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Optimization and validation of a quantitative liquid chromatography–tandem mass spectrometric method covering 295 bacterial and fungal metabolites including all regulated mycotoxins in four model food matrices

机译:优化和验证定量液相色谱 - 串联质谱法,涵盖295种细菌和真菌代谢物,包括四种模型食品基质中的所有受调节霉菌毒素

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摘要

An LC–MS/MS “dilute and shoot” method for the determination of 295 fungal and bacterial metabolites was optimized and validated according to the guidelines established in the Directorate General for Health and Consumer Affairs of the European Commission (SANCO) document No. 12495/2011. Four different types of food matrices were chosen for validation: apple puree for infants (high water content), hazelnuts (high fat content), maize (high starch and low fat content) and green pepper (difficult or unique matrix). Method accuracy and precision was evaluated using spiked samples in five replicates at two concentration levels. Method trueness was demonstrated through participation in various proficiency tests. Although the method covers a total number of 331 analytes, validation data were acquired only for 295 analytes, either due to the non-availability of analytical standards or due other reasons described in this paper. Concerning the apparent recovery, the percentage of 295 analytes matching the acceptable recovery range of 70–120% lied down by SANCO varied from 21% in green pepper to 74% in apple puree at the highest spiking level. At the levels close to limit of quantification only 20–58% of the analytes fulfilled this criterion. The extent of matrix effects was strongly dependent on the analyte/matrix combination. In general, the lowest matrix effects were observed in apple puree (59% of analytes were not influenced by enhancement/suppression at all at the highest validation level). The highest matrix effects were observed in green pepper, where only 10% of analytes did not suffer from signal suppression/enhancement. The repeatability of the method was acceptable (RSD ≤ 20) for 97% of all analytes in apple puree and hazelnuts, for 95% in maize and for 89% in green pepper. Concerning the trueness of the method, Z-scores were generally between −2 and 2, despite a broad variety of different matrices. Based on these results it can be concluded that quantitative determination of mycotoxins by LC–MS/MS based on a “dilute and shoot” approach is also feasible in case of complex matrices.
机译:根据欧洲委员会卫生与消费者事务总局(SANCO)第12495号文件中确定的准则,对LC-MS / MS“稀释并射击”法测定295种真菌和细菌代谢物进行了优化和验证。 / 2011。选择了四种不同类型的食品矩阵进行验证:婴儿苹果泥(高水分含量),榛子(高脂肪含量),玉米(高淀粉含量和低脂肪含量)和青椒(困难或独特的基质)。使用两个浓度水平的五次加标样品评估方法的准确性和精密度。通过参加各种能力测试证明了方法的真实性。尽管该方法涵盖了331种分析物,但由于无法提供分析标准品或由于本文所述的其他原因,仅获得了295种分析物的验证数据。关于表观回收率,在最高加标水平下,符合SANCO要求的70-120%可接受回收率范围的295种分析物的百分比从青椒中的21%到苹果酱中的74%不等。在接近定量极限的水平上,只有20–58%的分析物符合该标准。基质效应的程度在很大程度上取决于分析物/基质的组合。通常,在苹果泥中观察到的基质效应最低(在最高验证水平下,59%的分析物完全不受增强/抑制的影响)。在青椒中观察到最高的基质效应,其中只有10%的分析物没有受到信号抑制/增强的影响。对于苹果泥和榛子中所有分析物的97%,玉米中95%和青椒中89%的方法,该方法的重复性均可接受(RSD≤20)。关于该方法的真实性,尽管存在多种不同的矩阵,但Z分数通常在-2和2之间。根据这些结果,可以得出结论,在复杂基质的情况下,基于“稀释即溶”方法的LC-MS / MS定量测定霉菌毒素也是可行的。

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