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首页> 外文期刊>Journal of Analytical Toxicology >An Ultra-High-Pressure Liquid Chromatographic Tandem Mass Spectrometry Method for the Analysis of Benzoyl Ester Derivatized Glycols and Glycerol
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An Ultra-High-Pressure Liquid Chromatographic Tandem Mass Spectrometry Method for the Analysis of Benzoyl Ester Derivatized Glycols and Glycerol

机译:超高压液相色谱串联质谱法,用于分析苯甲酰酯衍生二醇和甘油的分析

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Presented is an ultra-high-pressure liquid chromatographic tandem mass spectrometry (UPLCMS/MS) method developed for the detection of propylene glycol, glycerol, ethylene glycol and diethylene glycol using isotopically labeled standards in urine as part of ongoing studies to evaluate whether urinary propylene glycol and/or vegetable glycerin concentration are indicators of recent use. Propylene glycol and vegetable glycerol are found in many products that are consumed and used including electronic cigarettes (e-cigarettes). E-cigarettes are battery-powered devices used as an alternative to traditional cigarettes. The liquid formulations aerosolized in these devices largely consist of propylene glycol and/or vegetable glycerol. Published reports regarding the ratio of propylene glycol to glycerol content in these formulations ranged from 50:50 to 100 percent of either. For the analysis of urine specimens from both users and non-users of e-cigarettes, calibrators, controls and specimens were derivatized using benzoyl chloride prior to analysis. They were analyzed using a Waters AcQuity Xevo TQ-S Micro UPLC-MS/MS. Chromatographic separation was performed on an AcQuity UPLC BEH C18 1.7 um, 2.1 x 50 mm, column using a 20 mM ammonium formate in water and 20 mM ammonium formate in methanol as the mobile phase. The method was validated using SWGTOX guidelines for linearity, precision and accuracy, stability, carryover and limit of detection. The linear range was determined using a seven-point calibration curve ranging between 0.5 and 100 mcg/mL. The bias for all validation controls was determined to be +/- 20% of the expected concentrations with CVs of <15%. A total of 124 urine specimens analyzed collected with 50 specimens collected from self-reported nonsmokers (cigarettes/e-cigarettes) confirmed cotinine free using the DRI (R) Cotinine Assay (Thermo Scientific, Waltham, MA) and 74 specimens collected before and after 12 hours self-reported e-cigarettes abstinence e-cigarette users. Propylene glycol and glycerol were determined to have concentration ranges of "none detected" to 1470 and "none detected" to 2950 mcg/mL, respectively.
机译:呈现是一种超高压液相色谱串联质谱(UPLCMS / MS)方法,用于检测丙二醇,甘油,乙二醇和二亚乙二醇,使用同位素标记的尿液标准作为持续研究的一部分,以评估尿液是否丙烯乙二醇和/或植物甘油浓度是最近使用的指标。丙二醇和植物甘油在许多产品中发现,包括电子卷烟(电子卷烟)。电子烟是电池供电的设备,用作传统香烟的替代品。在这些装置中雾化的液体制剂很大程度上由丙二醇和/或植物甘油组成。本制剂中丙二醇与甘油含量与甘油含量比的报道范围为50:50至100%。对于来自用户和非用户的尿液试样的分析,在分析之前使用苯甲酰氯衍生校准剂,对照和标本。使用Waters Acquity Xevo TQ-S Micro UplC-MS / MS进行分析。在Acquity UPLC BEH C18 1.7MUB,2.1×50mM,在水中的甲酸铵和20mM甲酸甲酸甲酸酯作为流动相,在甲醇中进行色谱分离。使用SWGTOX的线性指南验证该方法,用于线性,精度和精度,稳定性,携带和检测极限。使用七分校准曲线测定的线性范围,范围在0.5和100mcg / ml之间。所有验证控制的偏差被确定为+/- 20%的预期浓度,CV为<15%。分析了124种尿液标本,其中50个由自我报告的非报道(香烟/电子香烟)收集的50个标本,使用DRI(R)Cotinine测定(Thermo Sciencific,Waltham,MA)和74个标本在之前和之后收集12小时自我报告的电子卷烟禁欲电子卷烟用户。测定丙二醇和甘油分别测定浓度范围为“没有检测到”至1470,并分别“没有检测到”至2950mcg / ml。

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