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Development of an easy and rapid analytical method for the extraction and preconcentration of chloroquine phosphate from human biofluids prior to GC?MS analysis

机译:在GC之前从人生物流体磷酸氯喹磷酸盐提取和预浓缩的简便和快速分析方法的发展

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A vortex assisted spraying based fine droplet formation liquid phase microextraction (VA-SFDF-LPME) method was developed to determine chloroquine phosphate at trace levels in human serum, urine and saliva samples by gas chromatography?mass spectrometry (GC?MS) with single quadrupole mass analyzer. In the first part, several liquid phase microextraction (LPME) and magnetic solid phase extraction (MSPE) methods were compared to each other in order to observe their extraction ability for the analyte. VA-SFDF-LPME method was selected as an efficient and easy extraction method due to its higher extraction efficiency. Optimization studies were carried out for the parameters such as extraction solvent type, sodium hydroxide volume/concentration, sample volume, spraying number and mixing type/period. Tukey?s method based on post hoc test was applied to all experimental data for the selection of optimum values. Optimum extraction parameters were found to be 12 mL initial sample volume, two sprays of dichloromethane, 0.75 mL of 60 g/kg sodium hydroxide and 15 s vortex. Under the optimum conditions, limit of detection and quantification (LOD and LOQ) were calculated as 2.8 and 9.2 ?g/kg, respectively. Detection power of the GC?MS system was increased by approximately 317 folds with the developed extraction/preconcentration method. The applicability and accuracy of the proposed method was evaluated by spiking experiments and percent recovery results for human urine, serum and saliva samples were found in the range of 90.9% and 114.0% with low standard deviation values (1.9?9.4).
机译:建立了一种基于涡流辅助喷雾的细液滴形成液相微萃取(VA-SFDF-LPME)方法,用气相色谱法测定人血清、尿液和唾液样品中痕量磷酸氯喹?使用单四极质谱仪进行质谱分析(GC?MS)。在第一部分中,比较了几种液相微萃取(LPME)和磁固相萃取(MSPE)方法,以观察它们对分析物的萃取能力。VA-SFDF-LPME法提取效率较高,是一种高效、简便的提取方法。对萃取溶剂类型、氢氧化钠体积/浓度、样品体积、喷雾次数和混合类型/周期等参数进行了优化研究。塔基?基于事后检验的s方法应用于所有实验数据,以选择最佳值。最佳提取参数为12 mL初始样品体积、两次二氯甲烷喷雾、0.75 mL 60 g/kg氢氧化钠和15 s旋涡。在最佳条件下,检测限和定量限(LOD和LOQ)计算为2.8和9.2?g/kg。GC的探测能力?使用开发的萃取/预浓缩方法,MS系统增加了约317倍。通过加标实验评估了该方法的适用性和准确性,发现人类尿液、血清和唾液样本的回收率在90.9%和114.0%之间,标准偏差值较低(1.9?9.4)。

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