首页> 美国卫生研究院文献>The Journal of Automatic Chemistry >Multiresidue Pesticides Analysis of Vegetables in Vietnam by Ultrahigh-Performance Liquid Chromatography in Combination with High-Resolution Mass Spectrometry (UPLC-Orbitrap MS)
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Multiresidue Pesticides Analysis of Vegetables in Vietnam by Ultrahigh-Performance Liquid Chromatography in Combination with High-Resolution Mass Spectrometry (UPLC-Orbitrap MS)

机译:高效液相色谱结合高分辨率质谱法(UPLC-Orbitrap MS)对越南蔬菜中的多残留农药进行分析

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摘要

An ultrahigh-performance liquid chromatography in combination with high-resolution mass spectrometry Thermo Q-Extractive Focus Orbitrap MS has been introduced for analysis of multiclass pesticides in vegetable samples collected in Hanoi, Vietnam. Multiclass pesticides were separated on the Thermo Hypersil Gold PFP column utilizing a gradient of the mobile phase consisting of 5 mM ammonium formate, 0.1% formic acid in deionized water, and methanol. The target analytes were detected in the full-scan mode on Thermo Scientific Q-Exactive Focus Orbitrap MS for quantitation at the optimum operating conditions. These conditions included, but not limit to, the resolution of 70000 at the full width at half maximum in both positive and negative mode, mass range from 80 to 1000 m/z, and optimized parameters for the heated electrospray ionization source. The identification of the analytes in real samples was based on retention times, mass to charge ratios, mass accuracies, and MS/MS spectra at the confirmation mode with the inclusion list of target analytes. The mass accuracies of target analytes were from −4.14 ppm (dinotefuran) to 1.42 ppm (cinosulfuron) in the neat solvent and from −3.91 ppm (spinosad D) to 1.29 ppm (cinosulfuron) in the matrix-matched solution. Target analytes in the vegetable-based matrix were extracted by the QuEChERS method. Some critical parameters of the analytical method such as linearity, repeatability, limit of detection, and limit of quantitation have been evaluated and implemented. Excellent LOD and LOQ of the developed method were achieved at the range of 0.04–0.85 and 0.13–2.9 μg·kg−1, respectively. Intraday and interday repeatability of the analytical signal (peak area, n=6) of the developed method were below 3% and 10%, correspondingly. The matrix effect, extraction recovery, and overall recovery were fully investigated by spiking experiments. Experimental results demonstrated that the ionization suppression or enhancement was the main contribution on the overall recoveries of target analytes. Finally, the in-house validated method was applied to pesticides screening in vegetables samples in local villages in Hanoi, Vietnam. The concentrations of all target analytes were below limit of quantitation and lower than US-FDA or EU maximum residue levels.
机译:引入了超高效液相色谱仪与高分辨率质谱法Thermo Q-Extractive Focus Orbitrap MS相结合,用于分析在越南河内采集的蔬菜样品中的多种农药。在Thermo Hypersilsil Gold PFP色谱柱上分离多种农药,使用的流动相梯度为5 mM甲酸铵,去离子水中的0.1%甲酸和甲醇。在Thermo Scientific Q-Exactive Focus Orbitrap MS上以全扫描模式检测目标分析物,以在最佳操作条件下进行定量。这些条件包括但不限于在正负两种模式下半峰全宽处的分辨率为70000,质量范围为80至1000μm/ z,以及加热的电喷雾电离源的优化参数。真实样品中分析物的鉴定是基于保留时间,质荷比,质量准确度和MS / MS光谱的确认模式,其中包括目标分析物列表。在纯溶剂中,目标分析物的质量准确度为-4.14 ppm(二甲呋喃)至1.42 ppm(cinosulfuron),在与基质匹配的溶液中,其结果为−3.91 ppm(spinosad D)至1.29 ppm(cinosulfuron)。通过QuEChERS方法提取蔬菜基质中的目标分析物。分析方法的一些关键参数,如线性,可重复性,检测限和定量限已得到评估和实施。该方法的LOD和LOQ分别在0.04–0.85和0.13–2.9μg·kg -1 的范围内。所开发方法的分析信号的日间和日间重复性(峰面积,n = 6)分别低于3%和10%。通过加标实验充分研究了基质效应,提取回收率和总回收率。实验结果表明,电离抑制或增强是对目标分析物总体回收率的主要贡献。最后,将内部验证的方法应用于越南河内当地村庄蔬菜样品中的农药筛查。所有目标分析物的浓度均低于定量极限,并低于US-FDA或EU最大残留水平。

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