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首页> 外文期刊>Journal of Hazardous Materials >Firefighters exposure to fire emissions: Impact on levels of biomarkers of exposure to polycyclic aromatic hydrocarbons and genotoxic/oxidative- effects
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Firefighters exposure to fire emissions: Impact on levels of biomarkers of exposure to polycyclic aromatic hydrocarbons and genotoxic/oxidative- effects

机译:消防员暴露于火中的排放物:对暴露于多环芳烃的生物标志物水平和遗传毒性/氧化作用的影响

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摘要

Firefighters represent one of the riskiest occupations, yet due to the logistic reasons, the respective exposure assessment is one of the most challenging. Thus, this work assessed the impact of firefighting activities on levels of urinary monohydroxyl-polycyclic aromatic hydrocarbons (OHPAHs; 1-hydroxynaphthalene, 1-hydroxyacenaphthene, 2-hydroxyfluorene, 1-hydroxyphenanthrene, 1-hydroxypyrene, 3-hydroxybenzo(a)pyrene) and genotoxic/oxidative-effect biomarkers (basal DNA and oxidative DNA damage) of firefighters from eight fire-houses. Cardiac frequency, blood pressure and arterial oxygen saturation were also monitored. OHPAHs were determined by liquid-chromatography with fluorescence detection, while genotoxic/oxidative-effect biomarkers were assessed by the comet assay. Concentrations of total OHPAHs were up to 340% higher (p <= 0.05) in (nonsmoking and smoking) exposed workers than in control subjects (non-smoking and non-exposed to combat activities); the highest increments were observed for 1-hydroxynaphthalene and 1-hydroxyacenaphthene (82-88% of Sigma OHPAHs), and for 2-hydroxyfluorene (5-15%). Levels of biomarker for oxidative stress were increased in non-smoking exposed workers than in control group (316%; p <= 0.001); inconclusive results were found for DNA damage. Positive correlations were found between the cardiac frequency, Sigma OHPAHs and the oxidative DNA damage of non-smoking (non-exposed and exposed) firefighters. Evidences were raised regarding the simultaneous use of these biomarkers for the surveillance of firefighters' health and to better estimate the potential short-term health risks.
机译:消防员是最危险的职业之一,但由于后勤原因,相应的接触评估是最具挑战性的一项。因此,这项工作评估了消防活动对尿中单羟基多环芳烃(OHPAHs; 1-羟基萘,1-羟基ac,2-羟基芴,1-羟基菲,1-羟基py,3-羟基苯并(a)py)水平的影响。以及来自八个消防站的消防员的遗传毒性/氧化作用生物标记(基础DNA和氧化DNA损伤)。还监测心脏频率,血压和动脉血氧饱和度。 OHPAH通过液相色谱和荧光检测法测定,而遗传毒性/氧化作用生物标志物通过彗星试验评估。暴露于(禁止吸烟和吸烟)的工人的总OHPAHs浓度比对照受试者(禁止吸烟和未参加战斗活动)高340%(p <= 0.05);对于1-羟基萘和1-羟基ac(Sigma OHPAHs的82-8%)和2-羟基芴(5-15%)观察到最高的增量。非吸烟暴露工人的氧化应激生物标志物水平高于对照组(316%; p <= 0.001); DNA损伤的结果尚无定论。发现非吸烟(未暴露和暴露)消防员的心律频率,Sigma OHPAHs与氧化性DNA损伤之间呈正相关。关于同时使用这些生物标记物监测消防员健康并更好地估计其潜在的短期健康风险的证据已经提出。

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