4.7 Article

Novel fast pesticides extraction (FaPEx) strategy coupled with UHPLC-MS/MS for rapid monitoring of emerging pollutant fipronil and its metabolite in food and environmental samples

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ENVIRONMENTAL RESEARCH
卷 217, 期 -, 页码 -

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ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.envres.2022.114823

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Fipronil; Metabolites; Fast pesticide extraction; FaPEx; LC-MS; MS; Food and environmental samples

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This work proposes a new and environmentally friendly sample preparation strategy called "in-syringe-assisted fast pesticides extraction (FaPEx)" technique coupled with LC-MS/MS for the rapid identification and monitoring of fipronil and its metabolite fipronil sulfone in chicken egg and environmental soil samples. The FaPEx strategy involves two simple steps: extraction using low-volume acetonitrile with NaCl and anhydrous MgSO4 salts, followed by solid-phase extraction (SPE) using cleanup sorbents and salt combinations for the cleanup process. The developed method shows excellent linearity, precision, and recovery, making it suitable for the analysis of fipronil and its metabolites in food and environmental samples.
In this work, we demonstrated a new, environmental-friendly and effective sample preparation strategy named 'in-syringe-assisted fast pesticides extraction (FaPEx)' technique coupled with LC-MS/MS for the rapid identi-fication and monitoring of emerging pollutant fipronil and its metabolite fipronil sulfone in chicken egg and environmental soil samples. FaPEx strategy comprising of two simple steps. Firstly, the sample was placed in the syringe and extracted using low-volume acetonitrile with NaCl and anhydrous MgSO4 salts. Secondly, the extractant was passed through in-syringe-based solid-phase extraction (SPE) kit containing cleanup sorbents and salt combinations (C18, primary secondary amine, and anhydrous MgSO4) for the cleanup process. Then, the obtained clean extractant was injected into LC-MS/MS for the quantification of target analytes. Various important parameters influencing the FaPEx performances, such as solvent type, salt type, salt amount, sorbent type, and amount, were examined and optimized. The method validation results showed excellent linearity with high correlation coefficients were >= 0.99. The estimated LODs were between 0.05-0.07 mu g/kg, and LOQs ranged between 0.1-0.25 mu g/kg for target analytes in both egg and soil sample matrices, and precision values were <= 7.90%. The developed method was applied to commercial chicken egg samples and environmental soil samples analysis. Spiked recoveries ranged between 88.75-110.91% for egg samples with RSDs <= 7.42% and 82.47-107.46% for soil samples with RSDs <7.37%. These results proved that the developed sample preparation method is a simple, fast, green, low-cost, and efficient method for the analysis of fipronil and its metabolites in food and environmental samples. Thus, this method can be applied as an alternative analytical methodology in routine and standard food and environmental testing laboratories.

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