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Urinary biomarkers of exposure to jet fuel and polycyclic aromatic hydrocarbons.

机译:暴露于喷气燃料和多环芳烃的尿液生物标志物。

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Polycyclic aromatic hydrocarbons (PAHs) and jet propulsion fuel-8 (JP-8) are complex mixtures composed of several hundreds of different chemicals that pose health risks to thousands of workers worldwide. Naphthalene is an important constituent of both mixtures, and thus, can potentially serve as a surrogate for both types of exposures. Recent studies proposed urinary 1- and 2-naphthol as possible biomarkers of PAH exposures through inhalation, but the lower yields of analytical techniques limited their comparison to 1-pyrenol, the widely accepted biomarker. A method was developed to simultaneously measure urinary naphthols and 1-pyrenol. Levels of urinary naphthols were measured in samples obtained from workers exposed to different levels of PAHs (coke oven workers) and JP-8 (U.S. Air Force personnel) based on a priori exposure categories. Multivariate linear regression analyses were applied to evaluate the effects of environmental and work-related factors upon naphthol levels. Results confirm the expectations that urinary naphthols are predictive of naphthalene exposures originating from different mixtures, and that coke oven emissions are much greater sources of naphthalene exposure compared to JP-8. However, smokers and nonsmokers appear to have different patterns of naphthalene metabolism, suggesting that cigarette smoke induces two or more metabolic pathways.
机译:多环芳烃(PAH)和喷气推进燃料8(JP-8)是由数百种不同化学物质组成的复杂混合物,对全球成千上万的工人构成健康风险。萘是这两种混合物的重要成分,因此可以潜在地充当两种暴露的替代物。最近的研究提出,通过吸入可能将尿中1-萘酚和2-萘酚作为PAH暴露的可能生物标志物,但是分析技术的较低收率限制了它们与被广泛接受的生物标志物1-苯酚的比较。开发了一种同时测量尿萘酚和1-苯酚的方法。根据先验暴露类别,从暴露于不同PAHs水平的工人(焦炉工人)和JP-8(美国空军人员)获得的样品中测量了尿中萘的水平。应用多元线性回归分析来评估环境和工作相关因素对萘酚水平的影响。结果证实了人们的期望,即尿萘酚可以预测源自不同混合物的萘暴露,并且与JP-8相比,焦炉排放物是萘暴露的重要来源。但是,吸烟者和不吸烟者似乎具有不同的萘代谢方式,这表明香烟烟雾会诱导两种或多种代谢途径。

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