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首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Screening of seized cocaine samples using electrophoresis microchips with integrated contactless conductivity detection
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Screening of seized cocaine samples using electrophoresis microchips with integrated contactless conductivity detection

机译:使用电泳微芯片具有集成非接触式电导检测的筛选可卡因样品

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摘要

Abstract This study describes the development of a new analytical method for the separation and detection of cocaine (COC) and its adulterants, or cutting agents, using microchip electrophoresis (ME) devices coupled with capacitively coupled contactless conductivity detection (C 4 D). All the experiments were carried out using a glass commercial ME device containing two pairs of integrated sensing electrodes. The running buffer composed of 20 mmol/L amino‐2‐(hydroxymethyl) propane‐1,3‐diol and 10 mmol/L 3,4‐dimethoxycinnamic acid provided the best separation conditions for COC and its adulterants with baseline resolution ( R ??1.6), separation efficiencies ranging from (2.9 ± 0.1) to (3.2 ± 0.2) × 10 5 plates/m, and estimated LOD values between 40 and 150 μmol/L. The quantification of COC was successfully performed in four samples seized by the Brazilian Federal Police Department and all predicted values agree with values estimated by the reference method. Some other interfering species were detected in the seized samples during the screening procedure on ME–C 4 D devices. While lidocaine was detected in sample 3, the presence of levamisole was observed in samples 2 and 4. However, their concentrations were estimated to be below the LOQ. ME–C 4 D devices have proved to be quite efficient for the identification and quantification of COC with errors lower than 10% when compared to the data obtained by a reference method. The approach herein reported offers great potential to be used for on‐site COC screening in seized samples.
机译:摘要本研究描述了使用与电容耦合的非接触式电导检测(C 4 D)联接的微芯片电泳(C 4 D)的微芯片电泳(C 4 D)的微芯片电泳装置(C 4 D)的微芯片电泳(C 4 D)的分离和掺杂剂分离和掺杂剂或切割剂的新分析方法的开发。所有实验都是使用含有两对集成传感电极的玻璃商业ME装置进行。由20mmol / L氨基-2-(羟甲基)丙烷-1,3-二醇和10mmol / L 3,4-二甲氧基酸组成的运行缓冲液为COC及其掺杂剂具有基线分辨率的最佳分离条件(R? &?1.6),分离效率从(2.9±0.1)到(3.2±0.2)×10 5平板/ m,估计的LOD值在40和150μmol/ L之间。通过巴西联邦警察局扣押的四个样本成功进行了COC的量化,所有预测值都同意参考方法估计的价值。在ME-C 4 D器件的筛选程序期间在所获取的样品中检测到一些其他干扰物种。虽然在样品3中检测到Lidocaine,但在样品2和4中观察到左旋胺的存在。然而,它们的浓度估计在LOQ以下。与通过参考方法获得的数据相比,ME-C 4 D器件已经证明对COC的识别和定量具有低于10%的误差。本文的方法报告称,在查获的样品中提供了用于现场COC筛选的潜力。

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