Laboratory of Chemical Analysis, Department of Veterinary Public Health and Food Safety, Faculty of Veterinary Medicine, Ghent University, Salisburylaan 133, 9820 Merelbeke, Belgium.
Department of Microbial and Molecular Systems (M(2)S), Lab4food, Faculty of Engineering Technology, KU Leuven, Kleinhoefstraat 4, 2240 Geel, Belgium.
Food Chem. 2019 Sep 30;293:187-196. doi: 10.1016/j.foodchem.2019.04.082. Epub 2019 Apr 24.
A generic extraction and UHPLC-Q-Orbitrap™-HRMS method was developed for four insect species (mealworm, grasshopper, house cricket and black soldier fly) analyzing a large spectrum of organic chemical contaminants, including pesticides (n = 25), (veterinary) drugs (n = 29), and mycotoxins (n = 23). To prove the method as 'fit-for-purpose', a successful validation was performed, both qualitatively, by determining the screening detection limit (SDL), selectivity and specificity, as well as semi-quantitatively, by assessing the within-day precision (relative standard deviation (RSD)) and recovery. For both the mealworm, grasshopper, house cricket and black soldier fly, 64, 61, 59 and 62 compounds were detected at the respective SDL levels (1-100 μg kg), predominantly below existing maximum residue limits for other edible matrices. Mean recoveries ranged between 70% and 120% and RSD-values were in line with European regulations (CD 2002/657/EC; SANCO). Finally, the potential of the screening methodology was demonstrated on real insect samples, revealing minor to no contamination.
建立了一种通用的提取和 UHPLC-Q-Orbitrap™-HRMS 方法,用于分析四种昆虫物种(粉虫、蝗虫、家蟋蟀和黑水虻),分析了包括农药(n=25)、(兽药)药物(n=29)和霉菌毒素(n=23)在内的大量有机化学污染物。为了证明该方法“适用”,进行了成功的验证,包括定性地通过确定筛选检测限(SDL)、选择性和特异性,以及半定量地通过评估日内精密度(相对标准偏差(RSD))和回收率。对于粉虫、蝗虫、家蟋蟀和黑水虻,分别在各自的 SDL 水平(1-100μgkg)下检测到 64、61、59 和 62 种化合物,主要低于其他可食用基质的现有最大残留限量。平均回收率在 70%至 120%之间,RSD 值符合欧洲法规(CD 2002/657/EC;SANCO)。最后,该筛选方法的潜力在真实的昆虫样本中得到了证明,结果表明污染程度较小或没有。