[Determination of 12 halogenated organic pollutants in edible fish by ultra performance liquid chromatography-high resolution mass spectrometry combined with ultrasound-assisted extraction and gel permeation chromatography purification].

Yi-Zhe Zhu, Rui-Fen Zheng, Zi-Hao Fan, Ling Liu, Jing-Yao Ye, Kai Wang, Cai-Ming Tang
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引用次数: 0

Abstract

Halogenated organic pollutants (HOPs) have attracted considerable attention owing to their persistence, bioaccumulation, and toxicity. The development of methods to detect HOPs in fish is challenging owing to the compositional complexity of fish matrices, which contain high levels of lipids and relatively low concentrations of HOPs. In addition, the lipophilicity of most HOPs renders their extraction difficult. Moreover, the simultaneous determination of multiple HOPs to achieve the high-throughput screening of these analytes is complex. In this study, a reliable and efficient pretreatment method based on ultrasound-assisted extraction, gel permeation chromatography purification, and ultra performance liquid chromatography-high resolution mass spectrometry (UPLC-HRMS) was developed for the determination of 12 HOPs in edible fish. The procedures of sample extraction and purification and LC-HRMS detection parameters were optimized to improve the performance of the method. Fresh fish samples were thoroughly rinsed with water, and non-edible parts, including the skin, bones, and phosphorus, were removed. The fish were weighed, cut into small pieces, and vacuum freeze-dried for 48 h. Subsequently, a freeze grinder was used to grind the dried fish into a fine powder. Exactly 2 g of the fish powder was weighed, fortified with isotope-labeled internal standards of the HOPs, and allowed to stand for 5 min. Methanol-acetonitrile (1∶1, v/v) was then added, followed by vortex mixing and ultrasonication. After centrifugation, the supernatant was transferred to a fresh tube. The extraction process was repeated twice and all extracts were combined. The extract was evaporated under a gentle nitrogen flow and redissolved in a mixture of ethyl acetate-cyclohexane (1∶1, v/v). The sample mixture was cleaned using gel permeation chromatography, and the eluate was collected and concentrated under a nitrogen flow. Sample residuals were reconstituted with water-methanol (1∶1, v/v) prior to instrumental analysis. Chromatographic separation was performed using an ACQUITY UPLC BEH C18 column (100 mm×2.1 mm, 1.7 μm). Water containing 2 mmol/L NH4Ac and acetonitrile were used as the mobile phases, and an optimized gradient elution program was applied. Isotope dilution and an internal standard method were used to quantify the HOPs. An electrospray ionization source operated in negative mode was applied to ionize the HOPs, and a full scan together with data-dependent acquisition (DDA) was applied for HRMS. Excellent linearities (R2>0.99) were obtained for all HOPs in the quantification range of 1.0-1000.0 ng/mL. The limits of quantification were 0.5 ng/g. The analytical method was validated using pooled fish samples fortified with HOP standards (4, 40, and 400 ng/g). The recoveries of the HOPs were in the range of 67.6%-133.8%, and the corresponding RSDs were 0.5%-15.6%. A total of 27 commercially available fish samples were analyzed using the developed method, and the results revealed the presence of HOPs in the fish, indicating the practicability of the method for real-world samples. The developed method is rapid, accurate, precise, and suitable for detecting HOPs in fish. This study provides a useful approach for environmental monitoring and food safety assurance by enabling the accurate and efficient analysis of HOPs in commonly consumed fish. Given increasing global concerns over HOPs, the method developed in this study will provide practical technical support for consumers aiming to reduce their exposure to and the adverse impacts of HOPs via fish.

[超高效液相色谱-高分辨质谱结合超声辅助萃取和凝胶渗透色谱纯化法测定食用鱼中的 12 种卤代有机污染物]。
卤化有机污染物(HOPs)由于其持久性、生物蓄积性和毒性引起了人们的广泛关注。由于鱼类基质的成分复杂,其中含有高水平的脂质和相对低浓度的啤酒花,因此检测鱼类中啤酒花的方法的发展具有挑战性。此外,大多数啤酒花的亲脂性使其难以提取。此外,同时测定多种啤酒花以实现这些分析物的高通量筛选是复杂的。本研究建立了超声辅助提取、凝胶渗透色谱纯化、超高效液相色谱-高分辨质谱(UPLC-HRMS)联合检测食用鱼中12种啤酒花的可靠高效的前处理方法。优化了样品的提取纯化流程和LC-HRMS检测参数,提高了该方法的性能。新鲜的鱼样本用水彻底冲洗,去除不可食用的部分,包括皮肤、骨头和磷。将鱼称重,切成小块,真空冷冻干燥48小时。随后,使用冷冻研磨机将干鱼磨成细粉。取鱼粉称重2 g,用啤酒花同位素标记内标强化,静置5 min,加入甲醇-乙腈(1∶1,v/v),涡流搅拌,超声搅拌。离心后,将上清液转移到新鲜试管中。重复提取2次,所有提取液合并。提取液在温和氮气流下蒸发,再溶解于乙酸乙酯-环己烷(1∶1,v/v)的混合物中。混合样品采用凝胶渗透色谱法清洗,洗脱液在氮气流下收集浓缩。样品残留物在仪器分析前用水-甲醇(1∶1,v/v)重构。色谱分离采用ACQUITY UPLC BEH C18色谱柱(100 mm×2.1 mm, 1.7 μm)。以含2 mmol/L NH4Ac的水和乙腈为流动相,采用优化的梯度洗脱方案。采用同位素稀释法和内标法对啤酒花进行定量分析。采用负极电喷雾电离源电离hop,采用全扫描和数据依赖采集(DDA)技术进行HRMS。在1.0 ~ 1000.0 ng/mL范围内,所有啤酒花均具有良好的线性关系(R2>0.99)。定量限为0.5 ng/g。采用添加HOP标准(4、40和400 ng/g)的混合鱼样品验证了该分析方法。啤酒花的加样回收率为67.6% ~ 133.8%,rsd为0.5% ~ 15.6%。利用该方法对27份市售鱼样品进行了分析,结果显示鱼中存在啤酒花,表明该方法对实际样品的实用性。该方法快速、准确、精密度高,适用于鱼类中啤酒花的检测。本研究能够准确、高效地分析常见食用鱼类中啤酒花的含量,为环境监测和食品安全保障提供了有益的方法。鉴于全球对啤酒花的关注日益增加,本研究中开发的方法将为消费者提供实用的技术支持,旨在减少他们通过鱼类接触啤酒花和其不利影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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