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Chemosphere


Title:"Traffic-related air pollution. A pilot exposure assessment in Beirut, Lebanon"
Author(s):Borgie M; Garat A; Cazier F; Delbende A; Allorge D; Ledoux F; Courcot D; Shirali P; Dagher Z;
Address:"Unit of Environmental Chemistry and Interactions on Living, EA 4492, University of Littoral-Cote d'Opale (ULCO), Dunkerque, France; University of Lille North of France, Lille, France; Bioactive Molecules Research Group, Doctoral School of Sciences and Technologies, Lebanese University, Lebanon"
Journal Title:Chemosphere
Year:2014
Volume:20131101
Issue:
Page Number:122 - 128
DOI: 10.1016/j.chemosphere.2013.09.034
ISSN/ISBN:1879-1298 (Electronic) 0045-6535 (Linking)
Abstract:"Traffic-related volatile organic compounds (VOCs) pollution has frequently been demonstrated to be a serious problem in the developing countries. Benzene and 1,3-butadiene (BD) have been classified as a human carcinogen based on evidence for an increased genotoxic and epigenotoxic effects in both occupational exposure assessment and in vivo/in vitro studies. We have undertaken a biomonitoring of 25 traffic policemen and 23 office policemen in Beirut, through personal air monitoring, assessed by diffusive samplers, as well as through the use of biomarkers of exposure to benzene and BD. Personal benzene, toluene, ethylbenzene, and xylene (BTEX) exposure were quantified by GC-MS/MS, urinary trans, trans-muconic acid (t,t-MA) by HPLC/UV, S-phenyl mercapturic acid (S-PMA), monohydroxy-butenyl mercapturic acid (MHBMA) and dihydroxybutyl mercapturic acid (DHBMA) by ultra-performance liquid chromatography-electrospray tandem mass spectrometry (UPLC/ESI(-)-MS/MS) in MRM (Multiple Reaction Monitoring) mode. We found that individual exposure to benzene in the traffic policemen was higher than that measured in traffic policemen in Prague, in Bologna, in Ioannina and in Bangkok. t,t-MA levels could distinguish between office and traffic policemen. However, median MHBMA levels in traffic policemen were slightly elevated, though not significantly higher than in office policemen. Alternatively, DHBMA concentrations could significantly distinguish between office and traffic policemen and showed a better correlation with personal total BTEX exposure. DHMBA, measured in the post-shift urine samples, correlated with both pre-shift MHMBA and pre-shift DHMBA. Moreover, there was not a marked effect of smoking habits on DHBMA. Taken together, these findings suggested that DHBMA is more suitable than MHBMA as biomarker of exposure to BD in humans. Traffic policemen, who are exposed to benzene and BD at the roadside in central Beirut, are potentially at a higher risk for development of diseases such as cancer than office policemen"
Keywords:"Acetylcysteine/urine Adult Air Pollutants, Occupational/*analysis Air Pollution/*statistics & numerical data Biomarkers/urine DNA Damage Environmental Monitoring/methods Humans Lebanon Male Occupational Exposure/analysis/*statistics & numerical data Polic;"
Notes:"MedlineBorgie, Mireille Garat, Anne Cazier, Fabrice Delbende, Agnes Allorge, Delphine Ledoux, Frederic Courcot, Dominique Shirali, Pirouz Dagher, Zeina eng Research Support, Non-U.S. Gov't England 2013/11/05 Chemosphere. 2014 Feb; 96:122-8. doi: 10.1016/j.chemosphere.2013.09.034. Epub 2013 Nov 1"

 
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