Occupational Exposure to Polycyclic Aromatic Hydrocarbons and Elevated Cancer Incidence in Firefighters

Профессиональное воздействие полициклических ароматических углеводородов и повышенная заболеваемость раком у пожарных
Anna A. Stec, Kathryn Dickens, Mariëlle Salden, Fiona Hewitt, Damian P. Watts, Philip E. Houldsworth, Francis L. Martin
2018-01-31

cancer riskfirefightersoccupational PAH exposurepolycyclic aromatic hydrocarbonsskin absorption
Cancer incidence appears to be higher amongst firefighters compared to the general population. Given that many cancers have an environmental component, their occupational exposure to products of carbon combustion such as polycyclic aromatic hydrocarbons (PAHs) is of concern. This is the first UK study identifying firefighters exposure to PAH carcinogens. Wipe samples were collected from skin (jaw, neck, hands), personal protective equipment of firefighters, and work environment (offices, fire stations and engines) in two UK Fire and Rescue Service Stations. Levels of 16 US Environmental Protection Agency (EPA) PAHs were quantified together with more potent carcinogens: 7,12-dimethylbenzo[a]anthracene, and 3-methylcholanthrene (3-MCA) (12 months post-initial testing). Cancer slope factors, used to estimate cancer risk, indicate a markedly elevated risk. PAH carcinogens including benzo[a]pyrene (B[a]P), 3-MCA, and 7,12-dimethylbenz[a]anthracene PAHs were determined on body surfaces (e.g., hands, throat), on PPE including helmets and clothing, and on work surfaces. The main exposure route would appear to be via skin absorption. These results suggest an urgent need to monitor exposures to firefighters in their occupational setting and conduct long-term follow-up regarding their health status.
1
Cancer slope-factor estimates indicated a markedly elevated potential cancer risk associated with firefighters’ PAH exposures.
2
Contamination was found on body surfaces including the hands and throat, as well as helmets, clothing, offices, fire stations, and fire engines.
3
PAH carcinogens, including benzo[a]pyrene, 3-methylcholanthrene, and 7,12-dimethylbenz[a]anthracene, were detected on firefighters’ skin, personal protective equipment, and workplace surfaces.
4
The findings suggest skin absorption is the principal exposure route and support urgent exposure monitoring and long-term firefighter health follow-up.
5
This study provides the first UK evidence identifying occupational exposure of firefighters to carcinogenic polycyclic aromatic hydrocarbons (PAHs).

Firefighters occupationally exposed to polycyclic aromatic hydrocarbon carcinogens

PAH contamination levels, exposure routes, and associated cancer risk

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Publication Date
2018-01-31
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Authors
Anna A. Stec
Kathryn Dickens
Mariëlle Salden
Fiona Hewitt
Damian P. Watts
Philip E. Houldsworth
Francis L. Martin
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