Ramin Maryam, Khadem Monireh, Omidi Fariborz, Pourhosein Mehran, Golbabaei Farideh, Shahtaheri Seyed Jamaleddin
Occupational and Environmental Center, Health deputy, Ministry of Health and Medical Education, Tehran, Iran.
Department of Occupational Health Engineering, School of Public Health, Tehran University of Medical Sciences, Tehran, Iran.
Med J Islam Repub Iran. 2019 Jul 20;33:71. doi: 10.34171/mjiri.33.71. eCollection 2019.
Selecting an effective sample preparation method to measure target pesticides in biological matrices is a serious challenge for researchers. This study aimed to optimize the dispersive liquid-liquid microextraction (DLLME) technique to obtain a simple, valid, and fast method with high efficiency to detect chlorpyrifos in urine samples. DLLME, coupled with high performance liquid chromatography equipped with ultra violet detector, was used to extract chlorpyrifos pesticide in human urine samples. Different affecting parameters on the efficiency of the method were optimized using one factor at a time method. The limit of detection and enrichment factor of the method was 0.5 and 230 µg L-1, respectively. Linear calibration curve with 1-500 µg L-1 concentration range was used. The relative standard deviation (RSD) for 6 replicate experiments at the concentration of 200 µg L-1 was less than 5%. The relative recoveries of spiked urine samples were 96.3%, 102.3%, and 98.7% at 3 different concentration levels of 50, 200, and 1000 µg L-1, respectively. Compared to other extraction techniques, the optimized DLLME resulted in some advantages such as shorter extraction time, high extraction efficiency, and good enrichment factor for the extraction of chlorpyrifos from human urine samples.
对于研究人员来说,选择一种有效的样品制备方法来测定生物基质中的目标农药是一项严峻的挑战。本研究旨在优化分散液液微萃取(DLLME)技术,以获得一种简单、有效、快速且高效的方法来检测尿液样本中的毒死蜱。采用配备紫外检测器的高效液相色谱联用DLLME法,对人尿液样本中的毒死蜱农药进行萃取。采用一次只改变一个因素的方法,对影响该方法效率的不同参数进行了优化。该方法的检测限和富集因子分别为0.5和230μg L-1。使用浓度范围为1-500μg L-1的线性校准曲线。在200μg L-1浓度下进行6次重复实验的相对标准偏差(RSD)小于5%。加标尿液样本在50、200和1000μg L-1这3个不同浓度水平下的相对回收率分别为96.3%、102.3%和98.7%。与其他萃取技术相比,优化后的DLLME在从人尿液样本中萃取毒死蜱方面具有一些优势,如萃取时间短、萃取效率高和富集因子良好。