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一次性聚醚醚酮固相微萃取-传输模式装置,用于实时串联质谱直接分析快速筛选和定量口腔液和尿液中的滥用药物。

Single-Use Poly(etheretherketone) Solid-Phase Microextraction-Transmission Mode Devices for Rapid Screening and Quantitation of Drugs of Abuse in Oral Fluid and Urine via Direct Analysis in Real-Time Tandem Mass Spectrometry.

机构信息

Department of Chemistry, University of Waterloo , Waterloo, Ontario, Canada N2L 3G1.

出版信息

Anal Chem. 2018 Jan 2;90(1):952-960. doi: 10.1021/acs.analchem.7b04005. Epub 2017 Dec 12.

Abstract

The analysis of oral fluid (OF) and urine samples to detect drug consumption has garnered considerable attention as alternative biomatrices. Efficient implementation of microextraction and ambient ionization technologies for rapid detection of target compounds in such biomatrices creates a need for biocompatible devices which can be implemented for in vivo sampling and easily interfaced with mass spectrometry (MS) analyzers. This study introduces a novel solid-phase microextraction-transmission mode (SPME-TM) device made of poly(etheretherketone) (PEEK) mesh that can rapidly detect prohibited substances in biofluids via direct analysis in real-time tandem MS (DART-MS/MS). PEEK mesh was selected due to its biocompatibility, excellent resistance to various organic solvents, and its ability to withstand relatively high temperatures (≤350 °C). The meshes were coated with hydrophilic-lipophilic-balance particle-poly(acrylonitrile) (HLB-PAN) slurry. The robustness of the coated meshes was tested by performing rapid vortex agitation (≥3200 rpm) in LC/MS-grade solvents and by exposing them to the DART source jet stream at typical operational temperatures (∼250-350 °C). PEEK SPME-TM devices proved to be robust and were therefore used to perform ex vivo analysis of drugs of abuse spiked in urine and OF samples. Excellent results were obtained for all analytes under study; furthermore, the tests yielded satisfactory limits of quantitation (median, ∼0.5 ng mL), linearity (≥0.99), and accuracy (80-120%) over the evaluated range (0.5-200 ng mL). This research highlights plastic SPME-TM's potential usefulness as a method for rapidly screening for prohibited substances in on-site/in vivo scenarios, such as roadside or workplace drug testing, antidoping controls, and pain management programs.

摘要

分析口腔液 (OF) 和尿液样本以检测药物消耗已引起相当大的关注,因为它们是替代生物基质。为了在这些生物基质中快速检测目标化合物,需要高效地实施微萃取和环境电离技术,这就需要能够用于体内采样且易于与质谱 (MS) 分析仪接口的生物相容性装置。本研究介绍了一种由聚醚醚酮 (PEEK) 网制成的新型固相微萃取传输模式 (SPME-TM) 装置,该装置可通过实时直接分析串联质谱 (DART-MS/MS) 快速检测生物流体中的违禁物质。选择 PEEK 网是因为它具有生物相容性、对各种有机溶剂的优异抗性以及能够承受相对较高温度 (≤350°C)。将亲水-亲脂平衡颗粒-聚 (丙烯腈) (HLB-PAN) 浆料涂覆在网眼上。通过在 LC/MS 级溶剂中进行快速涡旋搅拌 (≥3200 rpm) 以及将其暴露在典型操作温度 (∼250-350°C) 的 DART 源射流中来测试涂覆网的坚固性。PEEK SPME-TM 装置被证明是坚固的,因此可用于对尿液和 OF 样本中添加的滥用药物进行离体分析。所有研究分析物均获得了出色的结果;此外,在评估的范围内 (0.5-200 ng mL),测试结果还获得了令人满意的定量下限 (中位数,∼0.5 ng mL)、线性 (≥0.99) 和准确度 (80-120%)。这项研究强调了塑料 SPME-TM 作为一种快速筛选现场/体内违禁物质的方法的潜在用途,例如路边或工作场所药物测试、反兴奋剂控制和疼痛管理计划。

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