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首页> 外文期刊>Toxins >Ultra-High-Performance Liquid Chromatography Coupled with Quadrupole Orbitrap High-Resolution Mass Spectrometry for Multi-Residue Analysis of Mycotoxins and Pesticides in Botanical Nutraceuticals
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Ultra-High-Performance Liquid Chromatography Coupled with Quadrupole Orbitrap High-Resolution Mass Spectrometry for Multi-Residue Analysis of Mycotoxins and Pesticides in Botanical Nutraceuticals

机译:超高效液相色谱,与四桥壁图高分辨率质谱,用于植物营养素中的霉菌毒素和农药的多残基分析

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Cannabidiol (CBD) food supplements made of Cannabis sativa L. extracts have quickly become popular products due to their health-promoting effects. However, potential contaminants, such as mycotoxins and pesticides, can be coextracted during the manufacturing process and placed into the final product. Accordingly, a novel methodology using ultra-high-performance liquid chromatography coupled with quadrupole Orbitrap high-resolution mass spectrometry (UHPLC-Q-Orbitrap HRMS) was developed to quantify 16 mycotoxins produced by major C. sativa fungi, followed by a post-target screening of 283 pesticides based on a comprehensive spectral library. The validated procedure was applied to ten CBD-based products. Up to six different Fusarium mycotoxins were found in seven samples, the most prevalent being zearalenone (60%) and enniatin B1 (30%), both found at a maximum level of 11.6 ng/g. Co-occurrence was observed in four samples, including one with enniatin B1, enniatin A and enniatin A1. On the other hand, 46 different pesticides were detected after retrospective analysis. Ethoxyquin (50%), piperonyl butoxide (40%), simazine (30%) and cyanazine (30%) were the major residues found. These results highlight the necessity of monitoring contaminants in food supplements in order to ensure a safe consumption, even more considering the increase trend in their use. Furthermore, the developed procedure is proposed as a powerful analytical tool to evaluate the potential mycotoxin profile of these particular products.
机译:由大麻苜蓿L.提取物制成的Cannabidiol(CBD)食品补充剂由于其健康促进效果而迅速成为流行的产品。然而,潜在的污染物,例如霉菌毒素和杀虫剂,可以在制造过程中共扣,并置于最终产品中。因此,使用超高效液相色谱法与四轴横梁高分辨率质谱(UHPLC-Q-orbitrap HRMS)相结合的新方法,以定量由主要C.Sativa真菌产生的16个霉菌毒素,其次是后目标基于综合光谱库的筛选283种农药。已验证的程序应用于十个基于CBD的产品。在七个样品中发现了最多六种不同的镰刀菌毒素,最普遍的是串甲酮(60%)和肌苷B1(30%),均以最大水平为11.6 ng / g。在四个样品中观察到共同发生,包括含有eNniatIN B1,脑肌苷A和肌肉A1的样品。另一方面,回顾性分析后检测到46种不同的杀虫剂。乙氧基喹(50%),哌隆丁氧化物(40%),西嗪(30%)和氰脲嘌呤(30%)是发现的主要残留物。这些结果突出了在食品补充剂中监测污染物的必要性,以确保安全消耗,甚至更加考虑到他们使用的增加趋势。此外,提出了开发的程序作为一种强大的分析工具,以评估这些特定产品的潜在的霉菌毒素。

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