Department of Chemistry, University of Ioannina, Ioannina, 45110, Greece; Institute of Environment and Sustainable Development, University Research Center of Ioannina (URCI), Ioannina, 45110, Greece.
Department of Chemistry, University of Ioannina, Ioannina, 45110, Greece.
Environ Res. 2024 Jun 15;251(Pt 2):118739. doi: 10.1016/j.envres.2024.118739. Epub 2024 Mar 19.
Fish feed is essential in aquaculture fish production because, along with beneficial nutrients and components, many suspected compounds can be transferred to fish and ultimately to humans. In this context, a comprehensive analysis was conducted to monitor various pesticides and pharmaceutical compounds in aquaculture fish feed through target analysis and many other groups of chemicals via suspect screening approaches. In this study, the QuEChERS extraction method was optimized, validated, and applied to fifty-four fish feed samples collected from different production batches. This was followed by liquid chromatography-high-resolution linear ion trap/Orbitrap mass spectrometry (LC-HR-IT/Orbitrap-MS) for targeted and suspect screening purposes. In general, pesticides provided satisfactory recoveries (70-105.5 %), with quantification limits lower than 5 ng g, whereas pharmaceuticals displayed recoveries ranging from 70.5 to 120.2 %, with quantification limits below 25 ng g. In addition, the matrix effects and measurement uncertainty were assessed to provide more accurate and high-confidence results. Pirimiphos-methyl was detected and quantified in 20 of 54 fish feed samples (37 %) at concentrations <77 ng g. Finally, suspect screening revealed the occurrence of 10 mycotoxins (e.g., citrinin, aflatoxin G2, zearalenone, and alternariol), two pesticides excluding the target pesticides (tebuconazole and fenazaquin), perfluorooctane sulfonic acid (PFOS) in almost 2 % of the samples, and ethoxyquin (antioxidant), with 12 of its Transformation Products (TPs). Finally, suspect analysis incorporated in routine analyses have proven to have great potential for complete monitoring.
水产养殖中的鱼类饲料至关重要,因为其中不仅含有有益的营养成分和组分,还可能存在多种可疑化合物,这些化合物会转移到鱼类体内,并最终转移到人类体内。在此背景下,本研究通过目标分析和多种其他组别的疑似筛查方法,对水产养殖鱼类饲料中的各种农药和药物化合物进行了全面分析。本研究中,优化、验证并应用了 QuEChERS 提取方法,对从不同生产批次采集的 54 个鱼类饲料样本进行了分析。随后,采用液相色谱-高分辨线性离子阱/轨道阱质谱(LC-HR-IT/Orbitrap-MS)进行了目标和疑似筛查。总体而言,农药的回收率(70-105.5%)令人满意,定量限低于 5ng/g,而药物的回收率在 70.5-120.2%之间,定量限低于 25ng/g。此外,还评估了基质效应和测量不确定度,以提供更准确和高可信度的结果。在 54 个鱼类饲料样本中,有 20 个(37%)样本检出并定量了甲基嘧啶磷,浓度<77ng/g。最后,疑似筛查发现了 10 种真菌毒素(如桔青霉素、黄曲霉毒素 G2、玉米赤霉烯酮和交链孢酚)、2 种除目标农药以外的农药(戊唑醇和芬苯达唑)、几乎 2%的样本中存在全氟辛烷磺酸(PFOS)以及抗氧化剂乙氧喹,及其 12 种转化产物(TPs)。总之,将疑似分析纳入常规分析中已被证明具有全面监测的巨大潜力。