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Development of an economic ultrafast liquid chromatography with tandem mass spectrometry method for trace analysis of multiclass mycotoxins in Polygonum multiflorum

色谱法 检出限 化学 赭曲霉毒素A 黄曲霉毒素 质谱法 真菌毒素 基质(化学分析) 校准曲线 串联质谱法 分析物 萃取(化学) 分析化学(期刊) 医学 食品科学 传统医学
作者
Pinxuan Huang,Qiutao Liu,Jiabo Wang,Zhijie Ma,Jinghua Lu,Weijun Kong
出处
期刊:Journal of Separation Science [Wiley]
卷期号:42 (2): 491-500 被引量:8
标识
DOI:10.1002/jssc.201800602
摘要

Abstract Rapid, economic, and highly effective determination of multiple mycotoxins in complex matrices has given huge challenges for the analytical method. In this study, an economic analytical strategy based on sensitive and rapid ultrafast liquid chromatography coupled to hybrid triple quadrupole/linear ion trap mass spectrometry technique was developed for the determination of seven mycotoxins of different chemical classes (aflatoxin B 1 , B 2 , G 1 , and G 2 , ochratoxin A, T‐2 toxin, and HT‐2 toxin) in Polygonum multiflorum . Target mycotoxins were completely extracted using a modified quick, easy, cheap effective, rugged, and safe method without additional clean‐up steps. The types of extraction solvents and adsorbents for the extraction procedure were optimized to achieve high recoveries and reduce coextractives in the final extracts. Due to significant matrix effects for all analytes (≤68.9% and ≥110.0%), matrix‐matched calibration curves were introduced for reliable quantification, exploring excellent linearity for the seven mycotoxins with coefficients of determination >0.9992. The method allowed high sensitivity with limit of detection in the range of 0.031–2.5 μg/kg and limit of quantitation in the range of 0.078–6.25 μg/kg, as well as satisfactory precision with relative standard deviations lower than 8%. Recovery rates were between 74.3 and 119.8% with relative standard deviations below 7.43%. The proposed method was successfully applied for 24 batches of P. multiflorum samples, and six samples were found to be positive with aflatoxin B 1 , B 2 , G 1 , or ochratoxin A. The method with significant advantages, including minimum analytical time, low time and solvent consumption, and high sensitivity, would be a preferred candidate for economic analysis of multiclass mycotoxins in complex matrices.
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