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采用稀释进样和真空绝热探针加热电喷雾电离的超高效液相色谱-四极杆飞行时间质谱法进行尿液药物筛查。

UHPLC-QTOFMS Urine Drug Screening With Dilute-and-Shoot Sample Preparation and Vacuum-Insulated Probe-Heated Electrospray Ionization.

作者信息

Sundström Mira, Kriikku Pirkko, Ojanperä Ilkka, Baessmann Carsten, Pelander Anna

机构信息

Forensic Chemistry Unit, Finnish Institute for Health and Welfare (THL), Helsinki, Finland.

Department of Forensic Medicine, University of Helsinki, Helsinki, Finland.

出版信息

Drug Test Anal. 2025 Aug;17(8):1208-1218. doi: 10.1002/dta.3830. Epub 2024 Nov 12.

Abstract

We developed a method for comprehensive urine drug screening by applying dilute-and-shoot extraction and vacuum-insulated probe-heated electrospray ionization with ultra-high performance liquid chromatography high-resolution quadrupole time-of-flight mass spectrometry (DS-UHPLC-VIP-HESI-QTOFMS). The method involved five-fold post-hydrolysis dilution of urine samples and chromatography on a C18 UHPLC column prior to QTOFMS analysis. The recently introduced VIP-HESI ion source was chosen due to its enhanced ionization efficiency and compatibility with UHPLC-QTOFMS. Extensive data was acquired in positive ion mode with a low collision energy (7 eV) and an elevated collision energy (30 eV), using the broadband collision-induced dissociation data acquisition scan mode that continuously generated high-resolution and accurate mass for parent and fragment qualifier ions, and parent ion isotopic patterns. Compound identification was performed against an in-house database with 1263 compound entries, using an automated post-run reverse target database search with preset identification criteria. Method validation with 56 different drugs showed acceptable results for the limit of identification (median 5 ng/mL), matrix effects (70-130%), repeatability of retention times (< 1%), mass accuracy (< 1 mDa), as well as for specificity and stability. As compared with an established UHPLC-QTOFMS method relying on solid-phase extraction and conventional electrospray ionization, DS-UHPLC-VIP-HESI-QTOFMS produced comparable results from authentic clinical urine samples for most drugs, but showed clearly improved detectability for pregabalin, gabapentin, and ritalinic acid. We anticipate that the new method will be a step forward for laboratories performing routine urine drug screening due to its fast turnaround time, reduced manual workload, cost efficiency, and broad substance coverage.

摘要

我们开发了一种用于全面尿液药物筛查的方法,该方法采用稀释进样萃取和真空绝热探针加热电喷雾电离,并结合超高效液相色谱高分辨率四极杆飞行时间质谱(DS-UHPLC-VIP-HESI-QTOFMS)。该方法包括对尿液样本进行五倍水解后稀释,并在进行QTOFMS分析之前在C18超高效液相色谱柱上进行色谱分离。之所以选择最近推出的VIP-HESI离子源,是因为其具有更高的电离效率以及与UHPLC-QTOFMS的兼容性。在正离子模式下,使用宽带碰撞诱导解离数据采集扫描模式,以低碰撞能量(7 eV)和高碰撞能量(30 eV)采集大量数据,该模式可连续生成母离子和碎片定性离子以及母离子同位素模式的高分辨率和精确质量数据。使用预设的鉴定标准,通过自动运行后反向目标数据库搜索,针对一个包含1263个化合物条目的内部数据库进行化合物鉴定。对56种不同药物进行的方法验证显示,在鉴定限(中位数为5 ng/mL)、基质效应(70 - 130%)、保留时间重复性(< 1%)、质量准确度(< 1 mDa)以及特异性和稳定性方面,结果均可接受。与一种依赖固相萃取和传统电喷雾电离的既定UHPLC-QTOFMS方法相比,DS-UHPLC-VIP-HESI-QTOFMS对大多数药物的真实临床尿液样本产生了可比的结果,但对普瑞巴林、加巴喷丁和利他林酸的检测能力有明显提高。我们预计,由于该新方法周转时间快、人工工作量减少、成本效益高且物质覆盖范围广,对于进行常规尿液药物筛查的实验室而言将是一大进步。

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