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利用可再生微流控装置实现多种精神药物的快速紫外监测。

Rapid ultraviolet monitoring of multiple psychotropic drugs with a renewable microfluidic device.

机构信息

Key Laboratory of Analytical Chemistry for Life Science (Ministry of Education of China), Department of Chemistry, Nanjing University, Nanjing 210093, PR China.

出版信息

Anal Chim Acta. 2010 Oct 29;679(1-2):1-6. doi: 10.1016/j.aca.2010.08.019. Epub 2010 Aug 21.

Abstract

A rapid method for sensitive ultraviolet detection of multiple psychotropic drugs in human plasma was developed on a low-cost and expediently fabricated hybrid microfluidic device. The device was composed of one fused-silica capillary with a sampling fracture, a poly(methyl methacrylate) board with four reservoirs, and a printed circuit board. At the optimal separation and detection conditions, the baseline separation of three kinds of psychotropic drugs including barbiturates (phenobarbital and barbital), benzodiazepines (nitrazepam, clonazepam, chlordiazepoxide, alprazolam and diazepam) and tricyclic antidepressant drugs (amitriptyline) was achieved within 200 s with separation efficiency up to 3.80 × 10(5) plates m(-1). The linear ranges for ultraviolet detection were from 2.0 to 1000.0 μg mL(-1) for chlordiazepoxide and 1.0 to 1000.0 μg mL(-1) for other seven drugs. Combining with solid-phase extraction, this novel protocol could successfully be used to screen naturally existing psychotropic drugs in a known human plasma sample. The minimum detectable concentration was down to 27 ng mL(-1) for phenobarbital spiked in plasma. This work provided a promising way to initially screen different psychotropic drugs with high resolution, rapid separation and low-cost.

摘要

一种在低成本和简便制作的混合微流控装置上快速灵敏检测人血浆中多种精神药物的方法被开发出来。该装置由一段带有取样口的熔融石英毛细管、一块带有四个储液器的聚甲基丙烯酸甲酯板和一块印刷电路板组成。在最佳分离和检测条件下,三种精神药物(包括巴比妥类(苯巴比妥和巴比妥)、苯二氮䓬类(硝西泮、氯硝西泮、地西泮、阿普唑仑和安定)和三环类抗抑郁药(阿米替林))可在 200s 内实现基线分离,分离效率高达 3.80×10(5) 板 m(-1)。对于地西泮,紫外检测的线性范围为 2.0 至 1000.0μg mL(-1),对于其他七种药物,线性范围为 1.0 至 1000.0μg mL(-1)。结合固相萃取,该新方案可成功用于筛选已知人血浆样品中天然存在的精神药物。对于在血浆中添加的苯巴比妥,最低检测浓度可低至 27ng mL(-1)。这项工作为高分辨率、快速分离和低成本初步筛选不同精神药物提供了一种有前途的方法。

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