DNA damage and genomic instability among workers formerly and currently exposed to asbestos
OBJECTIVES: Despite an asbestos ban in the European Union, exposure to asbestos still represents an occupational risk. Biomarkers of DNA damage and genomic instability in groups exposed to asbestos may contribute to the identification of subgroups/subjects at higher risk. METHODS: A cross-sectional...
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Nordic Association of Occupational Safety and Health (NOROSH)
2018-07-01
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doaj-945f350c427d4dcdb2331f0a0df83ccd2021-04-21T06:57:13ZengNordic Association of Occupational Safety and Health (NOROSH)Scandinavian Journal of Work, Environment & Health0355-31401795-990X2018-07-0144442343110.5271/sjweh.37213721DNA damage and genomic instability among workers formerly and currently exposed to asbestosMirta MilićMonica NeriMarcello CeppiMarco BruzzoneArmelle MunniaDonatella UgoliniAlfonso CristaudoAlessandra BonottiMarco E PelusoStefano Bonassi0Department of Human Sciences and Quality of Life Promotion, San Raffaele University, Rome, Italy.OBJECTIVES: Despite an asbestos ban in the European Union, exposure to asbestos still represents an occupational risk. Biomarkers of DNA damage and genomic instability in groups exposed to asbestos may contribute to the identification of subgroups/subjects at higher risk. METHODS: A cross-sectional study was conducted on 468 male individuals (80 working in occupational settings with potential exposure to asbestos fibers, 202 retired workers with past exposure, and 186 non-exposed controls) to compare genomic instability, cell proliferation and differentiation level using the non-invasive micronucleus buccal cytome assay. Data on demographic variables, lifestyle, and occupational history were collected with a standardized questionnaire. Micronuclei (MN) and other biomarkers of DNA damage and genomic instability were scored in a minimum of 2000/1000 cells per individual, respectively. RESULTS: Univariate and multivariate analysis showed opposite associations of MN frequency with current and former exposure. Compared to unexposed controls, workers with current potential exposure to asbestos had 55% lower MN frequency [95% confidence interval (CI) 71–29%, P<0.001] while those with past exposure had 34% higher MN frequency (95% CI 1–77%, P<0.001). The frequency of cells with condensed chromatin and binucleated cells was elevated among formerly exposed workers. The multivariate analysis did not reveal any actual confounders, although lower MN frequency was observed among subjects eating fresh fruit or vegetables every day or taking vitamin supplements. CONCLUSIONS: Active workers with potential exposure to asbestos fibers did not show increased genomic damage. On the contrary, workers exposed in the past experienced a persistently elevated genomic instability, which may be used for risk assessment at subgroup or individual level. https://www.sjweh.fi/show_abstract.php?abstract_id=3721 occupational exposureasbestosdna damagebiomarkerdnagenomic instabilitymutagenicity testmicronucleus cytome assaybuccal mucosa |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Mirta Milić Monica Neri Marcello Ceppi Marco Bruzzone Armelle Munnia Donatella Ugolini Alfonso Cristaudo Alessandra Bonotti Marco E Peluso Stefano Bonassi |
spellingShingle |
Mirta Milić Monica Neri Marcello Ceppi Marco Bruzzone Armelle Munnia Donatella Ugolini Alfonso Cristaudo Alessandra Bonotti Marco E Peluso Stefano Bonassi DNA damage and genomic instability among workers formerly and currently exposed to asbestos Scandinavian Journal of Work, Environment & Health occupational exposure asbestos dna damage biomarker dna genomic instability mutagenicity test micronucleus cytome assay buccal mucosa |
author_facet |
Mirta Milić Monica Neri Marcello Ceppi Marco Bruzzone Armelle Munnia Donatella Ugolini Alfonso Cristaudo Alessandra Bonotti Marco E Peluso Stefano Bonassi |
author_sort |
Mirta Milić |
title |
DNA damage and genomic instability among workers formerly and currently exposed to asbestos |
title_short |
DNA damage and genomic instability among workers formerly and currently exposed to asbestos |
title_full |
DNA damage and genomic instability among workers formerly and currently exposed to asbestos |
title_fullStr |
DNA damage and genomic instability among workers formerly and currently exposed to asbestos |
title_full_unstemmed |
DNA damage and genomic instability among workers formerly and currently exposed to asbestos |
title_sort |
dna damage and genomic instability among workers formerly and currently exposed to asbestos |
publisher |
Nordic Association of Occupational Safety and Health (NOROSH) |
series |
Scandinavian Journal of Work, Environment & Health |
issn |
0355-3140 1795-990X |
publishDate |
2018-07-01 |
description |
OBJECTIVES: Despite an asbestos ban in the European Union, exposure to asbestos still represents an occupational risk. Biomarkers of DNA damage and genomic instability in groups exposed to asbestos may contribute to the identification of subgroups/subjects at higher risk. METHODS: A cross-sectional study was conducted on 468 male individuals (80 working in occupational settings with potential exposure to asbestos fibers, 202 retired workers with past exposure, and 186 non-exposed controls) to compare genomic instability, cell proliferation and differentiation level using the non-invasive micronucleus buccal cytome assay. Data on demographic variables, lifestyle, and occupational history were collected with a standardized questionnaire. Micronuclei (MN) and other biomarkers of DNA damage and genomic instability were scored in a minimum of 2000/1000 cells per individual, respectively. RESULTS: Univariate and multivariate analysis showed opposite associations of MN frequency with current and former exposure. Compared to unexposed controls, workers with current potential exposure to asbestos had 55% lower MN frequency [95% confidence interval (CI) 71–29%, P<0.001] while those with past exposure had 34% higher MN frequency (95% CI 1–77%, P<0.001). The frequency of cells with condensed chromatin and binucleated cells was elevated among formerly exposed workers. The multivariate analysis did not reveal any actual confounders, although lower MN frequency was observed among subjects eating fresh fruit or vegetables every day or taking vitamin supplements. CONCLUSIONS: Active workers with potential exposure to asbestos fibers did not show increased genomic damage. On the contrary, workers exposed in the past experienced a persistently elevated genomic instability, which may be used for risk assessment at subgroup or individual level. |
topic |
occupational exposure asbestos dna damage biomarker dna genomic instability mutagenicity test micronucleus cytome assay buccal mucosa |
url |
https://www.sjweh.fi/show_abstract.php?abstract_id=3721
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