首页> 外文期刊>Journal of Pharmaceutical and Biomedical Analysis: An International Journal on All Drug-Related Topics in Pharmaceutical, Biomedical and Clinical Analysis >Identification and quantification of acidosis inducing metabolites in cases of alcohols intoxication by GC-MS for emergency toxicology
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Identification and quantification of acidosis inducing metabolites in cases of alcohols intoxication by GC-MS for emergency toxicology

机译:酒精中毒情况下酸中毒诱导代谢物的鉴定和定量通过GC-MS进行紧急毒理学

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摘要

A simple, cost effective, and fast gas chromatography method with mass spectrometry detection (GC-MS) for simultaneous measurement of formic acid, glycolic acid, methoxyacetic acid, ethoxyacetic acid and 2-hydroxyethoxyacetic acid in serum and urine was developed and validated. This multi-analyte method is highly suitable for clinical and emergency toxicology laboratory diagnostic, allowing identification and quantification of five most common acidosis inducing organic acids present in cases of alcohol intoxication. Furthermore, when patients are admitted to emergency unit at late stage of toxic alcohol intoxication, the concentration of parent compound may be already low or not detectable. This new method employs a relatively less used class of derivatization agents - alkyl chloroformates, allowing the efficient and rapid derivatization of carboxylic acids within seconds. The entire sample preparation procedure is completed within 5 min. The optimal conditions of derivatization procedure have been found using chemometric approach (design of experiment). The calibration dependence of the method was proved to be quadratic in the range of 25-3000 mg L-1, with adequate accuracy (97.3-108.0%) and precision (<12.8%). The method was successfully applied for identification and quantification of the selected compounds in serum of patients from emergency units. (C) 2015 Elsevier B.V. All rights reserved.
机译:开发并验证了一种简便,经济高效的气相色谱质谱检测(GC-MS)方法,用于同时测定血清和尿液中的甲酸,乙醇酸,甲氧基乙酸,乙氧基乙酸和2-羟基乙氧基乙酸。这种多分析物方法非常适合临床和急诊毒理学实验室诊断,允许鉴定和定量酒精中毒时存在的五种最常见的酸中毒诱导有机酸。此外,当患者在有毒酒精中毒的晚期进入急诊室时,母体化合物的浓度可能已经很低或无法检测到。这种新方法采用了相对较少使用的一类衍生剂-烷基氯甲酸酯,可在几秒钟内高效,快速地衍生羧酸。整个样品制备过程在5分钟内完成。使用化学计量学方法(实验设计)已经找到了衍生化过程的最佳条件。在25-3000 mg L-1范围内,该方法的校准相关性被证明是二次方的,具有足够的准确度(97.3-108.0%)和精度(<12.8%)。该方法已成功用于鉴定和定量来自急诊科患者血清中的所选化合物。 (C)2015 Elsevier B.V.保留所有权利。

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