Literature DB >> 9458795

Potential involvement of 4-hydroxynonenal in the response of human lung cells to ozone.

R F Hamilton1, L Li, W L Eschenbacher, L Szweda, A Holian.   

Abstract

Ozone is a photochemically generated pollutant that can cause acute pulmonary inflammation and induce cellular injury and may contribute to the development or exacerbation of chronic lung diseases. Despite much research, the mechanisms of ozone- and oxidant-induced cellular injury are still uncertain. Ozone and secondary free radicals have been reported to cause the formation of aldehydes in biological fluids. One of the most toxic aldehydes formed during oxidant-induced lipid peroxidation is 4-hydroxynonenal (HNE). HNE reacts primarily with Cys, Lys, and His amino acids, altering protein function and forming protein adducts. The purpose of this study was to determine whether HNE could account for the acute effects of ozone on lung cells. Human subjects were exposed to 0.4 parts/million ozone or air for 1 h with exercise (each subject served as his/her own control). Six hours after ozone exposure, cells obtained by airway lavage were examined for apoptotic cell injury, and cells from bronchoalveolar lavage were examined for apoptosis, presence of HNE adducts, and expression of stress proteins. Significant apoptosis was evident in airway lung cells after ozone exposure. Western analysis demonstrated an increase in a 32-kDa HNE protein adduct and a number of stress proteins, viz., 72-kDa heat shock protein and ferritin, in alveolar macrophages (AM) after ozone exposure. All of these effects could be replicated by in vitro exposure of AM to HNE. Consequently, the in vitro results and demonstration of HNE protein adducts after ozone exposure are consistent with a potential role for HNE in the cellular toxic effects of ozone.

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Year:  1998        PMID: 9458795     DOI: 10.1152/ajplung.1998.274.1.L8

Source DB:  PubMed          Journal:  Am J Physiol        ISSN: 0002-9513


  15 in total

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5.  HNE increases HO-1 through activation of the ERK pathway in pulmonary epithelial cells.

Authors:  Karen E Iles; Dale A Dickinson; Amanda F Wigley; Nathan E Welty; Volker Blank; Henry Jay Forman
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10.  Oxysterols Modify NLRP2 in Epithelial Cells, Identifying a Mediator of Ozone-induced Inflammation.

Authors:  Alexia Perryman; Adam M Speen; Hye-Young H Kim; Jessica R Hoffman; Phillip W Clapp; William Rivera Martin; John N Snouwaert; Beverly H Koller; Ned A Porter; Ilona Jaspers
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