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建立并验证了一种高效液相色谱-串联质谱法,用于同时分析人尿液中的挥发性有机化合物代谢物、羟基多环芳烃和 8-羟基-2'-脱氧鸟苷。

Development and validation of an HPLC-MS/MS method for the simultaneous analysis of volatile organic compound metabolites, hydroxylated polycyclic aromatic hydrocarbons, and 8-hydroxy-2'-deoxyguanosine in human urine.

机构信息

State Environmental Protection Key Laboratory of Environmental Pollution Health Risk Assessment, Research Group of Emerging Contaminants, South China Institute of Environmental Sciences, Ministry of Ecology and Environment, Guangzhou 510655, PR China.

State Environmental Protection Key Laboratory of Environmental Pollution Health Risk Assessment, Research Group of Emerging Contaminants, South China Institute of Environmental Sciences, Ministry of Ecology and Environment, Guangzhou 510655, PR China; Department of Disease Control and Prevention, General Hospital of Central Theater Command, Wuhan 430030, PR China; State Key Laboratory of Environment Health (Incubation), Key Laboratory of Environment and Health, Ministry of Education, Key Laboratory of Environment and Health (Wuhan), Ministry of Environmental Protection, School of Public Health, Tongji Medical College, Huazhong University of Science and Technology, Wuhan 430030, PR China.

出版信息

J Chromatogr B Analyt Technol Biomed Life Sci. 2023 Sep 1;1229:123885. doi: 10.1016/j.jchromb.2023.123885. Epub 2023 Sep 14.

Abstract

Humans are widely and concurrently exposed to volatile organic compounds (VOCs) and polycyclic aromatic hydrocarbons (PAHs). However, few studies have reported the internal co-exposure levels of these chemicals in occupational and general populations. Specifically, the associations revealed between the urinary levels of metabolites of VOCs (mVOCs), hydroxylated PAHs (OH-PAHs), and oxidative stress biomarkers for humans remain limited. In this study, a method based on solid-phase extraction (SPE) and liquid chromatography coupled with tandem mass spectrometry (LC-MS/MS) was developed for the simultaneous analysis of 22 mVOCs, 12 OH-PAHs, and 8-hydroxy-2'-deoxyguanosine (8-OHdG) in human urine samples. The method was validated with all target analyte accuracies and precisions in the range of 76 %-120 % and 1 %-14 % at three levels of spiked urine samples, respectively. The limit of detection (LOD) and limit of quantification (LOQ) of the target analytes were 0.01-0.34 ng/mL and 0.01-7.57 ng/mL, respectively. And the method was applied to measure urinary levels of target analytes from 38 petrochemical workers in Guangzhou, South China. Except for 3-hydroxy-benzo[a]pyrene, all target analytes were detected in the urine samples. The average levels were 0.05-12.6 ng/mL for individual OH-PAHs, 0.20-73620 ng/mL for individual mVOCs, and 1.00 ng/mL for 8-OHdG. Additionally, 3-hydroxy-phenanthrene, 1-hydroxy-pyrene, 6-hydroxy-chrysene, N-acetyl-S-(trichlorovinyl)-L-cysteine, 2-methylhippuric acid, thiodiacetic acid, trans, trans-Muconic acid, and N-acetyl-S-(3,4-dihydroxybutyl)-L-cysteine had statistically significant positive effects on 8-OHdG levels, while 1-hydroxy-naphthalene, 1,2-dihydroxybenzene, and hippuric acid showed a negative effect on 8-OHdG, indicating these metabolites could lead to synergistic or antagonistic oxidative DNA damage. This study provides a robust analytical method that permits a comprehensive assessment of co-exposure to PAHs and VOCs and their potential adverse health effects.

摘要

人体同时广泛暴露于挥发性有机化合物(VOCs)和多环芳烃(PAHs)中。然而,很少有研究报告职业人群和一般人群中这些化学物质的内部共同暴露水平。具体来说,人类尿液中 VOCs 代谢物(mVOCs)、羟基化多环芳烃(OH-PAHs)和氧化应激生物标志物之间的关联仍然有限。在这项研究中,开发了一种基于固相萃取(SPE)和液相色谱串联质谱(LC-MS/MS)的方法,用于同时分析 22 种 mVOCs、12 种 OH-PAHs 和 8-羟基-2'-脱氧鸟苷(8-OHdG)在人类尿液样本中。该方法在三种加标尿液样本中对所有目标分析物的准确度和精密度均在 76%-120%和 1%-14%的范围内进行了验证。目标分析物的检出限(LOD)和定量限(LOQ)分别为 0.01-0.34ng/mL 和 0.01-7.57ng/mL。该方法应用于测量来自中国南方广州的 38 名石化工人的尿液中目标分析物的水平。除了 3-羟基苯并[a]芘外,尿液样本中均检测到所有目标分析物。个体 OH-PAHs 的平均水平为 0.05-12.6ng/mL,个体 mVOCs 的平均水平为 0.20-73620ng/mL,8-OHdG 的平均水平为 1.00ng/mL。此外,3-羟基菲、1-羟基芘、6-羟基-苯并[c]蒽、N-乙酰-S-(三氯乙酰基)-L-半胱氨酸、2-甲基马尿酸、硫代二乙酸、反式,反式-粘康酸和 N-乙酰-S-(3,4-二羟基丁基)-L-半胱氨酸对 8-OHdG 水平有统计学上的正向影响,而 1-羟基萘、1,2-二羟基苯和马尿酸对 8-OHdG 有负向影响,表明这些代谢物可能导致协同或拮抗的氧化 DNA 损伤。本研究提供了一种强大的分析方法,可全面评估 PAHs 和 VOCs 的共同暴露及其潜在的健康危害。

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