Cargando…

Ordinary Gasoline Emissions Induce a Toxic Response in Bronchial Cells Grown at Air-Liquid Interface

Gasoline engine emissions have been classified as possibly carcinogenic to humans and represent a significant health risk. In this study, we used MucilAir™, a three-dimensional (3D) model of the human airway, and BEAS-2B, cells originating from the human bronchial epithelium, grown at the air-liquid...

Descripción completa

Detalles Bibliográficos
Autores principales: Cervena, Tereza, Vojtisek-Lom, Michal, Vrbova, Kristyna, Ambroz, Antonin, Novakova, Zuzana, Elzeinova, Fatima, Sima, Michal, Beranek, Vit, Pechout, Martin, Macoun, David, Klema, Jiri, Rossnerova, Andrea, Ciganek, Miroslav, Topinka, Jan, Rossner, Pavel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7801947/
https://www.ncbi.nlm.nih.gov/pubmed/33374749
http://dx.doi.org/10.3390/ijms22010079
_version_ 1783635681184055296
author Cervena, Tereza
Vojtisek-Lom, Michal
Vrbova, Kristyna
Ambroz, Antonin
Novakova, Zuzana
Elzeinova, Fatima
Sima, Michal
Beranek, Vit
Pechout, Martin
Macoun, David
Klema, Jiri
Rossnerova, Andrea
Ciganek, Miroslav
Topinka, Jan
Rossner, Pavel
author_facet Cervena, Tereza
Vojtisek-Lom, Michal
Vrbova, Kristyna
Ambroz, Antonin
Novakova, Zuzana
Elzeinova, Fatima
Sima, Michal
Beranek, Vit
Pechout, Martin
Macoun, David
Klema, Jiri
Rossnerova, Andrea
Ciganek, Miroslav
Topinka, Jan
Rossner, Pavel
author_sort Cervena, Tereza
collection PubMed
description Gasoline engine emissions have been classified as possibly carcinogenic to humans and represent a significant health risk. In this study, we used MucilAir™, a three-dimensional (3D) model of the human airway, and BEAS-2B, cells originating from the human bronchial epithelium, grown at the air-liquid interface to assess the toxicity of ordinary gasoline exhaust produced by a direct injection spark ignition engine. The transepithelial electrical resistance (TEER), production of mucin, and lactate dehydrogenase (LDH) and adenylate kinase (AK) activities were analyzed after one day and five days of exposure. The induction of double-stranded DNA breaks was measured by the detection of histone H2AX phosphorylation. Next-generation sequencing was used to analyze the modulation of expression of the relevant 370 genes. The exposure to gasoline emissions affected the integrity, as well as LDH and AK leakage in the 3D model, particularly after longer exposure periods. Mucin production was mostly decreased with the exception of longer BEAS-2B treatment, for which a significant increase was detected. DNA damage was detected after five days of exposure in the 3D model, but not in BEAS-2B cells. The expression of CYP1A1 and GSTA3 was modulated in MucilAir™ tissues after 5 days of treatment. In BEAS-2B cells, the expression of 39 mRNAs was affected after short exposure, most of them were upregulated. The five days of exposure modulated the expression of 11 genes in this cell line. In conclusion, the ordinary gasoline emissions induced a toxic response in MucilAir™. In BEAS-2B cells, the biological response was less pronounced, mostly limited to gene expression changes.
format Online
Article
Text
id pubmed-7801947
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-78019472021-01-13 Ordinary Gasoline Emissions Induce a Toxic Response in Bronchial Cells Grown at Air-Liquid Interface Cervena, Tereza Vojtisek-Lom, Michal Vrbova, Kristyna Ambroz, Antonin Novakova, Zuzana Elzeinova, Fatima Sima, Michal Beranek, Vit Pechout, Martin Macoun, David Klema, Jiri Rossnerova, Andrea Ciganek, Miroslav Topinka, Jan Rossner, Pavel Int J Mol Sci Article Gasoline engine emissions have been classified as possibly carcinogenic to humans and represent a significant health risk. In this study, we used MucilAir™, a three-dimensional (3D) model of the human airway, and BEAS-2B, cells originating from the human bronchial epithelium, grown at the air-liquid interface to assess the toxicity of ordinary gasoline exhaust produced by a direct injection spark ignition engine. The transepithelial electrical resistance (TEER), production of mucin, and lactate dehydrogenase (LDH) and adenylate kinase (AK) activities were analyzed after one day and five days of exposure. The induction of double-stranded DNA breaks was measured by the detection of histone H2AX phosphorylation. Next-generation sequencing was used to analyze the modulation of expression of the relevant 370 genes. The exposure to gasoline emissions affected the integrity, as well as LDH and AK leakage in the 3D model, particularly after longer exposure periods. Mucin production was mostly decreased with the exception of longer BEAS-2B treatment, for which a significant increase was detected. DNA damage was detected after five days of exposure in the 3D model, but not in BEAS-2B cells. The expression of CYP1A1 and GSTA3 was modulated in MucilAir™ tissues after 5 days of treatment. In BEAS-2B cells, the expression of 39 mRNAs was affected after short exposure, most of them were upregulated. The five days of exposure modulated the expression of 11 genes in this cell line. In conclusion, the ordinary gasoline emissions induced a toxic response in MucilAir™. In BEAS-2B cells, the biological response was less pronounced, mostly limited to gene expression changes. MDPI 2020-12-23 /pmc/articles/PMC7801947/ /pubmed/33374749 http://dx.doi.org/10.3390/ijms22010079 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Cervena, Tereza
Vojtisek-Lom, Michal
Vrbova, Kristyna
Ambroz, Antonin
Novakova, Zuzana
Elzeinova, Fatima
Sima, Michal
Beranek, Vit
Pechout, Martin
Macoun, David
Klema, Jiri
Rossnerova, Andrea
Ciganek, Miroslav
Topinka, Jan
Rossner, Pavel
Ordinary Gasoline Emissions Induce a Toxic Response in Bronchial Cells Grown at Air-Liquid Interface
title Ordinary Gasoline Emissions Induce a Toxic Response in Bronchial Cells Grown at Air-Liquid Interface
title_full Ordinary Gasoline Emissions Induce a Toxic Response in Bronchial Cells Grown at Air-Liquid Interface
title_fullStr Ordinary Gasoline Emissions Induce a Toxic Response in Bronchial Cells Grown at Air-Liquid Interface
title_full_unstemmed Ordinary Gasoline Emissions Induce a Toxic Response in Bronchial Cells Grown at Air-Liquid Interface
title_short Ordinary Gasoline Emissions Induce a Toxic Response in Bronchial Cells Grown at Air-Liquid Interface
title_sort ordinary gasoline emissions induce a toxic response in bronchial cells grown at air-liquid interface
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7801947/
https://www.ncbi.nlm.nih.gov/pubmed/33374749
http://dx.doi.org/10.3390/ijms22010079
work_keys_str_mv AT cervenatereza ordinarygasolineemissionsinduceatoxicresponseinbronchialcellsgrownatairliquidinterface
AT vojtiseklommichal ordinarygasolineemissionsinduceatoxicresponseinbronchialcellsgrownatairliquidinterface
AT vrbovakristyna ordinarygasolineemissionsinduceatoxicresponseinbronchialcellsgrownatairliquidinterface
AT ambrozantonin ordinarygasolineemissionsinduceatoxicresponseinbronchialcellsgrownatairliquidinterface
AT novakovazuzana ordinarygasolineemissionsinduceatoxicresponseinbronchialcellsgrownatairliquidinterface
AT elzeinovafatima ordinarygasolineemissionsinduceatoxicresponseinbronchialcellsgrownatairliquidinterface
AT simamichal ordinarygasolineemissionsinduceatoxicresponseinbronchialcellsgrownatairliquidinterface
AT beranekvit ordinarygasolineemissionsinduceatoxicresponseinbronchialcellsgrownatairliquidinterface
AT pechoutmartin ordinarygasolineemissionsinduceatoxicresponseinbronchialcellsgrownatairliquidinterface
AT macoundavid ordinarygasolineemissionsinduceatoxicresponseinbronchialcellsgrownatairliquidinterface
AT klemajiri ordinarygasolineemissionsinduceatoxicresponseinbronchialcellsgrownatairliquidinterface
AT rossnerovaandrea ordinarygasolineemissionsinduceatoxicresponseinbronchialcellsgrownatairliquidinterface
AT ciganekmiroslav ordinarygasolineemissionsinduceatoxicresponseinbronchialcellsgrownatairliquidinterface
AT topinkajan ordinarygasolineemissionsinduceatoxicresponseinbronchialcellsgrownatairliquidinterface
AT rossnerpavel ordinarygasolineemissionsinduceatoxicresponseinbronchialcellsgrownatairliquidinterface