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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Dispersive liquid-liquid microextraction using a low transition temperature mixture and liquid chromatography-mass spectrometry analysis of pesticides in urine samples
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Dispersive liquid-liquid microextraction using a low transition temperature mixture and liquid chromatography-mass spectrometry analysis of pesticides in urine samples

机译:使用低转变温度混合物和尿液中农药液相色谱 - 质谱分析的分散液 - 液微萃取

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摘要

Biomonitoring is a potent tool to control the health risk of people occupationally and non-occupationally exposed. The latest trend in bioanalytical chemistry is to develop quick, cheap, easy, safe and reliable green analytical procedures to analyse a large number of chemicals in easily accessible biomatrices such as urine. In this paper, a new dispersive liquid-liquid microextraction (DLLME) procedure, conceived to treat urine samples and based on the use of a low transition temperature mixture (LTTM), was developed and validated to analyse twenty pesticides commonly used in farm practises. The LTTM was composed of choline chloride and sesamol in molar ratio 1:3 (ChC1:Ses 1:3); its characterization via differential scanning calorimetry identified it as an LTTM and not as a deep eutectic solvent due to the occurrence of a glass transition at -71 degrees C. The prepared mixture was used as the extraction solvent in the DLLME procedure, while ethyl acetate as the dispersing solvent. The salting out effect (50 mg mL(-1) of NaCl in a diluted urine sample) improved the separation phase and the analyte transfer to the extractant. Due to the high ionic strength and despite the density of ChCl:Ses 1:3 (1.25 g mL(-1)), the LTTM layer floated on the top of the sample solution after centrifugation. All extracts were analysed by high-performance liquid chromatography coupled to mass spectrometry. After optimization and validation of the whole method, lower limits of quantitation were in the range of 0.02 - 0.76 mu g L-1. Extraction recoveries spanned from 50 to 101 % depending on the spike level and analytes. Precision and accuracy ranges were 3-18% and 5-20%, respectively. The extraction procedure was also compared with other methods, showing to be advantageous for rapidity, simplicity, efficiency, and low cost. Finally, urine samples from ten volunteers were effectively analysed using the developed method. (C) 2021 Elsevier B.V. All rights reserved.
机译:生物监测是控制职业和非职业接触人群健康风险的有力工具。生物分析化学的最新趋势是开发快速、廉价、简单、安全和可靠的绿色分析方法,以分析尿液等易于获取的生物基质中的大量化学物质。本文提出了一种新的分散液-液微萃取(DLLME)方法,用于处理尿液样本,并基于低转变温度混合物(LTTM)的使用,开发和验证了该方法,以分析农场实践中常用的20种农药。LTTM由氯化胆碱和芝麻酚组成,摩尔比为1:3(ChC1:Ses 1:3);通过差示扫描量热法对其进行表征,确定其为LTTM,而不是深共晶溶剂,因为在-71℃下发生玻璃化转变。在DLLME程序中,制备的混合物用作萃取溶剂,而乙酸乙酯用作分散溶剂。盐析效应(稀释尿样中50 mg-mL(-1)NaCl)改善了分离阶段,并使分析物转移到萃取剂中。由于离子强度高,尽管ChCl:Ses的密度为1:3(1.25 g mL(-1)),但离心后LTTM层漂浮在样品溶液的顶部。所有提取物均通过高效液相色谱-质谱联用进行分析。对整个方法进行优化和验证后,定量下限在0.02-0.76μg L-1范围内。根据加标水平和分析物的不同,提取回收率在50%到101%之间。精密度和准确度范围分别为3-18%和5-20%。并与其他方法进行了比较,结果表明该方法具有快速、简便、高效、成本低等优点。最后,使用开发的方法对10名志愿者的尿液样本进行了有效分析。(c)2021爱思唯尔B.V.保留所有权利。

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