A LC-MS/MS method with electrospray ionization and atmospheric pressure chemical ionization source for analysis of pesticides in hemp.

Avinash Dalmia, Erasmus Cudjoe, Jacob Jalali, Feng Qin
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引用次数: 3

Abstract

Background: Pesticide testing for hemp has traditionally focused on techniques like QuEChERS with dSPE and SPE which demand time-consuming sample preparation, typically resulting in poor recovery rates for some pesticides, and requires the use of both LC-MS/MS and GC-MS/MS based instruments to cover the analysis for all regulated pesticides. In this study, we describe a streamlined approach for working with LC-MS/MS featuring a dual electrospray ionization (ESI) and atmospheric pressure chemical ionization (APCI) sources using solvent extraction for faster and easier sample preparation and with 80-120% recovery for the analysis of all of 66 pesticides (regulated by California state in cannabis) with low detection limits in hemp.

Methods: A simple solvent extraction with acetonitrile was used to extract pesticides from hemp. A LC-MS/MS system with dual ESI and APCI source was used to determine sensitivity for the analysis of 66 pesticides in hemp matrix, 62 pesticides were analyzed using an 18-min LC-MS/MS method with an ESI source and the other 4 pesticides were measured using a 6-min LC-MS/MS method with an APCI source.

Results: The limit of quantitation (LOQ) of all 66 pesticides in hemp was in the range of 0.0025-0.1 μg/g which was well below the California state action limits of these analytes in cannabis products. A simple, fast, and cost-effective solvent extraction method was used for sample preparation to get good recovery in the range of 80-120% with RSD less than 20%. The unique ionization mechanism of chlorinated pesticides such as pentachloronitrobenzene using the LC-MS/MS system with an APCI source was elucidated. The proficiency test report generated with the LC-MS/MS method showed acceptable results for all of 66 pesticides in hemp with all of th z scores less than 2 with no false positives and negatives. The stability data collected over 5 days showed RSD less than 20% for 66 pesticides in hemp, and this demonstrated the robustness of the LC-MS/MS system used in this work.

Conclusions: A LC-MS/MS method with dual ESI and APCI sources was developed for the analysis of 66 pesticides in hemp. The recovery of all pesticides from a hemp matrix was in the acceptable range of 80-120% with RSD less than 20%.

Abstract Image

Abstract Image

Abstract Image

采用电喷雾电离和常压化学电离源相结合的LC-MS/MS法分析大麻中农药。
背景:大麻的农药检测传统上集中在QuEChERS与dSPE和SPE等技术上,这些技术需要耗时的样品制备,通常导致某些农药的回收率较差,并且需要使用LC-MS/MS和GC-MS/MS为基础的仪器来覆盖所有受管制农药的分析。在这项研究中,我们描述了一种简化的LC-MS/MS方法,该方法具有双电喷雾电离(ESI)和大气压化学电离(APCI)源,使用溶剂萃取,更快,更容易地进行样品制备,回收率为80-120%,用于分析大麻中所有66种农药(由加利福尼亚州监管),检测限低。方法:采用乙腈简单溶剂萃取法提取大麻中农药。采用ESI和APCI双源LC-MS/MS系统对大麻基质中66种农药进行了敏感性分析,其中62种农药采用ESI源18 min的LC-MS/MS方法,其余4种农药采用APCI源6 min的LC-MS/MS方法进行了敏感性分析。结果:大麻中66种农药的定量限均在0.0025 ~ 0.1 μg/g范围内,均低于大麻产品中这些农药的加州限量。采用简单、快速、经济的溶剂萃取法制备样品,回收率在80 ~ 120%之间,RSD < 20%。利用APCI源LC-MS/MS系统,阐明了氯化农药(如五氯硝基苯)的独特电离机理。用LC-MS/MS方法生成的熟练度测试报告显示,大麻中66种农药的z值均小于2,结果均可接受,无假阳性和假阴性。5 d的稳定性数据显示,大麻中66种农药的RSD均小于20%,证明了LC-MS/MS系统的稳健性。结论:建立了ESI和APCI双源LC-MS/MS分析大麻中66种农药的方法。所有农药的回收率均在80 ~ 120%的可接受范围内,RSD < 20%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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