Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
6316507 | Environmental Pollution | 2015 | 11 Pages |
Abstract
This study quantified the temporal variability of concentration of carcinogenic polycyclic aromatic hydrocarbons (c-PAHs), genotoxicity, oxidative DNA damage and dioxin-like activity of the extractable organic matter (EOM) of atmospheric aerosol particles of aerodynamic diameter (dae, μm) coarse (1 < dae < 10), upper- (0.5 < dae < 1) and lower-accumulation (0.17 < dae < 0.5) and ultrafine (<0.17) fractions. The upper accumulation fraction formed most of the aerosol mass for 22 of the 26 study days and contained â¼44% of total c-PAHs, while the ultrafine fraction contained only â¼11%. DNA adduct levels suggested a crucial contribution of c-PAHs bound to the upper accumulation fraction. The dioxin-like activity was also driven primarily by c-PAH concentrations. In contrast, oxidative DNA damage was not related to c-PAHs, as a negative correlation with c-PAHs was observed. These results suggest that genotoxicity and dioxin-like activity are the major toxic effects of organic compounds bound to size segregated aerosol, while oxidative DNA damage is not induced by EOM.
Keywords
BPDEDB[al]PCarcinogenic PAH8-Oxodeoxyguanosine7,12-DMBADRZCT DNAc-PAHs8-oxodGB[k]FB[b]FEOMTEQB[a]ADNA adductsPAHPM10DCM7,12-Dimethylbenz[a]anthraceneB[a]Pdibenzo[a,l]pyreneDMSOcalf-thymus DNAOxidative damageAir pollutionbenz[a]anthraceneBenzo[a]pyreneBenzo[b]fluorantheneBenzo[k]fluorantheneDaeDibenz[a,h]anthraceneDimethylsulfoxideparticulate matterWorld Health Organizationtoxic equivalency factorDioxin-like activityAerodynamic diameterExtractable organic matterdiagonal radioactive zonePolycyclic aromatic hydrocarbonscarcinogenic polycyclic aromatic hydrocarbonsCHRYhigh performance liquid chromatographyHPLCchryseneWHO
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Authors
Jan Topinka, Pavel Jr., Alena Milcová, Jana Schmuczerová, KateÅina PÄnÄÃková, Andrea Rossnerová, AntonÃn Ambrož, Jitka Å tolcpartová, Jan Bendl, Jan Hovorka, Miroslav Machala,