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在注射器内离子液体分散液液微萃取与 HPLC 联用测定人尿液样品中反,反-粘康酸。

In-syringe ionic liquid-dispersive liquid-liquid microextraction coupled with HPLC for the determination of trans,trans-muconic acid in human urine sample.

机构信息

Student Research Committee, Shiraz University of Medical Sciences, Shiraz, Iran.

Department of Occupational Health Engineering, School of Health, Shiraz University of Medical Sciences, Shiraz, Iran.

出版信息

J Sep Sci. 2021 Aug;44(16):3126-3136. doi: 10.1002/jssc.202100044. Epub 2021 Jun 25.

Abstract

trans,trans-Muconic acid has been widely used as a biomarker in biological monitoring of benzene-exposed workers during routine occupational health services. In the present study, a novel microextraction technique, in-syringe ionic liquid-dispersive liquid-liquid microextraction, was implemented for preconcentration of trans,trans-muconic acid followed by analytical determination by high-performance liquid chromatography with ultraviolet detection. Moreover, the important variables affecting the performance of applied microextraction technique including needle diameter, volume of the spiked sample, volume of the ionic liquid, salt addition, rotation speed of centrifugation, centrifuge time, and ultrasonic time were optimized by experimental design. A good linear relationship was observed at the range of 0.032-10 μg/mL between the peak area and the concentration levels (R = 0.9997). The limit of detection and extraction recovery for trans,trans-muconic acid were 0.011 μg/mL and >96.2%, respectively. This method provided easy and rapid analysis of low amounts of trans,trans-muconic acid in human urine with simple equipment.

摘要

反,反-粘康酸已被广泛用作职业健康服务中苯暴露工人生物监测的生物标志物。在本研究中,采用了一种新型的微萃取技术,即注射器内离子液体分散液液微萃取,用于反,反-粘康酸的预浓缩,然后通过高效液相色谱-紫外检测进行分析测定。此外,通过实验设计优化了影响应用微萃取技术性能的重要变量,包括针头直径、加标样品体积、离子液体体积、盐添加量、离心转速、离心时间和超声时间。在 0.032-10μg/mL 范围内,峰面积与浓度水平呈良好的线性关系(R = 0.9997)。反,反-粘康酸的检测限和萃取回收率分别为 0.011μg/mL 和>96.2%。该方法使用简单的设备,为分析人体尿液中低浓度的反,反-粘康酸提供了简便、快速的方法。

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