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A panel study of occupational exposure to fine particulate matter and changes in DNA methylation over a single workday and years worked in boilermaker welders

BACKGROUND: Exposure to pollutants including metals and particulate air pollution can alter DNA methylation. Yet little is known about intra-individual changes in DNA methylation over time in relationship to environmental exposures. Therefore, we evaluated the effects of acute- and chronic metal-ric...

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Autores principales: Kile, Molly L, Fang, Shona, Baccarelli, Andrea A, Tarantini, Letizia, Cavallari, Jennifer, Christiani, David C
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3700827/
https://www.ncbi.nlm.nih.gov/pubmed/23758843
http://dx.doi.org/10.1186/1476-069X-12-47
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author Kile, Molly L
Fang, Shona
Baccarelli, Andrea A
Tarantini, Letizia
Cavallari, Jennifer
Christiani, David C
author_facet Kile, Molly L
Fang, Shona
Baccarelli, Andrea A
Tarantini, Letizia
Cavallari, Jennifer
Christiani, David C
author_sort Kile, Molly L
collection PubMed
description BACKGROUND: Exposure to pollutants including metals and particulate air pollution can alter DNA methylation. Yet little is known about intra-individual changes in DNA methylation over time in relationship to environmental exposures. Therefore, we evaluated the effects of acute- and chronic metal-rich PM(2.5) exposures on DNA methylation. METHODS: Thirty-eight male boilermaker welders participated in a panel study for a total of 54 person days. Whole blood was collected prior to any welding activities (pre-shift) and immediately after the exposure period (post-shift). The percentage of methylated cytosines (%mC) in LINE-1, Alu, and inducible nitric oxide synthase gene (iNOS) were quantified using pyrosequencing. Personal PM(2.5) (particulate matter with an aerodynamic diameter ≤ 2.5 μm) was measured over the work-shift. A questionnaire assessed job history and years worked as a boilermaker. Linear mixed models with repeated measures evaluated associations between DNA methylation, PM(2.5) concentration (acute exposure), and years worked as a boilermaker (chronic exposure). RESULTS: PM(2.5) exposure was associated with increased methylation in the promoter region of the iNOS gene (β = 0.25, SE: 0.11, p-value = 0.04). Additionally, the number of years worked as a boilermaker was associated with increased iNOS methylation (β = 0.03, SE: 0.01, p-value = 0.03). No associations were observed for Alu or LINE-1. CONCLUSIONS: Acute and chronic exposure to PM(2.5) generated from welding activities was associated with a modest change in DNA methylation of the iNOS gene. Future studies are needed to confirm this association and determine if the observed small increase in iNOS methylation are associated with changes in NO production or any adverse health effect.
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spelling pubmed-37008272013-07-04 A panel study of occupational exposure to fine particulate matter and changes in DNA methylation over a single workday and years worked in boilermaker welders Kile, Molly L Fang, Shona Baccarelli, Andrea A Tarantini, Letizia Cavallari, Jennifer Christiani, David C Environ Health Research BACKGROUND: Exposure to pollutants including metals and particulate air pollution can alter DNA methylation. Yet little is known about intra-individual changes in DNA methylation over time in relationship to environmental exposures. Therefore, we evaluated the effects of acute- and chronic metal-rich PM(2.5) exposures on DNA methylation. METHODS: Thirty-eight male boilermaker welders participated in a panel study for a total of 54 person days. Whole blood was collected prior to any welding activities (pre-shift) and immediately after the exposure period (post-shift). The percentage of methylated cytosines (%mC) in LINE-1, Alu, and inducible nitric oxide synthase gene (iNOS) were quantified using pyrosequencing. Personal PM(2.5) (particulate matter with an aerodynamic diameter ≤ 2.5 μm) was measured over the work-shift. A questionnaire assessed job history and years worked as a boilermaker. Linear mixed models with repeated measures evaluated associations between DNA methylation, PM(2.5) concentration (acute exposure), and years worked as a boilermaker (chronic exposure). RESULTS: PM(2.5) exposure was associated with increased methylation in the promoter region of the iNOS gene (β = 0.25, SE: 0.11, p-value = 0.04). Additionally, the number of years worked as a boilermaker was associated with increased iNOS methylation (β = 0.03, SE: 0.01, p-value = 0.03). No associations were observed for Alu or LINE-1. CONCLUSIONS: Acute and chronic exposure to PM(2.5) generated from welding activities was associated with a modest change in DNA methylation of the iNOS gene. Future studies are needed to confirm this association and determine if the observed small increase in iNOS methylation are associated with changes in NO production or any adverse health effect. BioMed Central 2013-06-11 /pmc/articles/PMC3700827/ /pubmed/23758843 http://dx.doi.org/10.1186/1476-069X-12-47 Text en Copyright © 2013 Kile et al.; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research
Kile, Molly L
Fang, Shona
Baccarelli, Andrea A
Tarantini, Letizia
Cavallari, Jennifer
Christiani, David C
A panel study of occupational exposure to fine particulate matter and changes in DNA methylation over a single workday and years worked in boilermaker welders
title A panel study of occupational exposure to fine particulate matter and changes in DNA methylation over a single workday and years worked in boilermaker welders
title_full A panel study of occupational exposure to fine particulate matter and changes in DNA methylation over a single workday and years worked in boilermaker welders
title_fullStr A panel study of occupational exposure to fine particulate matter and changes in DNA methylation over a single workday and years worked in boilermaker welders
title_full_unstemmed A panel study of occupational exposure to fine particulate matter and changes in DNA methylation over a single workday and years worked in boilermaker welders
title_short A panel study of occupational exposure to fine particulate matter and changes in DNA methylation over a single workday and years worked in boilermaker welders
title_sort panel study of occupational exposure to fine particulate matter and changes in dna methylation over a single workday and years worked in boilermaker welders
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3700827/
https://www.ncbi.nlm.nih.gov/pubmed/23758843
http://dx.doi.org/10.1186/1476-069X-12-47
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