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高通量形式的固相微萃取自动化及其在药物分析中的应用。

Automation of solid-phase microextraction in high-throughput format and applications to drug analysis.

作者信息

Vuckovic Dajana, Cudjoe Erasmus, Hein Dietmar, Pawliszyn Janusz

机构信息

Department of Chemistry, University of Waterloo, Waterloo, Ontario, Canada.

出版信息

Anal Chem. 2008 Sep 15;80(18):6870-80. doi: 10.1021/ac800936r. Epub 2008 Aug 20.

DOI:10.1021/ac800936r
PMID:18712934
Abstract

The automation of solid-phase microextraction (SPME) coupled to liquid chromatography-tandem mass spectrometry (LC-MS/MS) was accomplished using a 96 multiwell plate format, a SPME multifiber device, two orbital shakers, and a three-arm robotic system. Extensive optimization of the proposed setup was performed including coating selection, optimization of the fiber coating procedure, confirmation of uniform agitation in all wells, and the selection of the optimal calibration method. The system allows the use of pre-equilibrium extraction times with no deterioration in method precision due to reproducible timing of extraction and desorption steps and reproducible positioning of all fibers within the wells. The applicability of the system for the extraction of several common drugs is demonstrated. The optimized multifiber SPME-LC-MS/MS was subsequently fully validated for the high-throughput analysis of diazepam, lorazepam, nordiazepam, and oxazepam in human whole blood. The proposed method allowed the automated sample preparation of 96 samples in 100 min, which represents the highest throughput of any SPME technique to date, while achieving excellent accuracy (87-113%), precision (<or=20% RSD), and sensitivity (limit of quantitation 4 ng/mL). Automated SPME provides unique advantages over automated solid-phase extraction (SPE) including lower cost, the ability to quantitatively determine free and total drug concentrations in a single biofluid sample, and the ability to directly process whole blood samples with absolutely no sample pretreatment required.

摘要

使用96孔板形式、固相微萃取(SPME)多纤维装置、两个轨道振荡器和一个三臂机器人系统实现了固相微萃取(SPME)与液相色谱-串联质谱(LC-MS/MS)联用的自动化。对所提出的装置进行了广泛优化,包括涂层选择、纤维涂层程序的优化、确认所有孔中搅拌均匀以及选择最佳校准方法。该系统允许使用预平衡萃取时间,由于萃取和解吸步骤的定时可重现以及所有纤维在孔内的定位可重现,方法精密度不会降低。证明了该系统对几种常见药物萃取的适用性。随后,经过优化的多纤维SPME-LC-MS/MS针对人全血中地西泮、劳拉西泮、去甲地西泮和奥沙西泮的高通量分析进行了全面验证。所提出的方法能够在100分钟内自动制备96个样品,这是迄今为止任何SPME技术中最高的通量,同时实现了出色的准确度(87 - 113%)、精密度(相对标准偏差≤20%)和灵敏度(定量限4 ng/mL)。与自动固相萃取(SPE)相比,自动化SPME具有独特优势,包括成本更低、能够在单个生物流体样品中定量测定游离和总药物浓度,以及能够直接处理全血样品而完全无需样品预处理。

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