首页> 外文期刊>Journal of chromatography, B. Analytical technologies in the biomedical and life sciences >Ultra-high sensitive analysis of 3-hydroxybenzo[a]pyrene in human urine using GC-APLI-MS
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Ultra-high sensitive analysis of 3-hydroxybenzo[a]pyrene in human urine using GC-APLI-MS

机译:使用GC-APLI-MS的3-羟基苯苯并[a]芘的超高敏感分析

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Urinary 3-hydroxybenzo[a]pyrene (3-OH-BaP) is a known biomarker for human exposure to carcinogenic polycyclic aromatic hydrocarbons (PAH). In this work, a new method for the ultra-sensitive quantification of this biomarker has been developed using the hyphenation of gas chromatography and atmospheric pressure laser ionization-mass spectrometry (GC-APLI-MS). In combination with an advanced sample preparation, a limit of detection (LOD) of 0.6 pg/L was achieved which is an improvement by a factor of at least 28 compared with existing methods. The limit of quantification (LOQ) is 1.8 pg/L. With this set-up 3-OH-BaP could be analyzed in urine samples of 7 smokers and 7 non-smokers. Concentrations ranged from 37 to 270 pg/L for non-smokers and from 374 to 1171 pg/L for smokers. For the first time, 3-O-H-BaP was quantifiable in all non-smoker samples as no value was below the LOQ. Correlation of the urinary 3-O-H-BaP values with the number of daily smoked cigarettes and with urinary cotinine values shows a clear relationship between 3-OH-BaP content and smoking habits. This innovative analytical method enables monitoring of low levels of the biomarker 3-OH-BaP in urine of non-occupationally exposed individuals including smokers, the general population with background PAH exposure and cohorts of low exposition such as newborns and children.
机译:尿3-羟基苯干[a]芘(3-OH-BAP)是已知的用于人体暴露于致癌多环芳烃(PAH)的生物标志物。在这项工作中,使用气相色谱和大气压激光电离质谱(GC-APLI-MS)的连字符开发了这种生物标志物的超敏定量的新方法。与先进的样品制备结合,实现了0.6pg / L的检测极限,与现有方法相比,该检测限为0.6pg / L的0.6pg / L的倍数至少为28。量化限制(LOQ)为1.8 pg / L.通过这种设置,可以在7个吸烟者和7名非吸烟者的尿液中分析3-OH-BAP。浓度为非吸烟者的37至270 pg / l,吸烟者的374至1171 pg / l。在所有非吸烟者样品中,最初的第一次,在所有非吸烟者样品中都是量化的,因为没有值低于LOQ。尿3-O-H-BAP值与日常烟熏卷烟数量和尿黄素素值的相关性显示出3-OH-BAP含量和吸烟习惯之间的明显关系。这种创新的分析方法能够监测非职业暴露的尿液中的生物标志物3-OH-BAP的低水平,包括吸烟者,与背景PAH曝光和低博览会的一般人群,如新生儿和儿童。

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