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Target and non-target screening strategies for organic contaminants, residues and illicit substances in food, environmental and human biological samples by UHPLC-QTOF-MS

机译:通过UHPLC-QTOF-MS对食品,环境和人类生物样品中的有机污染物,残留物和非法物质进行目标和非目标筛选策略

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In this paper, we illustrate the potential of ultra-high performance liquid chromatography (UHPLC) coupled with hybrid quadrupole time-of-flight mass spectrometry (QTOF MS) for large scale screening of organic contaminants in different types of samples. Thanks to the full-spectrum acquisition at satisfactory sensitivity, it is feasible to apply both (post)-target and non-target approaches for the rapid qualitative screening of organic pollutants in food, biological and environmental samples. Different strategies have been applied and compared in this work. The first approach consists of target screening based on automatically extracting the exact analyte masses with a narrow mass window (±10 mDa). The selection of analytes can be made after MS acquisition as non-specific analyte information is required when injecting the samples. The second, non-targeted approach, consists of a first component detection step followed by the search of the detected components in home-made spectral libraries. In this work, two types of libraries have been evaluated: a theoretical database, including the molecular formula of a large number of pollutants (~1000), and an empirical mass spectra library which includes a lower number of compounds for which reference standards were available. In all cases the confidence of the identification process was excellent, thanks to the value of information given in QTOF MSE acquisition mode (i.e. simultaneous acquisition of low and high energy TOF MS spectra in a unique run). Both, target and non-target approaches, are complementary and both have advantages and drawbacks. Their application to different types of samples has allowed the detection of diverse organic compounds, for example the mycotoxin fumonisin B1 in food samples, cocaine and several metabolites in human urine, as well as several pesticides, antibiotics and drugs of abuse in urban wastewater...
机译:在本文中,我们说明了超高效液相色谱(UHPLC)与混合四极杆飞行时间质谱(QTOF MS)结合用于大规模筛选不同类型样品中有机污染物的潜力。由于全光谱采集具有令人满意的灵敏度,因此可以同时(目标)和非目标方法对食品,生物和环境样品中的有机污染物进行快速定性筛选。在这项工作中已应用和比较了不同的策略。第一种方法是基于目标筛选,该目标基于自动提取具有窄质量窗口(±10 mDa)的精确分析物质量。可以在MS采集后进行分析物的选择,因为进样时需要非特异性分析物信息。第二种非针对性方法包括第一个成分检测步骤,然后在自制光谱库中搜索检测到的成分。在这项工作中,评估了两种类型的库:一个理论数据库(包括大量污染物的分子式(约1000个))和一个经验质谱库,其中包含较少数量的化合物,这些化合物具有参考标准。在所有情况下,由于QTOF MSE采集模式(即在一次独特的运行中同时采集低能和高能TOF MS光谱)中给出的信息价值,因此识别过程的置信度非常出色。目标方法和非目标方法都是相辅相成的,都有其优点和缺点。将其应用于不同类型的样品后,可以检测到多种有机化合物,例如食品样品中的霉菌毒素伏马菌素B1,人尿中的可卡因和几种代谢产物以及城市废水中的几种农药,抗生素和滥用药物。 。

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