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通过产物离子电子电离质谱法对环状叔胺卡西酮衍生物进行鉴别

Differentiation of cyclic tertiary amine cathinone derivatives by product ion electron ionization mass spectrometry.

作者信息

Abiedalla Younis, Abdel-Hay Karim, DeRuiter Jack, Randall Clark C

机构信息

Department of Drug Discovery and Development, Harrison School of Pharmacy, Auburn University, Auburn, AL, 36849, USA.

Department of Medicinal Chemistry, Faculty of Pharmacy, Omar Al-Mukhtar University, El-Beida, Libya.

出版信息

Rapid Commun Mass Spectrom. 2016 Mar 30;30(6):763-72. doi: 10.1002/rcm.7491.

Abstract

RATIONALE

A number of synthetic cathinones (aminoketones, 'bath salts') are tertiary amines containing a cyclic amino group, most commonly pyrrolidine. These totally synthetic compounds can be prepared in a number of regioisomeric designer modifications and many of these can yield isomeric major fragment ions in electron ionization mass spectrometry (EI-MS).

METHODS

A series of regioisomeric cyclic tertiary amines were prepared and evaluated in EI-MS and MS/MS product ion experiments. The cyclic amines azetidine, pyrrolidine, piperidine and azepane were incorporated into a series of aminoketones related to the cathinone derivative drug of abuse known as MDPV. Deuterium labeling in both the cyclic amine and alkyl side chain allowed for the confirmation of the structure for the major product ions formed from the EI-MS iminium cation base peaks.

RESULTS

These iminium cation base peaks show characteristic product ion spectra which allow differentiation of the ring and side-chain portions of the structure. The small alkyl side chains favor ring fragmentation in the formation of the major product ions. The higher side-chain homologues appear to promote product ion formation by side-chain fragmentation. Both side-chain and ring fragmentation yield a mixture of product ions in the piperidine and azepane series.

CONCLUSIONS

Product ion fragmentation provides useful data for differentiation of cyclic tertiary amine iminium cations from cathinone derivative drugs of abuse. Regioisomeric iminium cations of equal mass yield characteristic product ions for the alkyl side-chain homologues of azetidine, pyrrolidine, piperidine and azepane cyclic amines.

摘要

原理

一些合成卡西酮(氨基酮,“浴盐”)是含有环状氨基的叔胺,最常见的是吡咯烷。这些完全合成的化合物可以通过多种区域异构体的设计修饰来制备,其中许多在电子电离质谱(EI-MS)中会产生异构体主要碎片离子。

方法

制备了一系列区域异构体环状叔胺,并在EI-MS和MS/MS产物离子实验中进行了评估。将氮杂环丁烷、吡咯烷、哌啶和氮杂环庚烷等环状胺引入到一系列与被称为MDPV的卡西酮衍生物滥用药物相关的氨基酮中。对环状胺和烷基侧链进行氘标记,以确认由EI-MS亚胺阳离子基峰形成的主要产物离子的结构。

结果

这些亚胺阳离子基峰显示出特征性的产物离子光谱,可用于区分结构的环部分和侧链部分。小的烷基侧链有利于在形成主要产物离子时发生环断裂。较高的侧链同系物似乎通过侧链断裂促进产物离子的形成。侧链和环断裂在哌啶和氮杂环庚烷系列中均产生产物离子混合物。

结论

产物离子断裂为区分来自卡西酮衍生物滥用药物的环状叔胺亚胺阳离子提供了有用的数据。等质量的区域异构体亚胺阳离子为氮杂环丁烷、吡咯烷、哌啶和氮杂环庚烷环状胺的烷基侧链同系物产生特征性产物离子。

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