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基于改性壳聚糖膜净化的超高效液相色谱-四极杆/静电场轨道阱质谱法测定牛奶中5种兽药残留

[Determination of five veterinary drug residues in milk by ultra-high performance liquid chromatography-quadrupole/electrostatic field orbitrap mass spectrometry based on modified chitosan membrane purification].

作者信息

Pan Wang, Zhang Shen-Ping, Wang An-Qi, Hu Jun, Zhou Li-Hui

机构信息

School of Chemistry and Molecular Engineering, East China University of Science and Technology, Shanghai 200237, China.

Shanghai Institute of Quality Inspection and Technical Research, Key Laboratory of Milk and Dairy Products Detection and Monitoring Technology for State Market Regulation, Shanghai 200233, China.

出版信息

Se Pu. 2024 Aug;42(8):758-765. doi: 10.3724/SP.J.1123.2023.08001.

Abstract

Milk is an important consumer product with high nutritional value. The presence of veterinary drug residues in milk owing to the indiscriminate use of veterinary drugs may affect consumer health. In the mass spectrometric analysis of trace compounds, chromatographic co-eluting components easily interfere with the mass spectral signals obtained, affecting the accuracy of qualitative and quantitative analyses. Matrix purification is a promising method to reduce the matrix effect. Chitosan is a natural biopolymer with numerous active functional groups such as amino, acetyl, and hydroxyl groups; these groups can adsorb lipids through hydrophobic and electrostatic interactions. Chitosan also has the advantages of low production cost, stable chemical properties, and convenient modification. Novel chitosan-based materials are promising candidates for lipid purification. In this study, a chitosan membrane was modified with trimethoxyoctadecylsilane (C-CSM). C-CSM was prepared through one-step hydrolysis and used as a dispersive solid phase extraction (DSPE) adsorbent to purify the matrix during milk pretreatment. We combined C-CSM with ultra-high performance liquid chromatography-quadrupole/electrostatic field orbitrap mass spectrometry (UHPLC-Q/Exactive Orbitrap MS) to develop an effective method for the extraction and determination of ofloxacin, enrofloxacin, ciprofloxacin, diazepam, and metronidazole in milk. C-CSM was characterized using scanning electron microscopy, Fourier transform infrared spectroscopy, and water contact angle testing. The results indicated that the material has a rough surface and uniformly dense cross-section. The water contact angle of C-CSM was 104°, indicating its good hydrophobicity. The pretreatment conditions (extraction solvent, dosage of NaCl, extraction frequency, and dosage of C-CSM) that influenced the recoveries of the five veterinary drugs were investigated in detail. The optimal conditions were established as follows: 5% formic acid in acetonitrile, 1 g NaCl, extraction 1 time, 20 mg C-CSM. Separation was performed on a Hypersil GOLD VANQUISH column (100 mm×2.1 mm, 1.9 μm). The mobile phase consisted of 0.1% formic acid aqueous solution and 0.1% formic acid in acetonitrile, and was flowed at a rate of 0.3 mL/min. The sample injection volume was 1 μL, and the column temperature was maintained at 25 ℃. Mass spectrometric analysis was performed in positive electrospray ionization mode. To verify the necessity of the purification material, the matrix effect was investigated using the matrix-matched standard curve method. The use of C-CSM reduced the matrix effects of the five necessity drugs from the range of -22%-8.8% to the range of -13%-3.6%, indicating that C-CSM is a highly efficient DSPE material. Under optimal conditions, the developed method showed good linearities within the range of 0.5-100 μg/L, with correlation coefficients ()≥0.9970. The limits of detection(LODs) and quantification (LOQs) were 0.2 μg/L and 0.5 μg/L, respectively. To assess the accuracy and precision of the method, we prepared milk samples with three spiked levels (low, medium, and high). The recoveries of the five veterinary drugs were ranged from 79.5% to 115%, and the intra-day and inter-day relative standard deviations were 7.0%-13% (=6) and 1.3%-11% (=3), respectively. This study provides a simple, accurate, and reliable method for the rapid and simultaneous determination of the five veterinary drug residues in milk.

摘要

牛奶是一种具有高营养价值的重要消费产品。由于兽药的滥用,牛奶中兽药残留的存在可能会影响消费者健康。在痕量化合物的质谱分析中,色谱共洗脱组分容易干扰所获得的质谱信号,影响定性和定量分析的准确性。基质净化是一种有前景的减少基质效应的方法。壳聚糖是一种天然生物聚合物,具有众多活性官能团,如氨基、乙酰基和羟基;这些基团可通过疏水和静电相互作用吸附脂质。壳聚糖还具有生产成本低、化学性质稳定和改性方便等优点。新型壳聚糖基材料是脂质净化的有前途的候选材料。在本研究中,用三甲氧基十八烷基硅烷对壳聚糖膜进行改性(C-CSM)。C-CSM通过一步水解制备,并用作分散固相萃取(DSPE)吸附剂,用于牛奶预处理过程中的基质净化。我们将C-CSM与超高效液相色谱-四极杆/静电场轨道阱质谱联用(UHPLC-Q/Exactive Orbitrap MS),开发了一种有效测定牛奶中氧氟沙星、恩诺沙星、环丙沙星、地西泮和甲硝唑的提取和测定方法。使用扫描电子显微镜、傅里叶变换红外光谱和水接触角测试对C-CSM进行了表征。结果表明,该材料表面粗糙,横截面均匀致密。C-CSM的水接触角为104°,表明其具有良好的疏水性。详细研究了影响五种兽药回收率的预处理条件(萃取溶剂、NaCl用量、萃取次数和C-CSM用量)。确定的最佳条件如下:乙腈中5%的甲酸、1 g NaCl、萃取1次、20 mg C-CSM。在Hypersil GOLD VANQUISH柱(100 mm×2.1 mm,1.9 μm)上进行分离。流动相由0.1%甲酸水溶液和乙腈中0.1%的甲酸组成,流速为0.3 mL/min。进样体积为1 μL,柱温保持在25℃。质谱分析在正电喷雾电离模式下进行。为验证净化材料的必要性,采用基质匹配标准曲线法研究了基质效应。使用C-CSM将五种兽药的基质效应从-22%-8.8%的范围降低到-13%-3.6%的范围,表明C-CSM是一种高效的DSPE材料。在最佳条件下,所开发的方法在0.5-100 μg/L范围内具有良好的线性,相关系数()≥0.9970。检测限(LODs)和定量限(LOQs)分别为0.2 μg/L和0.5 μg/L。为评估该方法的准确性和精密度,我们制备了三种加标水平(低、中、高)的牛奶样品。五种兽药的回收率在79.5%至115%之间,日内和日间相对标准偏差分别为7.0%-13%(=6)和1.3%-11%(=3)。本研究为快速同时测定牛奶中五种兽药残留提供了一种简单、准确和可靠的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eae7/11292475/f6c773fedbba/cjc-42-08-758-img_1.jpg

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