[quechers -超高效液相色谱-串联质谱法快速测定水产品中5种卤代苯醌类]。

IF 1.2 4区 化学 Q4 CHEMISTRY, ANALYTICAL 色谱 Pub Date : 2023-06-08 DOI:10.3724/SP.J.1123.2022.09020
Xue-Zhi Tong, Dong-Yang Chen, Jia-Li Feng, Xiang Fan, Hao Zhang, Sheng-Yuan Yang
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The risk of HBQs in aquatic products is expected to rise because the disinfection of public facilities has significantly increased in recent years. Therefore, developing a sensitive and accurate analytical method to detect HBQs in aquatic products is of great importance. Several analytical methods, including gas chromatography, gas chromatography-mass spectrometry, electrochemical methods, liquid chromatography, and liquid chromatography-tandem mass spectrometry, can be used to identify and quantify HBQs in water. However, to the best of our knowledge, no reports on the determination of HBQ levels in aquatic products are yet available. Further, pretreatment is essential for HBQ determination because of the complex matrix effects of aquatic products. Herein, a sensitive and accurate method based on the QuEChERS technique coupled with ultra performance liquid chromatography-tandem mass spectrometry (UPLC-MS/MS) was developed for the simultaneous determination of five HBQs in aquatic products. For the QuEChERS procedure, the pretreatment conditions, such as the extraction solvent and adsorbent species, were systematically optimized. The sample was extracted with 10 mL of 10% methanol acetonitrile solution (containing 0.1% formic acid), dehydrated, and centrifuged with sodium chloride and anhydrous magnesium sulfate. The supernatant was purified using a QuEChERS packing material consisting of 50 mg <i>N</i>-propylethylenediamine (PSA), 30 mg of graphitized carbon black (GCB), and 30 mg of neutral alumina (Al<sub>2</sub>O<sub>3</sub>), dried with nitrogen, and concentrated. The five HBQs were separated on a Waters ACQUITY UPLC BEH C<sub>18</sub> column (100 mm×2.1 mm, 1.7 μm) using 0.25% acetonitrile formate solution and 0.25% formic acid aqueous solution as the mobile phase under a gradient elution program and then detected using UPLC-MS/MS with negative electrospray ionization (ESI<sup>-</sup>) under multiple reaction monitoring (MRM) mode. Quantitative analysis was performed using a matrix-matched external standard method. The five HBQs achieved rapid separation within 6 min, indicating that the proposed method has a much shorter separation time compared with previous studies. The matrix effect was evaluated by establishing a matrix-matched calibration curve. The results showed that 2,5-dichloro-1,4-benzoquinone (2,5-DCBQ) presented a matrix-enhancing effect, whereas the other HBQs displayed matrix-inhibiting effects. In particular, tetrachlorobenzoquinone (TCBQ) exhibited strong inhibitory effects. 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引用次数: 0

摘要

卤苯醌是一种新兴的氯化消毒副产物,由于在处理后的自来水、娱乐用水等中经常检测到卤苯醌,越来越受到人们的关注。这些化合物主要是在使用氯、氯胺和二氧化氯作为消毒剂的水处理过程中产生的,并且比受调节的dbp(如三卤甲烷和卤乙酸)显示出更大的毒性作用。hbq被认为是潜在的膀胱致癌物质,对神经系统有害。此外,它们可以发挥基因毒性作用,并对DNA和蛋白质造成氧化损伤。由于近年来公共设施的消毒力度明显加大,预计水产品中乙型肝炎病毒感染的风险将会上升。因此,开发一种灵敏、准确的检测水产品中hbq的分析方法具有重要意义。气相色谱法、气相色谱-质谱法、电化学法、液相色谱法和液相色谱-串联质谱法等分析方法可用于鉴定和定量水中hbq。然而,据我们所知,目前还没有关于水产品中HBQ水平测定的报告。此外,由于水产品的复杂基质效应,预处理对HBQ的测定至关重要。本文建立了一种基于QuEChERS技术和超高效液相色谱-串联质谱(UPLC-MS/MS)同时测定水产品中5种hbq的灵敏、准确的方法。对QuEChERS法的萃取溶剂、吸附剂种类等预处理条件进行了系统优化。样品用10 mL 10%甲醇乙腈溶液(含0.1%甲酸)提取,脱水后用氯化钠和无水硫酸镁离心。用QuEChERS填料对上清液进行纯化,该填料由50 mg n -丙二胺(PSA)、30 mg石墨化炭黑(GCB)和30 mg中性氧化铝(Al2O3)组成,用氮气干燥并浓缩。采用Waters ACQUITY UPLC BEH C18色谱柱(100 mm×2.1 mm, 1.7 μm),以0.25%甲酸乙腈溶液和0.25%甲酸水溶液为流动相,梯度洗脱,采用UPLC-MS/MS +负电喷雾电离(ESI-)多反应监测(MRM)模式进行分离。采用矩阵匹配外标法进行定量分析。5个hbq在6 min内实现了快速分离,表明该方法的分离时间较以往的研究要短得多。通过建立矩阵匹配校准曲线来评价矩阵效应。结果表明,2,5-二氯-1,4-苯醌(2,5- dcbq)具有基质增强作用,而其他hbq具有基质抑制作用。其中四氯苯醌(TCBQ)表现出较强的抑制作用。在优化的实验条件下,5种hbq在1.0 ~ 50.0 μg/L范围内呈良好的线性关系,相关系数(r)≥0.9992。方法检出限为0.15 ~ 0.8 μg/kg,加样回收率为85.9% ~ 116.5%。相对标准偏差为1.4% ~ 8.2%,重复性好。该方法成功应用于实际样品检测中,在草鱼中检测出2,6-二氯-3-甲基-1,4-苯醌(2,6- dcmbq)。该方法简便、灵敏、准确,适用于水产品中5种hbq的同时测定。该方法可为食品样品中微量hbq的常规监测提供可靠参考。
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[Rapid determination of five halobenzoquinones in aquatic products by QuEChERS-ultra performance liquid chromatography-tandem mass spectrometry].

Halobenzoquinones (HBQs), which are emerging chlorinated disinfection byproducts (DBPs), have attracted increasing attention because they are frequently detected in treated tap water, entrainment water, etc. These compounds are mainly generated during the water treatment process using chlorine, chloramine, and chlorine dioxide as disinfectants, and display more toxic effects than regulated DBPs, such as trihalomethane and haloacetic acid. HBQs have been recognized as potential bladder carcinogens and are harmful to the nervous system. Additionally, they can exert genotoxic effects and cause oxidative damage to DNA and proteins. The risk of HBQs in aquatic products is expected to rise because the disinfection of public facilities has significantly increased in recent years. Therefore, developing a sensitive and accurate analytical method to detect HBQs in aquatic products is of great importance. Several analytical methods, including gas chromatography, gas chromatography-mass spectrometry, electrochemical methods, liquid chromatography, and liquid chromatography-tandem mass spectrometry, can be used to identify and quantify HBQs in water. However, to the best of our knowledge, no reports on the determination of HBQ levels in aquatic products are yet available. Further, pretreatment is essential for HBQ determination because of the complex matrix effects of aquatic products. Herein, a sensitive and accurate method based on the QuEChERS technique coupled with ultra performance liquid chromatography-tandem mass spectrometry (UPLC-MS/MS) was developed for the simultaneous determination of five HBQs in aquatic products. For the QuEChERS procedure, the pretreatment conditions, such as the extraction solvent and adsorbent species, were systematically optimized. The sample was extracted with 10 mL of 10% methanol acetonitrile solution (containing 0.1% formic acid), dehydrated, and centrifuged with sodium chloride and anhydrous magnesium sulfate. The supernatant was purified using a QuEChERS packing material consisting of 50 mg N-propylethylenediamine (PSA), 30 mg of graphitized carbon black (GCB), and 30 mg of neutral alumina (Al2O3), dried with nitrogen, and concentrated. The five HBQs were separated on a Waters ACQUITY UPLC BEH C18 column (100 mm×2.1 mm, 1.7 μm) using 0.25% acetonitrile formate solution and 0.25% formic acid aqueous solution as the mobile phase under a gradient elution program and then detected using UPLC-MS/MS with negative electrospray ionization (ESI-) under multiple reaction monitoring (MRM) mode. Quantitative analysis was performed using a matrix-matched external standard method. The five HBQs achieved rapid separation within 6 min, indicating that the proposed method has a much shorter separation time compared with previous studies. The matrix effect was evaluated by establishing a matrix-matched calibration curve. The results showed that 2,5-dichloro-1,4-benzoquinone (2,5-DCBQ) presented a matrix-enhancing effect, whereas the other HBQs displayed matrix-inhibiting effects. In particular, tetrachlorobenzoquinone (TCBQ) exhibited strong inhibitory effects. Under the optimized experimental conditions, the five HBQs demonstrated good linear relationships in the range of 1.0-50.0 μg/L, with correlation coefficients (r)≥0.9992. The detection limits of the method were 0.15-0.8 μg/kg, and the recoveries of the target compounds were 85.9%-116.5%. The relative standard deviations were 1.4%-8.2%, which indicates good reproducibility. The proposed method was successfully applied to actual sample detection, and 2,6-dichloro-3-methyl-1,4-benzoquinone (2,6-DCMBQ) was detected in grass carp. The proposed method is convenient, sensitive, accurate, and suitable for the simultaneous determination of five HBQs in aquatic products. Moreover, the developed method provides a reliable reference for the routine monitoring of trace HBQs in food samples.

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来源期刊
色谱
色谱 CHEMISTRY, ANALYTICAL-
CiteScore
1.30
自引率
42.90%
发文量
7198
期刊介绍: "Chinese Journal of Chromatography" mainly reports the basic research results of chromatography, important application results of chromatography and its interdisciplinary subjects and their progress, including the application of new methods, new technologies, and new instruments in various fields, the research and development of chromatography instruments and components, instrument analysis teaching research, etc. It is suitable for researchers engaged in chromatography basic and application technology research in scientific research institutes, master and doctoral students in chromatography and related disciplines, grassroots researchers in the field of analysis and testing, and relevant personnel in chromatography instrument development and operation units. The journal has columns such as special planning, focus, perspective, research express, research paper, monograph and review, micro review, technology and application, and teaching research.
期刊最新文献
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