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高空间分辨率基质辅助激光解吸/电离-离子阱飞行时间串联质谱成像技术描绘毛发中掺入药物的纵向和横向分布

High Spatial-Resolution Matrix-Assisted Laser Desorption/Ionization-Ion Trap-Time-of-Flight Tandem Mass Spectrometry Imaging for Depicting Longitudinal and Transverse Distribution of Drugs Incorporated into Hair.

机构信息

Forensic Science Laboratory, Osaka Prefectural Police Headquarters, 1-3-18 Hommachi, Chuo-ku, Osaka 541-0053, Japan.

Shimadzu Corporation, 1 Nishinokyo Kuwabara-cho, Nakagyo-ku, Kyoto 604-8511, Japan.

出版信息

Anal Chem. 2020 Apr 21;92(8):5821-5829. doi: 10.1021/acs.analchem.9b05401. Epub 2020 Apr 1.

Abstract

This study aims to achieve high spatial-resolution tandem mass spectrometry (MS/MS) imaging for depicting longitudinal and transverse distribution of drugs in hair, which can provide indispensable information for the proper interpretation of hair test results, including the mechanism of drug incorporation into hair. Two types of hair samples were obtained and analyzed: User's Hair, sampled from a volunteer who took an over-the-counter medicine containing methoxyphenamine (MOP), a nonregulated analogue of methamphetamine; and Soaked Hair, prepared by soaking blank hair in MOP solution. Longitudinal and transverse-sectioning of single hair shafts was accomplished by freeze-sectioning using customized microtomes. Vapor deposition of α-cyano-4-hydroxycinnamic acid provided the finest matrix layer (resolution <1 μm, 0.7-μm thickness), although it provided less effective ionization of MOP compared to aerosol spraying or a combination of both. Matrix-assisted laser desorption/ionization (MALDI)-ion trap (IT)-time-of-flight (TOF) MS/MS permitted the imaging of trace-level MOP in hair with a MS/MS window setting of ±0.02 Da and a spatial resolution setting at 5 or 10 μm. For Soaked Hair, localization of MOP in the peripheral part was clearly depicted, but no such biased distribution was observed in the transverse sections of User's Hair. MOP-positive bands generated corresponding to the time periods of MOP intake could be observed on the longitudinal sections of User's Hair. This method can provide forensically crucial information regarding hair analysis for drugs: drug incorporation mechanism into hair, discrimination of undesired surface contamination from endogenous incorporation of ingested drugs, and precise elucidation of drug-use history.

摘要

本研究旨在实现高空间分辨率串联质谱(MS/MS)成像,以描绘药物在头发中的纵向和横向分布,这可为正确解释头发检测结果提供不可或缺的信息,包括药物进入头发的机制。本研究获得并分析了两种类型的头发样本:使用者头发,取自一位志愿者,该志愿者服用了含有苯丙醇胺(MOP)的非管制类安非他命类似物的非处方药物;浸泡头发,通过将空白头发浸泡在 MOP 溶液中制备。通过使用定制的切片机进行冷冻切片,实现了单根头发轴的纵向和横向切片。尽管与气溶胶喷雾或两者的组合相比,α-氰基-4-羟基肉桂酸的蒸汽沉积提供了最精细的基质层(分辨率<1 μm,厚度 0.7-μm),但它对 MOP 的离子化效果较差。基质辅助激光解吸/电离(MALDI)-离子阱(IT)-飞行时间(TOF)MS/MS 允许在 MS/MS 窗口设置为±0.02 Da 和空间分辨率设置为 5 或 10 μm 的情况下对头发中的痕量 MOP 进行成像。对于浸泡头发,可以清楚地描绘 MOP 在周边部分的定位,但在使用者头发的横向切片中没有观察到这种有偏差的分布。可以在使用者头发的纵向切片上观察到与 MOP 摄入时间相对应的 MOP 阳性带。该方法可为药物的头发分析提供法医学上的关键信息:药物进入头发的机制、区分非期望的表面污染与摄入药物的内源性掺入,以及对药物使用史的精确阐明。

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