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首页> 外文期刊>Journal of toxicology and environmental health, Part A >Non-targeted GC/MS analysis of exhaled breath samples: Exploring human biomarkers of exogenous exposure and endogenous response from professional firefighting activity
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Non-targeted GC/MS analysis of exhaled breath samples: Exploring human biomarkers of exogenous exposure and endogenous response from professional firefighting activity

机译:呼出呼吸样品的非针对性GC / MS分析:探索从专业消防活动的外源暴露和内源性反应的人生物标志物

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摘要

A non-targeted analysis workflow was applied to analyze exhaled breath samples collected from firefighters pre- and post-structural fire suppression. Breath samples from firefighters functioning in attack and search positions were examined for target and non-target compounds in automated thermal desorption-GC/MS (ATD-GC/MS) selected ion monitoring (SIM)/scan mode and reviewed for prominent chemicals. Targeted chemicals included products of combustion such as benzene, toluene, xylenes, and polycyclic aromatic hydrocarbons (PAH) that serve as a standard assessment of exposure. Sixty unique chemical features representative of exogenous chemicals and endogenous compounds, including single-ring aromatics, polynuclear aromatic hydrocarbons, volatile sulfur-containing compounds, aldehydes, alkanes, and alkenes were identified using the non-targeted analysis workflow. Fifty-seven out of 60 non-targeted features changed by at least 50% from pre- to post-fire suppression activity in at least one subject, and 7 non-targeted features were found to exhibit significantly increased or decreased concentrations for all subjects as a group. This study is important for (1) alerting the firefighter community to potential new exposures, (2) expanding the current targeted list of toxicants, and (3) finding biomarkers of response to firefighting activity as reflected by changes in endogenous compounds. Data demonstrate that there are non-targeted compounds in firefighters' breath that are indicative of environmental exposure despite the use of protective gear, and this information may be further utilized to improve the effectiveness of personal protective equipment.
机译:应用了非目标分析工作流程来分析从消防员预先和结构后火灾抑制中收集的呼出的呼吸样本。在自动热解吸-GC / MS(ATD-GC / MS)中的目标和非目标化合物中,检查来自攻击和搜索位置的消防员的呼吸样本进行检查,用于自动化热解吸-GC / MS(ATD-GC / MS)选择离子监测(SIM)/扫描模式,并审查了突出的化学品。靶向化学品包括燃烧的燃烧产品,例如苯,甲苯,二甲苯和多环芳烃(PAH),其作为暴露的标准评估。使用非靶向分析工作流程鉴定出代表外源化学品和内源化合物,包括单环芳烃,含有单环芳烃,挥发性硫化合物,醛,烷烃和烯烃的六十个独特的化学特征。 60个非目标特征中的五十七个在至少一个受试者中预先抑制活动中的至少50%,发现7个非目标特征表现出明显增加或减少所有受试者的浓度一群。本研究对于(1)对消防员社区提醒潜在的新曝光,(2)扩大当前的毒物清单,(3)发现对消防活动的反应的生物标志物,如因内源化合物的变化反映。数据表明,尽管使用保护齿轮,但在消防员的呼吸中存在非靶向化合物,尽管使用保护齿轮,并且可以进一步利用这些信息来提高个人防护设备的有效性。

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