38 MAP kinase, ERK1/2, and ERK5 phosphorylation, but no change in JNK phosphorylation. Evans blue dye extravasation and bronchoalveolar lavage protein concentration were significantly increased in response to MV, changes that were significantly attenuated by pretreatment with allopurinol. Cyclic stretch of RPMECs also caused MAP kinase phosphorylation and a 1.7-fold increase in XOR activity, which was completely abrogated by pretreatment of the cells with specific MAP kinase inhibitors. We conclude that XOR enzymatic activity is significantly increased by mechanical stress via activation of p38 MAP kinase and ERK and plays a critical role in the pathogenesis of pulmonary edema associated with VILI.

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Year:  2006        PMID: 16632522     DOI: 10.1152/ajplung.00453.2005

Source DB:  PubMed          Journal:  Am J Physiol Lung Cell Mol Physiol        ISSN: 1040-0605            Impact factor:   5.464


  48 in total

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Journal:  Am J Physiol Lung Cell Mol Physiol       Date:  2010-05-07       Impact factor: 5.464

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4.  Genetic and pharmacologic evidence links oxidative stress to ventilator-induced lung injury in mice.

Authors:  Srinivas Papaiahgari; Adi Yerrapureddy; Swetha R Reddy; Narsa M Reddy; Jeffery M Dodd-O; Michael T Crow; Dimitry N Grigoryev; Kathleen Barnes; Rubin M Tuder; Masayuki Yamamoto; Thomas W Kensler; Shyam Biswal; Wayne Mitzner; Paul M Hassoun; Sekhar P Reddy
Journal:  Am J Respir Crit Care Med       Date:  2007-09-27       Impact factor: 21.405

5.  Factors controlling vascular permeability: transmitting mechanical signals. Focus on "Mechanical induction of group V phospholipase A₂ causes lung inflammation and acute lung injury".

Authors:  Judy Creighton
Journal:  Am J Physiol Lung Cell Mol Physiol       Date:  2013-06-28       Impact factor: 5.464

6.  Untargeted LC-MS metabolomics of bronchoalveolar lavage fluid differentiates acute respiratory distress syndrome from health.

Authors:  Charles R Evans; Alla Karnovsky; Melissa A Kovach; Theodore J Standiford; Charles F Burant; Kathleen A Stringer
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Journal:  Mol Endocrinol       Date:  2014-01-17

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

Authors:  Anne Le; Rachel Damico; Mahendra Damarla; Adel Boueiz; Hyun Hae Pae; Jarrett Skirball; Emile Hasan; Xinqi Peng; Alan Chesley; Michael T Crow; Sekhar P Reddy; Rubin M Tuder; Paul M Hassoun
Journal:  J Appl Physiol (1985)       Date:  2008-07-31

9.  A cell-based approach to study changes in the pancreas following nicotine exposure in an animal model of injury.

Authors:  Parimal Chowdhury; Azida Walker
Journal:  Langenbecks Arch Surg       Date:  2008-01-17       Impact factor: 3.445

Review 10.  Cyclic stretch, reactive oxygen species, and vascular remodeling.

Authors:  Konstantin G Birukov
Journal:  Antioxid Redox Signal       Date:  2009-07       Impact factor: 8.401

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