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The Effects on Bronchial Epithelial Mucociliary Cultures of Coarse, Fine, and Ultrafine Particulate Matter From an Underground Railway Station

We have previously shown that underground railway particulate matter (PM) is rich in iron and other transition metals across coarse (PM(10–2.5)), fine (PM(2.5)), and quasi-ultrafine (PM(0.18)) fractions and is able to generate reactive oxygen species (ROS). However, there is little knowledge of whet...

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Autores principales: Loxham, Matthew, Morgan-Walsh, Rebecca J., Cooper, Matthew J., Blume, Cornelia, Swindle, Emily J., Dennison, Patrick W., Howarth, Peter H., Cassee, Flemming R., Teagle, Damon A. H., Palmer, Martin R., Davies, Donna E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4408962/
https://www.ncbi.nlm.nih.gov/pubmed/25673499
http://dx.doi.org/10.1093/toxsci/kfv034
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author Loxham, Matthew
Morgan-Walsh, Rebecca J.
Cooper, Matthew J.
Blume, Cornelia
Swindle, Emily J.
Dennison, Patrick W.
Howarth, Peter H.
Cassee, Flemming R.
Teagle, Damon A. H.
Palmer, Martin R.
Davies, Donna E.
author_facet Loxham, Matthew
Morgan-Walsh, Rebecca J.
Cooper, Matthew J.
Blume, Cornelia
Swindle, Emily J.
Dennison, Patrick W.
Howarth, Peter H.
Cassee, Flemming R.
Teagle, Damon A. H.
Palmer, Martin R.
Davies, Donna E.
author_sort Loxham, Matthew
collection PubMed
description We have previously shown that underground railway particulate matter (PM) is rich in iron and other transition metals across coarse (PM(10–2.5)), fine (PM(2.5)), and quasi-ultrafine (PM(0.18)) fractions and is able to generate reactive oxygen species (ROS). However, there is little knowledge of whether the metal-rich nature of such particles exerts toxic effects in mucus-covered airway epithelial cell cultures or whether there is an increased risk posed by the ultrafine fraction. Monolayer and mucociliary air-liquid interface (ALI) cultures of primary bronchial epithelial cells (PBECs) were exposed to size-fractionated underground railway PM (1.1–11.1 µg/cm(2)) and release of lactate dehydrogenase and IL-8 was assayed. ROS generation was measured, and the mechanism of generation studied using desferrioxamine (DFX) and N-acetylcysteine (NAC). Expression of heme oxygenase-1 (HO-1) was determined by RT-qPCR. Particle uptake was studied by transmission electron microscopy. Underground PM increased IL-8 release from PBECs, but this was diminished in mucus-secreting ALI cultures. Fine and ultrafine PM generated a greater level of ROS than coarse PM. ROS generation by ultrafine PM was ameliorated by DFX and NAC, suggesting an iron-dependent mechanism. Despite the presence of mucus, ALI cultures displayed increased HO-1 expression. Intracellular PM was observed within vesicles, mitochondria, and free in the cytosol. The results indicate that, although the mucous layer appears to confer some protection against underground PM, ALI PBECs nonetheless detect PM and mount an antioxidant response. The combination of increased ROS-generating ability of the metal-rich ultrafine fraction and ability of PM to penetrate the mucous layer merits further research.
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spelling pubmed-44089622015-06-26 The Effects on Bronchial Epithelial Mucociliary Cultures of Coarse, Fine, and Ultrafine Particulate Matter From an Underground Railway Station Loxham, Matthew Morgan-Walsh, Rebecca J. Cooper, Matthew J. Blume, Cornelia Swindle, Emily J. Dennison, Patrick W. Howarth, Peter H. Cassee, Flemming R. Teagle, Damon A. H. Palmer, Martin R. Davies, Donna E. Toxicol Sci Railway Particular Matter in Bronchial Cultures We have previously shown that underground railway particulate matter (PM) is rich in iron and other transition metals across coarse (PM(10–2.5)), fine (PM(2.5)), and quasi-ultrafine (PM(0.18)) fractions and is able to generate reactive oxygen species (ROS). However, there is little knowledge of whether the metal-rich nature of such particles exerts toxic effects in mucus-covered airway epithelial cell cultures or whether there is an increased risk posed by the ultrafine fraction. Monolayer and mucociliary air-liquid interface (ALI) cultures of primary bronchial epithelial cells (PBECs) were exposed to size-fractionated underground railway PM (1.1–11.1 µg/cm(2)) and release of lactate dehydrogenase and IL-8 was assayed. ROS generation was measured, and the mechanism of generation studied using desferrioxamine (DFX) and N-acetylcysteine (NAC). Expression of heme oxygenase-1 (HO-1) was determined by RT-qPCR. Particle uptake was studied by transmission electron microscopy. Underground PM increased IL-8 release from PBECs, but this was diminished in mucus-secreting ALI cultures. Fine and ultrafine PM generated a greater level of ROS than coarse PM. ROS generation by ultrafine PM was ameliorated by DFX and NAC, suggesting an iron-dependent mechanism. Despite the presence of mucus, ALI cultures displayed increased HO-1 expression. Intracellular PM was observed within vesicles, mitochondria, and free in the cytosol. The results indicate that, although the mucous layer appears to confer some protection against underground PM, ALI PBECs nonetheless detect PM and mount an antioxidant response. The combination of increased ROS-generating ability of the metal-rich ultrafine fraction and ability of PM to penetrate the mucous layer merits further research. Oxford University Press 2015-05 2015-02-10 /pmc/articles/PMC4408962/ /pubmed/25673499 http://dx.doi.org/10.1093/toxsci/kfv034 Text en © The Author 2015. Published by Oxford University Press on behalf of the Society of Toxicology. http://creativecommons.org/licenses/by/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Railway Particular Matter in Bronchial Cultures
Loxham, Matthew
Morgan-Walsh, Rebecca J.
Cooper, Matthew J.
Blume, Cornelia
Swindle, Emily J.
Dennison, Patrick W.
Howarth, Peter H.
Cassee, Flemming R.
Teagle, Damon A. H.
Palmer, Martin R.
Davies, Donna E.
The Effects on Bronchial Epithelial Mucociliary Cultures of Coarse, Fine, and Ultrafine Particulate Matter From an Underground Railway Station
title The Effects on Bronchial Epithelial Mucociliary Cultures of Coarse, Fine, and Ultrafine Particulate Matter From an Underground Railway Station
title_full The Effects on Bronchial Epithelial Mucociliary Cultures of Coarse, Fine, and Ultrafine Particulate Matter From an Underground Railway Station
title_fullStr The Effects on Bronchial Epithelial Mucociliary Cultures of Coarse, Fine, and Ultrafine Particulate Matter From an Underground Railway Station
title_full_unstemmed The Effects on Bronchial Epithelial Mucociliary Cultures of Coarse, Fine, and Ultrafine Particulate Matter From an Underground Railway Station
title_short The Effects on Bronchial Epithelial Mucociliary Cultures of Coarse, Fine, and Ultrafine Particulate Matter From an Underground Railway Station
title_sort effects on bronchial epithelial mucociliary cultures of coarse, fine, and ultrafine particulate matter from an underground railway station
topic Railway Particular Matter in Bronchial Cultures
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4408962/
https://www.ncbi.nlm.nih.gov/pubmed/25673499
http://dx.doi.org/10.1093/toxsci/kfv034
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