评价环境暴露于芳香烃的尿液分析。

Ljiljana Skender, Irena Brcić, Visnja Karacić
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引用次数: 22

摘要

作者建立了一种动态顶空(吹扫捕集)气相色谱法,光电离检测,用于测定尿液中的苯(C6H6),甲苯(C7H8),乙苯(C8H10)和异构体(o-, m-,对-)二甲苯(C8H10) (BTEX)。检出限为15 ~ 35ng /l,相对标准偏差为0.2 ~ 10%,准确度为80% ~ 100%。本研究的主要目的是使用这种新方法建立克罗地亚萨格勒布普通人群尿液中BTEX的基线浓度数据。第二个目标是评估吸烟对这些基线值的影响。对72名未职业性接触BTEX的受试者(36名非吸烟者和36名吸烟者)尿液中的BTEX进行了分析。不吸烟者的尿液中有可测量的BTEX,除了13个样本中有乙苯和15个样本中有邻二甲苯。吸烟者的BTEX值明显高于非吸烟者。由于BTEX的暴露源通常是衍生的(即车辆尾气和吸烟),因此它们在受试者尿液中的值具有显著的相关性。甲苯和邻二甲苯的水平与每天吸烟的数量显著相关。利用净化捕集气相色谱和光电离检测来测定尿液中的BTEX,为普通人群的生物监测提供了一种方便的方法。研究数据提供了尿液中BTEX的参考值,可作为环境暴露的生物标志物。吸烟对尿BTEX浓度有显著影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Urine analysis for the evaluation of environmental exposures to aromatic hydrocarbons.

The authors have developed a dynamic headspace (purge-and-trap) gas chromatographic method, with photoionization detection, for the determination of benzene (C6H6), toluene (C7H8), ethylbenzene (C8H10), and isomeric (o-, m-, p-) xylenes (C8H10) (BTEX) in urine. Detection limits ranged between 15 and 35 ng/l, relative standard deviations between 0.2 and 10%, and accuracy between 80 and 100%. The primary objective of this study was to use this new method to establish baseline concentration data for BTEX in the urine of the general population of Zagreb, Croatia. A second objective was to evaluate the effect of cigarette smoking on those baseline values. BTEX were analyzed in the urine of 72 subjects (36 nonsmokers and 36 smokers) without occupational exposure to BTEX. The nonsmokers had measurable BTEX in their urine, except for ethylbenzene in 13 and o-xylene in 15 of the samples. Values for BTEX were markedly higher among smokers than nonsmokers. Because the sources of BTEX exposure are commonly derived (i.e., vehicle exhausts and smoking), their values in subjects' urine were significantly intercorrelated. Levels of toluene and o-xylene were correlated significantly with the number of cigarettes smoked per day. The use of purge-and-trap gas chromatography with photoionization detection to determine BTEX in urine offers a convenient approach for biological monitoring of the general population. Study data provide referent values for BTEX in urine, which can be used as biomarkers for environmental exposures. Smoking contributes significantly to the urinary concentration of BTEX.

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