Novel Technique for Simultaneous Ethylene Glycol and Its Metabolites Determination in Human Whole Blood and Urine Samples Using GC-QqQ-MS/MS.

IF 6.8 Q1 TOXICOLOGY Journal of Xenobiotics Pub Date : 2024-08-27 DOI:10.3390/jox14030065
Kaja Tusiewicz, Olga Wachełko, Marcin Zawadzki, Paweł Szpot
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Abstract

Toxicological analyses often necessitate the identification of compounds belonging to diverse functional groups. For GC-MS analyses, derivatization of compounds belonging to different functional groups can pose a challenge and requires the development of comprehensive methods of analysis. One example could be ethylene glycol, whose widespread use is related to possible unintentional or suicidal intoxications. This fact clearly indicates the need to develop sensitive methods for the determination of ethylene glycol and its metabolites in biological material, as only such complex analysis allows for proper toxicological expertise. A simultaneous GC-QqQ-MS/MS method for the determination of ethylene glycol together with its metabolites, glyoxal and glycolic acid, as well as the detection of glyoxylic acid and oxalic acid, was developed and fully validated. A novel approach for simultaneous derivatization of substances from different groups (alcohols, aldehydes, and carboxylic acids) was established. Sample preparation included the addition of three internal standards (BHB-d4, ethylene glycol-d4 and methylglyoxal), precipitation with acetonitrile and subsequent derivatization with N-tert-butyldimethylsilyl-N-methyltrifluoroacetamide (MTBSTFA), as well as pentafluorophenylhydrazine (PFPH). Detection was carried out with the use of triple quadrupole mass spectrometer. The ionization method was electron impact, and quantitative analysis was carried out in multiple reaction monitoring mode. The lower limit of quantification was 1 μg/mL, 0.1 μg/mL, and 500 μg/mL for ethylene glycol, glyoxal, and glycolic acid, respectively. The presented method was applied in three authentic postmortem cases of ethylene glycol intoxication.

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利用 GC-QqQ-MS/MS 同时测定人体全血和尿液样本中乙二醇及其代谢物的新技术
毒理学分析通常需要鉴定属于不同官能团的化合物。对于气相色谱-质谱(GC-MS)分析,属于不同官能团的化合物的衍生化可能会带来挑战,需要开发全面的分析方法。乙二醇就是一个例子,它的广泛使用可能与无意中毒或自杀有关。这一事实清楚地表明,有必要开发灵敏的方法来测定生物材料中的乙二醇及其代谢物,因为只有这种复杂的分析才能提供适当的毒理学专业知识。我们开发了一种同时测定乙二醇及其代谢物乙二醛和乙醇酸的 GC-QqQ-MS/MS 方法,并对该方法进行了全面验证。建立了一种新方法,可同时衍生不同基团(醇、醛和羧酸)的物质。样品制备包括添加三种内标物(BHB-d4、乙二醇-d4 和甲基乙二醛),用乙腈沉淀,然后用 N-叔丁基二甲基硅基-N-甲基三氟乙酰胺(MTBSTFA)和五氟苯肼(PFPH)进行衍生。使用三重四极杆质谱仪进行检测。电离方式为电子碰撞,定量分析采用多反应监测模式。乙二醇、乙二醛和乙醇酸的定量下限分别为 1 μg/mL、0.1 μg/mL和 500 μg/mL。所提出的方法被应用于三例真实的乙二醇中毒尸检病例。
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来源期刊
CiteScore
5.30
自引率
1.70%
发文量
21
审稿时长
10 weeks
期刊介绍: The Journal of Xenobiotics publishes original studies concerning the beneficial (pharmacology) and detrimental effects (toxicology) of xenobiotics in all organisms. A xenobiotic (“stranger to life”) is defined as a chemical that is not usually found at significant concentrations or expected to reside for long periods in organisms. In addition to man-made chemicals, natural products could also be of interest if they have potent biological properties, special medicinal properties or that a given organism is at risk of exposure in the environment. Topics dealing with abiotic- and biotic-based transformations in various media (xenobiochemistry) and environmental toxicology are also of interest. Areas of interests include the identification of key physical and chemical properties of molecules that predict biological effects and persistence in the environment; the molecular mode of action of xenobiotics; biochemical and physiological interactions leading to change in organism health; pathophysiological interactions of natural and synthetic chemicals; development of biochemical indicators including new “-omics” approaches to identify biomarkers of exposure or effects for xenobiotics.
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