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首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Microfluidic chip capillary electrophoresis coupled with electrochemiluminescence for enantioseparation of racemic drugs using central composite design optimization
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Microfluidic chip capillary electrophoresis coupled with electrochemiluminescence for enantioseparation of racemic drugs using central composite design optimization

机译:微流体芯片毛细管电泳与电化学发光相结合,用于使用中央复合设计优化对外消旋药物进行映的解性

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摘要

Optimization based on central composite design (CCD) for enantioseparation of anisodamine (AN), atenolol (AT), and metoprolol (ME) in human urine was developed using a microfluidic chip-CE device. Coupling the flexible and wide working range of microfluidic chip-CE device to CCD for chiral separation of AN, AT, and ME in human urine, a total of 15 experiments is needed for the optimization procedure as compared to 75 experiments using the normal one variable at a time optimization. The optimum conditions obtained are found to be more robust as shown by the curvature effects of the interaction factors. The developed microfluidic chip-CE-ECL system with adjustable dilution ratios has been validated by satisfactory recoveries (89.5-99% for six enanotiomers) in urine sample analysis. The working range (0.3-600 μM), repeatability (3.1-4.9% RSD for peak height and 4.0-5.2% RSD for peak area), and detection limit (0.3-0.6 μM) of the method developed are found to meet the requirements for bedside monitoring of AN, AT, and ME in patients under critical conditions. In summary, the hyphenation of CCD with the microfluidic chip-CE device is shown to offer a rapid means for optimizing the working conditions on simultaneous separation of three racemic drugs using the microfluidic chip-CE device developed.
机译:使用微流体芯片-CE装置开发了基于人尿中的茴香多胺(AN),阿替洛尔(AT)和富含托洛尔(ME)的中央复合设计(CCD)的优化。将微流体芯片-CE装置的柔性宽和宽的工作范围耦合到CCD,用于人类尿液中的手性分离,优化过程中总共需要15个实验,与使用正常的一个变量相比,优化程序相比在时间优化。发现所得最佳条件如相互作用因子的曲率效应所示更稳健。具有可调节稀释比的发育的微流体芯片-CE-ECL系统已经通过令人满意的回收率(六个浓缩剂的89.5-99%)验证尿液样本分析。找到工作范围(0.3-600μm),可重复性(峰值高度为4.0-5.2%RSD,峰面积为4.0-5.2%),并发现该方法的检测限(0.3-0.6μm)符合要求在临界条件下,患者患者床边监测。总之,CCD与微流体芯片CE器件的连锁症被示出为提供快速的方法,用于优化使用微流体芯片-CE装置同时分离三种外消旋药物的工作条件。

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