Literature DB >> 10385148

Seasonal effect on airborne pyrene, urinary 1-hydroxypyrene, and benzo(a)pyrene diol epoxide-hemoglobin adducts in the general population.

R Pastorelli1, M Guanci, J Restano, A Berri, G Micoli, C Minoia, D Alcini, P Carrer, E Negri, C La Vecchia, R Fanelli, L Airoldi.   

Abstract

Exposure to airborne polycyclic aromatic hydrocarbons (PAHs) in 65 employees (40 sampled both in summer and winter, 15 sampled in summer only, and 10 sampled in winter only) with no occupational exposure to PAHs was assessed by measuring: personal exposure to pyrene, urinary excretion of 1-hydroxypyrene (1-OHP), and benzo(a)pyrene diol epoxide adducts to hemoglobin (BPDE-Hb). Overall, office employees were exposed to significantly higher levels of pyrene in winter (4.54 +/- 2.35 ng/m3, mean +/- SD) than in summer (1.67 +/- 1.92 ng/m3, mean +/- SD; P < 0.001), but no such seasonal variability was observed in 1-OHP excretion. Tobacco smoking was the major determinant of 1-OHP excretion. BPDE-Hb adducts were measured by gas chromatography-mass spectrometry as benzo(a)pyrene tetrols (BPT) released from adducted hemoglobin. In the 65 employees analyzed, mean BPT levels +/- SD were higher in winter (0.14 +/- 0.38 fmol/mg Hb) than summer (0.031 +/- 0.022 fmol/mg Hb). This difference was not statistically significant, probably because of the small proportion of subjects with detectable adducts (11% in summer and 16% in winter). BPDE-Hb adducts were not significantly associated with sex, age, diet, smoking habits, or with pyrene levels and 1-OHP excretion. This is the first report providing reference BPDE-Hb adduct values for the general population not occupationally exposed to environmental PAHs and shows a tendency to seasonal variability, with higher BPT levels in winter when environmental PAHs are also high.

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Year:  1999        PMID: 10385148

Source DB:  PubMed          Journal:  Cancer Epidemiol Biomarkers Prev        ISSN: 1055-9965            Impact factor:   4.254


  6 in total

1.  Environmental and biological monitoring of exposures to PAHs and ETS in the general population.

Authors:  Noel J Aquilina; Juana Mari Delgado-Saborit; Claire Meddings; Stephen Baker; Roy M Harrison; Peyton Jacob; Margaret Wilson; Lisa Yu; Minjiang Duan; Neal L Benowitz
Journal:  Environ Int       Date:  2010-06-29       Impact factor: 9.621

2.  Levels of 1-hydroxypyrene in urine of people living in an oil producing region of the Andean Amazon (Ecuador and Peru).

Authors:  Jena Webb; Oliver T Coomes; Donna Mergler; Nancy A Ross
Journal:  Int Arch Occup Environ Health       Date:  2017-09-22       Impact factor: 3.015

3.  Determination of tobacco specific hemoglobin adducts in smoking mothers and new born babies by mass spectrometry.

Authors:  Steven R Myers; Md Yeakub Ali
Journal:  Biomark Insights       Date:  2007-08-06

Review 4.  Biomarkers of exposure to polycyclic aromatic hydrocarbons from environmental air pollution.

Authors:  G Castaño-Vinyals; A D'Errico; N Malats; M Kogevinas
Journal:  Occup Environ Med       Date:  2004-04       Impact factor: 4.402

Review 5.  Molecular epidemiology studies on occupational and environmental exposure to mutagens and carcinogens, 1997-1999.

Authors:  R J Srám; B Binková
Journal:  Environ Health Perspect       Date:  2000-03       Impact factor: 9.031

6.  Predictors of personal polycyclic aromatic hydrocarbon exposures among pregnant minority women in New York City.

Authors:  Cathryn C Tonne; Robin M Whyatt; David E Camann; Frederica P Perera; Patrick L Kinney
Journal:  Environ Health Perspect       Date:  2004-05       Impact factor: 9.031

  6 in total

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