Literature DB >> 16545689

Oxidant stress modulates murine allergic airway responses.

Megha Talati1, Barbara Meyrick, R Stokes Peebles, Sean S Davies, Ryszard Dworski, Ray Mernaugh, Daphne Mitchell, Mark Boothby, L Jackson Roberts, James R Sheller.   

Abstract

The allergic inflammation occurring in asthma is believed to be accompanied by the production of free radicals. To investigate the role of free radicals and the cells affected we turned to a murine model of allergic inflammation produced by sensitization to ovalbumin with subsequent aerosol challenge. We examined oxidant stress by measuring and localizing the sensitive and specific marker of lipid peroxidation, the F2-isoprostanes. F2-isoprostanes in whole lung increased from 0.30 +/- 0.08 ng/lung at baseline to a peak of 0.061 +/- 0.09 ng/lung on the ninth day of daily aerosol allergen challenge. Increased immunoreactivity to 15-F2t-IsoP (8-iso-PGF2alpha) or to isoketal protein adducts was found in epithelial cells 24 h after the first aerosol challenge and at 5 days in macrophages. Collagen surrounding airways and blood vessels, and airway and vascular smooth muscle, also exhibited increased immunoreactivity after ovalbumin challenge. Dietary vitamin E restriction in conjunction with allergic inflammation led to increased whole lung F2-isoprostanes while supplemental vitamin E suppressed their formation. Similar changes in immunoreactivity to F2-isoprostanes were seen. Airway responsiveness to methacholine was also increased by vitamin E depletion and decreased slightly by supplementation with the antioxidant. Our findings indicate that allergic airway inflammation in mice is associated with an increase in oxidant stress, which is most striking in airway epithelial cells and macrophages. Oxidant stress plays a role in the production of airway responsiveness.

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Year:  2005        PMID: 16545689     DOI: 10.1016/j.freeradbiomed.2005.11.012

Source DB:  PubMed          Journal:  Free Radic Biol Med        ISSN: 0891-5849            Impact factor:   7.376


  21 in total

1.  The protective effect of α-hederin, the active constituent of Nigella sativa, on tracheal responsiveness and lung inflammation in ovalbumin-sensitized guinea pigs.

Authors:  Saeideh Saadat; Mostafa Mohammadi; Maryam Fallahi; Rana Keyhanmanesh; Mohammad Reza Aslani
Journal:  J Physiol Sci       Date:  2015-03-10       Impact factor: 2.781

2.  Isolevuglandins as a gauge of lipid peroxidation in human tumors.

Authors:  H P Yan; L J Roberts; S S Davies; P Pohlmann; F F Parl; S Estes; J Maeng; B Parker; R Mernaugh
Journal:  Free Radic Biol Med       Date:  2017-02-09       Impact factor: 7.376

3.  Isolevuglandin-type lipid aldehydes induce the inflammatory response of macrophages by modifying phosphatidylethanolamines and activating the receptor for advanced glycation endproducts.

Authors:  Lilu Guo; Zhongyi Chen; Venkataraman Amarnath; Patricia G Yancey; Brian J Van Lenten; Justin R Savage; Sergio Fazio; MacRae F Linton; Sean S Davies
Journal:  Antioxid Redox Signal       Date:  2015-03-18       Impact factor: 8.401

4.  Natural-source d-α-tocopheryl acetate inhibits oxidant stress and modulates atopic asthma in humans in vivo.

Authors:  Aimee Hoskins; Jackson L Roberts; Ginger Milne; Leena Choi; Ryszard Dworski
Journal:  Allergy       Date:  2012-03-22       Impact factor: 13.146

Review 5.  Mechanisms of isolevuglandin-protein adduct formation in inflammation and hypertension.

Authors:  Liang Xiao; David M Patrick; Luul A Aden; Annet Kirabo
Journal:  Prostaglandins Other Lipid Mediat       Date:  2018-09-29       Impact factor: 3.072

Review 6.  The influence of selenium on immune responses.

Authors:  Peter R Hoffmann; Marla J Berry
Journal:  Mol Nutr Food Res       Date:  2008-11       Impact factor: 5.914

7.  Isoketals form cytotoxic phosphatidylethanolamine adducts in cells.

Authors:  C Blake Sullivan; Elena Matafonova; L Jackson Roberts; Venkataraman Amarnath; Sean S Davies
Journal:  J Lipid Res       Date:  2009-11-25       Impact factor: 5.922

Review 8.  Biomarkers of obesity and subsequent cardiovascular events.

Authors:  Salma Musaad; Erin N Haynes
Journal:  Epidemiol Rev       Date:  2007-05-10       Impact factor: 6.222

9.  Deficiency of gp91phox inhibits allergic airway inflammation.

Authors:  Carla M Sevin; Dawn C Newcomb; Shinji Toki; Wei Han; Taylor P Sherrill; Madison G Boswell; Zhou Zhu; Robert D Collins; Kelli L Boyd; Kasia Goleniewska; Matthew M Huckabee; Timothy S Blackwell; R Stokes Peebles
Journal:  Am J Respir Cell Mol Biol       Date:  2013-09       Impact factor: 6.914

10.  Inhaled birch pollen extract induces airway hyperresponsiveness via oxidative stress but independently of pollen-intrinsic NADPH oxidase activity, or the TLR4-TRIF pathway.

Authors:  Karim H Shalaby; Alexandra Allard-Coutu; Michael J O'Sullivan; Emily Nakada; Salman T Qureshi; Brian J Day; James G Martin
Journal:  J Immunol       Date:  2013-06-17       Impact factor: 5.422

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