Decleer Marlies, Rajkovic Andreja, Sas Benedikt, Madder Annemieke, De Saeger Sarah
Department of Bioanalysis, Laboratory of Food Analysis, Ghent University, Ottergemsesteenweg 460, Ghent, Belgium; Department of Food Safety and Food Quality, Laboratory of Food Microbiology and Food Preservation, Ghent University, Coupure Links 653, Ghent, Belgium.
Department of Food Safety and Food Quality, Laboratory of Food Microbiology and Food Preservation, Ghent University, Coupure Links 653, Ghent, Belgium.
J Chromatogr A. 2016 Nov 11;1472:35-43. doi: 10.1016/j.chroma.2016.10.003. Epub 2016 Oct 4.
Rapid and accurate UPLC-MS/MS methods for the simultaneous determination of beauvericin and the related enniatins (A, A1, B, B1), together with cereulide were successfully developed and validated in cereal and cereal-based food matrices such as wheat, maize, rice and pasta. Although these emerging foodborne toxins are of different microbial origin, the similar structural, toxicological and food safety features provided rationale for their concurrent detection in relevant food matrices. A Waters Acquity UPLC system coupled to a Waters Quattro Premier XE™ Mass Spectrometer operating in ESI+ mode was employed. Sample pretreatment involved a fast and simple liquid extraction of the target toxins without any further clean-up step. For all toxins the sample preparation resulted in acceptable extraction recoveries with values of 85-105% for wheat, 87-106% for maize, 84-106% for rice and 85-105% for pasta. The efficient extraction protocol, together with a fast chromatographic separation of 7min allowed substantial saving costs and time showing its robustness and performance. The validation of the developed method was performed based on Commission Decision 2002/657/EC. The obtained limits of detection ranged from 0.1 to 1.0μgkg and the limits of quantification from 0.3 to 2.9μgkg for the targeted toxins in the selected matrices. The obtained sensitivities allow detection of relevant toxicological concentrations. All relative standard deviations for repeatability (intra-day) and intermediate precision (inter-day) were lower than 20%. Trueness, expressed as the apparent recovery varied from 80 to 107%. The highly sensitive and repeatable validated method was applied to 57 naturally contaminated samples allowing detection of sub-clinical doses of the toxins.
已成功开发并验证了快速、准确的超高效液相色谱-串联质谱法(UPLC-MS/MS),用于同时测定谷物和谷物类食品基质(如小麦、玉米、大米和面食)中的白僵菌素及其相关恩镰孢菌素(A、A1、B、B1)以及蜡样芽孢杆菌毒素。尽管这些新出现的食源毒素来源不同微生物,但相似的结构、毒理学和食品安全特征为在相关食品基质中同时检测它们提供了依据。采用了与沃特世Quattro Premier XE™质谱仪联用的沃特世Acquity UPLC系统,该质谱仪以电喷雾电离正离子模式(ESI+)运行。样品预处理包括对目标毒素进行快速简单的液体萃取,无需进一步净化步骤。对于所有毒素,样品制备的萃取回收率均可接受,小麦的回收率为85 - 105%,玉米为87 - 106%,大米为84 - 106%,面食为85 - 105%。高效的萃取方案以及7分钟的快速色谱分离,节省了大量成本和时间,显示出其稳健性和性能。所开发方法的验证依据欧盟委员会第2002/657/EC号决定进行。在所选基质中,目标毒素的检测限为0.1至1.0μg/kg,定量限为0.3至2.9μg/kg。所获得灵敏度能够检测到相关毒理学浓度。重复性(日内)和中间精密度(日间)的所有相对标准偏差均低于20%。以表观回收率表示的准确性在80%至107%之间变化。该经过验证的高灵敏度且可重复的方法应用于57个天然污染样品,能够检测到亚临床剂量的毒素。