Literature DB >> 27451958

Mechanisms of the acute effects of inhaled ozone in humans.

Philip A Bromberg1.   

Abstract

Ambient air ozone (O3) is generated photochemically from oxides of nitrogen and volatile hydrocarbons. Inhaled O3 causes remarkably reversible acute lung function changes and inflammation. Approximately 80% of inhaled O3 is deposited on the airways. O3 reacts rapidly with CC double bonds in hydrophobic airway and alveolar surfactant-associated phospholipids and cholesterol. Resultant primary ozonides further react to generate bioactive hydrophilic products that also initiate lipid peroxidation leading to eicosanoids and isoprostanes of varying electrophilicity. Airway surface liquid ascorbate and urate also scavenge O3. Thus, inhaled O3 may not interact directly with epithelial cells. Acute O3-induced lung function changes are dominated by involuntary inhibition of inspiration (rather than bronchoconstriction), mediated by stimulation of intraepithelial nociceptive vagal C-fibers via activation of transient receptor potential (TRP) A1 cation channels by electrophile (e.g., 4-oxo-nonenal) adduction of TRPA1 thiolates enhanced by PGE2-stimulated sensitization. Acute O3-induced neutrophilic airways inflammation develops more slowly than the lung function changes. Surface macrophages and epithelial cells are involved in the activation of epithelial NFkB and generation of proinflammatory mediators such as IL-6, IL-8, TNFa, IL-1b, ICAM-1, E-selectin and PGE2. O3-induced partial depolymerization of hyaluronic acid and the release of peroxiredoxin-1 activate macrophage TLR4 while oxidative epithelial cell release of EGFR ligands such as TGFa or EGFR transactivation by activated Src may also be involved. The ability of lipid ozonation to generate potent electrophiles also provides pathways for Nrf2 activation and inhibition of canonical NFkB activation. This article is part of a Special Issue entitled Air Pollution, edited by Wenjun Ding, Andrew J. Ghio and Weidong Wu.
Copyright © 2016. Published by Elsevier B.V.

Entities:  

Keywords:  Acute effects; Airway; Human; Inflammation; Lipids; Ozone

Mesh:

Substances:

Year:  2016        PMID: 27451958     DOI: 10.1016/j.bbagen.2016.07.015

Source DB:  PubMed          Journal:  Biochim Biophys Acta        ISSN: 0006-3002


  36 in total

1.  Impact of Long-Term Exposures to Ambient PM2.5 and Ozone on ARDS Risk for Older Adults in the United States.

Authors:  Jongeun Rhee; Francesca Dominici; Antonella Zanobetti; Joel Schwartz; Yun Wang; Qian Di; John Balmes; David C Christiani
Journal:  Chest       Date:  2019-03-26       Impact factor: 9.410

2.  Oxidative Stress from Environmental Exposures.

Authors:  James M Samet; Phillip A Wages
Journal:  Curr Opin Toxicol       Date:  2018-02-20

3.  Independent roles of beta-adrenergic and glucocorticoid receptors in systemic and pulmonary effects of ozone.

Authors:  Andres R Henriquez; Samantha J Snow; Mette C Schladweiler; Colette N Miller; Urmila P Kodavanti
Journal:  Inhal Toxicol       Date:  2020-05-04       Impact factor: 2.724

4.  Short course gamma tocopherol did not mitigate effects of ozone on airway inflammation in asthmatics.

Authors:  Allison J Burbank; Michelle L Hernandez; Carole Robinette; Ting Wang; Haibo Zhou; Neil Alexis; William D Bennett; David B Peden
Journal:  Inhal Toxicol       Date:  2020-07-30       Impact factor: 2.724

Review 5.  Mechanistic Basis for Obesity-related Increases in Ozone-induced Airway Hyperresponsiveness in Mice.

Authors:  Stephanie A Shore
Journal:  Ann Am Thorac Soc       Date:  2017-11

6.  Regulation of Lung Macrophage Activation and Oxidative Stress Following Ozone Exposure by Farnesoid X Receptor.

Authors:  Mary Francis; Grace Guo; Bo Kong; Elena V Abramova; Jessica A Cervelli; Andrew J Gow; Jeffrey D Laskin; Debra L Laskin
Journal:  Toxicol Sci       Date:  2020-10-01       Impact factor: 4.849

7.  Adrenergic and glucocorticoid receptor antagonists reduce ozone-induced lung injury and inflammation.

Authors:  Andres R Henriquez; Samantha J Snow; Mette C Schladweiler; Colette N Miller; Janice A Dye; Allen D Ledbetter; Judy E Richards; Kevin Mauge-Lewis; Marie A McGee; Urmila P Kodavanti
Journal:  Toxicol Appl Pharmacol       Date:  2017-12-13       Impact factor: 4.219

8.  Changes in Metabolites Present in Lung-Lining Fluid Following Exposure of Humans to Ozone.

Authors:  WanYun Cheng; Kelly E Duncan; Andrew J Ghio; Cavin Ward-Caviness; Edward D Karoly; David Diaz-Sanchez; Rory B Conolly; Robert B Devlin
Journal:  Toxicol Sci       Date:  2018-06-01       Impact factor: 4.849

9.  Transcriptional Profiling of the Murine Airway Response to Acute Ozone Exposure.

Authors:  Adelaide Tovar; Gregory J Smith; Joseph M Thomas; Wesley L Crouse; Jack R Harkema; Samir N P Kelada
Journal:  Toxicol Sci       Date:  2020-01-01       Impact factor: 4.849

Review 10.  Role of Innate Immune System in Environmental Lung Diseases.

Authors:  Marissa A Guttenberg; Aaron T Vose; Robert M Tighe
Journal:  Curr Allergy Asthma Rep       Date:  2021-05-10       Impact factor: 4.806

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