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Establishment of Repeated In Vitro Exposure System for Evaluating Pulmonary Toxicity of Representative Criteria Air Pollutants Using Advanced Bronchial Mucosa Models

There is mounting evidence that shows the association between chronic exposure to air pollutants (particulate matter and gaseous) and onset of various respiratory impairments. However, the corresponding toxicological mechanisms of mixed exposure are poorly understood. Therefore, in this study, we ai...

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Autores principales: Upadhyay, Swapna, Chakraborty, Ashesh, Thimraj, Tania A., Baldi, Marialuisa, Steneholm, Anna, Ganguly, Koustav, Gerde, Per, Ernstgård, Lena, Palmberg, Lena
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9228979/
https://www.ncbi.nlm.nih.gov/pubmed/35736886
http://dx.doi.org/10.3390/toxics10060277
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author Upadhyay, Swapna
Chakraborty, Ashesh
Thimraj, Tania A.
Baldi, Marialuisa
Steneholm, Anna
Ganguly, Koustav
Gerde, Per
Ernstgård, Lena
Palmberg, Lena
author_facet Upadhyay, Swapna
Chakraborty, Ashesh
Thimraj, Tania A.
Baldi, Marialuisa
Steneholm, Anna
Ganguly, Koustav
Gerde, Per
Ernstgård, Lena
Palmberg, Lena
author_sort Upadhyay, Swapna
collection PubMed
description There is mounting evidence that shows the association between chronic exposure to air pollutants (particulate matter and gaseous) and onset of various respiratory impairments. However, the corresponding toxicological mechanisms of mixed exposure are poorly understood. Therefore, in this study, we aimed to establish a repeated exposure setting for evaluating the pulmonary toxicological effects of diesel exhaust particles (DEP), nitrogen dioxide (NO(2)), and sulfur dioxide (SO2) as representative criterial air pollutants. Single, combined (DEP with NO(2) and SO(2)), and repeated exposures were performed using physiologically relevant human bronchial mucosa models developed at the air–liquid interface (bro-ALI). The bro-ALI models were generated using human primary bronchial epithelial cells (3–4 donors; 2 replicates per donor). The exposure regime included the following: 1. DEP (12.5 µg/cm(2); 3 min/day, 3 days); 2. low gaseous (NO(2): 0.1 ppm + SO(2): 0.2 ppm); (30 min/day, 3 days); 3. high gaseous (NO(2): 0.2 ppm + SO(2): 0.4 ppm) (30 min/day, 3 days); and 4. single combined (DEP + low gaseous for 1 day). The markers for pro-inflammatory (IL8, IL6, NFKB, TNF), oxidative stress (HMOX1, GSTA1, SOD3,) and tissue injury/repair (MMP9, TIMP1) responses were assessed at transcriptional and/ or secreted protein levels following exposure. The corresponding sham-exposed samples under identical conditions served as the control. A non-parametric statistical analysis was performed and p < 0.05 was considered as significant. Repeated exposure to DEP and single combined (DEP + low gaseous) exposure showed significant alteration in the pro-inflammatory, oxidative stress and tissue injury responses compared to repeated exposures to gaseous air pollutants. The study demonstrates that it is feasible to predict the long-term effects of air pollutants using the above explained exposure system.
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spelling pubmed-92289792022-06-25 Establishment of Repeated In Vitro Exposure System for Evaluating Pulmonary Toxicity of Representative Criteria Air Pollutants Using Advanced Bronchial Mucosa Models Upadhyay, Swapna Chakraborty, Ashesh Thimraj, Tania A. Baldi, Marialuisa Steneholm, Anna Ganguly, Koustav Gerde, Per Ernstgård, Lena Palmberg, Lena Toxics Article There is mounting evidence that shows the association between chronic exposure to air pollutants (particulate matter and gaseous) and onset of various respiratory impairments. However, the corresponding toxicological mechanisms of mixed exposure are poorly understood. Therefore, in this study, we aimed to establish a repeated exposure setting for evaluating the pulmonary toxicological effects of diesel exhaust particles (DEP), nitrogen dioxide (NO(2)), and sulfur dioxide (SO2) as representative criterial air pollutants. Single, combined (DEP with NO(2) and SO(2)), and repeated exposures were performed using physiologically relevant human bronchial mucosa models developed at the air–liquid interface (bro-ALI). The bro-ALI models were generated using human primary bronchial epithelial cells (3–4 donors; 2 replicates per donor). The exposure regime included the following: 1. DEP (12.5 µg/cm(2); 3 min/day, 3 days); 2. low gaseous (NO(2): 0.1 ppm + SO(2): 0.2 ppm); (30 min/day, 3 days); 3. high gaseous (NO(2): 0.2 ppm + SO(2): 0.4 ppm) (30 min/day, 3 days); and 4. single combined (DEP + low gaseous for 1 day). The markers for pro-inflammatory (IL8, IL6, NFKB, TNF), oxidative stress (HMOX1, GSTA1, SOD3,) and tissue injury/repair (MMP9, TIMP1) responses were assessed at transcriptional and/ or secreted protein levels following exposure. The corresponding sham-exposed samples under identical conditions served as the control. A non-parametric statistical analysis was performed and p < 0.05 was considered as significant. Repeated exposure to DEP and single combined (DEP + low gaseous) exposure showed significant alteration in the pro-inflammatory, oxidative stress and tissue injury responses compared to repeated exposures to gaseous air pollutants. The study demonstrates that it is feasible to predict the long-term effects of air pollutants using the above explained exposure system. MDPI 2022-05-24 /pmc/articles/PMC9228979/ /pubmed/35736886 http://dx.doi.org/10.3390/toxics10060277 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Upadhyay, Swapna
Chakraborty, Ashesh
Thimraj, Tania A.
Baldi, Marialuisa
Steneholm, Anna
Ganguly, Koustav
Gerde, Per
Ernstgård, Lena
Palmberg, Lena
Establishment of Repeated In Vitro Exposure System for Evaluating Pulmonary Toxicity of Representative Criteria Air Pollutants Using Advanced Bronchial Mucosa Models
title Establishment of Repeated In Vitro Exposure System for Evaluating Pulmonary Toxicity of Representative Criteria Air Pollutants Using Advanced Bronchial Mucosa Models
title_full Establishment of Repeated In Vitro Exposure System for Evaluating Pulmonary Toxicity of Representative Criteria Air Pollutants Using Advanced Bronchial Mucosa Models
title_fullStr Establishment of Repeated In Vitro Exposure System for Evaluating Pulmonary Toxicity of Representative Criteria Air Pollutants Using Advanced Bronchial Mucosa Models
title_full_unstemmed Establishment of Repeated In Vitro Exposure System for Evaluating Pulmonary Toxicity of Representative Criteria Air Pollutants Using Advanced Bronchial Mucosa Models
title_short Establishment of Repeated In Vitro Exposure System for Evaluating Pulmonary Toxicity of Representative Criteria Air Pollutants Using Advanced Bronchial Mucosa Models
title_sort establishment of repeated in vitro exposure system for evaluating pulmonary toxicity of representative criteria air pollutants using advanced bronchial mucosa models
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9228979/
https://www.ncbi.nlm.nih.gov/pubmed/35736886
http://dx.doi.org/10.3390/toxics10060277
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