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首页> 外文期刊>Analytica chimica acta >Comprehensive profiling of mercapturic acid metabolites from dietary acrylamide as short-term exposure biomarkers for evaluation of toxicokinetics in rats and daily internal exposure in humans using isotope dilution ultra-high performance liquid chromatography tandem mass spectrometry
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Comprehensive profiling of mercapturic acid metabolites from dietary acrylamide as short-term exposure biomarkers for evaluation of toxicokinetics in rats and daily internal exposure in humans using isotope dilution ultra-high performance liquid chromatography tandem mass spectrometry

机译:膳食丙烯酰胺作为短期暴露生物标志物的巯基乙酸代谢产物的综合概况分析,用于评估大鼠毒代动力学和人类日常内部暴露,采用同位素稀释超高效液相色谱串联质谱法

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摘要

Mercapturic acid metabolites from dietary acrylamide are important short-term exposure biomarkers for evaluating the in vivo toxicity of acrylamide. Most of studies have focused on the measurement of two metabolites, N-acetyl-S-(2-carbamoylethyl)-L-cysteine (AAMA) and N-acetyl-S-(2-carbamoyl-2-hydroxyethyl)- L-cysteine (GAMA). Thus, the comprehensive profile of acrylamide urinary metabolites cannot be fully understood. We developed an isotope dilution ultra-high performance liquid chromatography tandem mass spectrometry (UHPLC-MS/MS) method for the simultaneous determination of all four mercapturic acid adducts of acrylamide and its primary metabolite glycidamide under the electroscopy ionization negative (ESI-) mode in the present study. The limit of detection (LOD) and limit of quantification (LOQ) of the analytes ranged 0.1-0.3 ng/mL and 0.4-1.0 ng/mL, respectively. The recovery rates with low, intermediate and high spiking levels were calculated as 95.5%-105.4%, 98.2%-114.0% and 92.2%-108.9%, respectively. Acceptable within-laboratory reproducibility (RSD < 7.0%) substantially supported the use of current method for robust analysis. Rapid pretreatment procedures and short run time (8 min per sample) ensured good efficiency of metabolism profiling, indicating a wide application for investigating short-term internal exposure of dietary acrylamide. Our proposed UHPLC-MS/MS method was successfully applied to the toxicokinetic study of acrylamide in rats. Meanwhile, results of human urine analysis indicated that the levels of N-acetyl-S-(2-carbamoylethyl)-L-cysteine-sulfoxide (AAMA-sul), which did not appear in the mercapturic acid metabolites in rodents, were more than the sum of GAMA and N-acetyl-S-(1-carbamoyl-2-hydroxyethyl)-L-cysteine (iso-GAMA). Thus, AAMA-sul may alternatively become a specific biomarker for investigating the acrylamide exposure in humans. Current proposed method provides a substantial methodology support for comprehensive profiling of toxicokinetics and daily internal exposure evaluations of acrylamide in vivo. (C) 2015 Elsevier B.V. All rights reserved.
机译:膳食丙烯酰胺中的巯基代谢产物是评估丙烯酰胺体内毒性的重要短期暴露生物标志物。大多数研究都集中在两种代谢物的测定上,即N-乙酰基-S-(2-氨基甲酰基乙基)-L-半胱氨酸(AAMA)和N-乙酰基-S-(2-氨基甲酰基-2-羟乙基)-L-半胱氨酸(GAMA)。因此,不能完全了解丙烯酰胺尿代谢产物的综合概况。我们开发了一种同位素稀释超高效液相色谱串联质谱(UHPLC-MS / MS)方法,用于在电镜负离子电离(ESI-)模式下同时测定丙烯酰胺及其主要代谢产物缩水甘油酰胺的所有四个巯基乙酸加合物本研究。分析物的检出限(LOD)和定量限(LOQ)分别为0.1-0.3 ng / mL和0.4-1.0 ng / mL。低,中和高峰值水平的回收率分别计算为95.5%-105.4%,98.2%-114.0%和92.2%-108.9%。实验室内可接受的可重复性(RSD <7.0%)基本上支持使用当前方法进行稳健分析。快速的预处理程序和较短的运行时间(每个样品8分钟)确保了代谢图谱的良好效率,这表明它广泛用于研究膳食丙烯酰胺的短期内部暴露。我们提出的UHPLC-MS / MS方法已成功地应用于大鼠丙烯酰胺的毒代动力学研究。同时,人体尿液分析结果表明,在啮齿类动物的巯基乙酸代谢物中未出现的N-乙酰基-S-(2-氨基甲酰基乙基)-L-半胱氨酸亚砜(AAMA-sul)含量超过GAMA和N-乙酰基-S-(1-氨基甲酰基-2-羟乙基)-L-半胱氨酸(iso-GAMA)的总和。因此,AAMA-sul可以替代地成为研究人体丙烯酰胺暴露的特定生物标记。当前提出的方法为毒物动力学的综合概况分析和体内丙烯酰胺的每日内部暴露评估提供了重要的方法学支持。 (C)2015 Elsevier B.V.保留所有权利。

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