首页> 外文期刊>Journal of Agricultural and Food Chemistry >Combined Use of GC-TOF MS and UHPLC-(Q)TOF MS To Investigate the Presence of Nontarget Pollutants and Their Metabolites in a Case of Honeybee Poisoning
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Combined Use of GC-TOF MS and UHPLC-(Q)TOF MS To Investigate the Presence of Nontarget Pollutants and Their Metabolites in a Case of Honeybee Poisoning

机译:结合使用GC-TOF MS和UHPLC-(Q)TOF MS来调查蜜蜂中毒时非目标污染物及其代谢物的存在

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The combined use of gas chromatography (GC) and ultrahigh-pressure liquid chromatography (UHPLC), both coupled to time-of-flight mass spectrometry (TOF MS), has been explored in this work for the investigation of several cases of honeybee poisoning. The procedure applied involves a previous extraction with acetone followed by liquid-liquid extraction with dichloromethane. Both techniques, GC-TOF MS and UHPLC-(Q)TOF MS, have been applied to discover the presence of compounds that might be responsible of honeybee deaths. The application of a nontarget methodological approach to a first case of poisoning allowed the detection of the insecticide coumaphos at high concentration levels in the samples. The presence of possible metabolites of this organophosphorus insecticide was investigated by using both techniques. UHPLC-(Q)TOF MS showed its higher applicability in this case, as most of the metabolites were more polar than the parent compound. Four metabolites were identified by UHPLC-(Q)TOF MS, whereas only two of them were found by GC-TOF MS. The developed methodology was applied to other subsequent poisoning cases in which insecticides such as coumaphos, thiamethoxam, pyriproxyfen, and chlorfenvinphos were identified by both techniques, whereas GC-TOF MS also allowed the detection of fenitrothion and methiocarb. In all positive cases, the confirmation of the presence of the compound detected was feasible by means of accurate mass measurements of up to five ions together with their ion ratio evaluation.
机译:在这项工作中,已经探索了结合使用气相色谱(GC)和超高压液相色谱(UHPLC)以及飞行时间质谱(TOF MS)来调查蜜蜂中毒的几种情况。所应用的程序包括先用丙酮萃取,然后用二氯甲烷液-液萃取。两种技术(GC-TOF MS和UHPLC-(Q)TOF MS)均已用于发现可能导致蜜蜂死亡的化合物。将非目标方法学方法应用于第一例中毒病例,使得可以在样品中检测到高浓度的杀虫剂香豆磷。通过使用两种技术,研究了这种有机磷杀虫剂可能的代谢物的存在。 UHPLC-(Q)TOF MS在这种情况下显示出更高的适用性,因为大多数代谢物的极性都比母体化合物的极性大。通过UHPLC-(Q)TOF MS鉴定出四种代谢物,而通过GC-TOF MS仅发现其中两种。所开发的方法学适用于随后的其他中毒案例,在这两种案例中,两种技术都可以鉴定出杀虫剂,例如香豆磷,噻虫嗪,吡虫杀酚和氯芬芬磷,而GC-TOF MS还可以检测到杀th硫酮和甲硫威。在所有阳性情况下,通过对多达五个离子的精确质量测量及其离子比率评估,可以确定所检测到的化合物的存在。

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