利用色谱法和质谱法鉴定 N-(2-羟基苄基)-2-(二甲氧基苯基)乙胺(NBOH 系列)的热稳定位置异构体。

IF 2.6 3区 医学 Q2 BIOCHEMICAL RESEARCH METHODS
Olga V. Kupriyanova, Vadim A. Shevyrin, Raziya G. Sadykova, Yuri M. Shafran
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引用次数: 0

摘要

在 N-((2-取代)苄基)苯乙胺中,N-(2-羟基苄基)苯乙胺是一种特殊类型的化合物,具有热稳定性,在使用气相色谱-质谱法(GC-MS)进行分析的过程中会发生降解。在法医和毒理学实验室常用的气相色谱-质谱法鉴定苯乙基片段苯环第 2 位和第 5 位含有甲氧基的合法管制化合物时,这可能会导致重大误差。以五种异构体 2-(二甲氧基苯基)-N-(2-羟基苄基)乙胺为例,研究表明它们与三氟乙酸酐衍生(与 N-(2-甲氧基苄基)-、N-(2-氟苄基)-、N-(2-氯苄基)-、N-(2-溴苄基)-和 N-(2-甲氧基苄基)-三氟乙酸酐衍生的情况相同)后,可在苯环的第 2 和第 5 位发现甲氧基基团、N-(2-甲氧基苄基)-、N-(2-氟苄基)-、N-(2-氯苄基)- 和 N-(2-溴苄基)取代苯乙胺[分别为 NBOMe、NBF、NBCl 和 NBBr]系列)的结果是,一个系列中的每种位置异构体只有一种产物,即 N-单取代衍生物,这使得用 GC-MS 方法可靠地鉴定每种化合物成为可能。此外,还提出了在 25 分钟内充分分离 NBOH 系列中这些位置异构体的三氟乙酰基衍生物的色谱条件,这对于从事麻醉药品和新精神活性物质测定的法医实验室的分析工作非常重要。作为一种替代方法,还提出了一种无需衍生化的高效液相色谱-高分辨质谱法(HPLC-HRMS)鉴定 NBOH 系列位置异构体的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Identification of thermolabile positional isomers of N-(2-hydroxybenzyl)-2-(dimethoxyphenyl)ethanamines (NBOH series) using chromatography and mass spectrometry methods

Identification of thermolabile positional isomers of N-(2-hydroxybenzyl)-2-(dimethoxyphenyl)ethanamines (NBOH series) using chromatography and mass spectrometry methods

Among N-((2-substituted)benzyl)phenylethanamines, N-(2-hydroxybenzyl)phenylethanamines are a special type of compounds which are thermolabile and degrade in the course of analysis by means of gas chromatography–mass spectrometry (GC–MS). This can lead to substantial errors, in the identification of legally controlled compounds of this series containing methoxy groups at positions 2 and 5 of the benzene ring of the phenylethyl fragment by GC–MS, which is commonly used in forensic and toxicological laboratories. Exemplified by the five isomeric 2-(dimethoxyphenyl)-N-(2-hydroxybenzyl)ethanamines, it was shown that their derivatization with trifluoroacetic anhydride (same as in the case of the N-(2-methoxybenzyl)-, N-(2-fluorobenzyl)-, N-(2-chlorobenzyl)-, and N-(2-bromobenzyl)substitutes phenylethanamines [NBOMe, NBF, NBCl, and NBBr, respectively] series described earlier) results in only one product, N-monosubstituted derivative, for each positional isomer within a series, which makes it possible to reliably identify each compound by the GC–MS method. In addition, chromatographic conditions for sufficient separation of trifluoroacetyl derivatives of these positional isomers of the NBOH series in 25 min are proposed, which is an important aspect for analysis in forensic laboratories engaged in the determination of narcotic drugs and new psychoactive substances. As an alternative approach, a method for identifying positional isomers of the NBOH series by the high-performance liquid chromatography–high-resolution mass spectrometry (HPLC-HRMS) method without derivatization is proposed.

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来源期刊
Drug Testing and Analysis
Drug Testing and Analysis BIOCHEMICAL RESEARCH METHODS-CHEMISTRY, ANALYTICAL
CiteScore
5.90
自引率
24.10%
发文量
191
审稿时长
2.3 months
期刊介绍: As the incidence of drugs escalates in 21st century living, their detection and analysis have become increasingly important. Sport, the workplace, crime investigation, homeland security, the pharmaceutical industry and the environment are just some of the high profile arenas in which analytical testing has provided an important investigative tool for uncovering the presence of extraneous substances. In addition to the usual publishing fare of primary research articles, case reports and letters, Drug Testing and Analysis offers a unique combination of; ‘How to’ material such as ‘Tutorials’ and ‘Reviews’, Speculative pieces (‘Commentaries’ and ‘Perspectives'', providing a broader scientific and social context to the aspects of analytical testing), ‘Annual banned substance reviews’ (delivering a critical evaluation of the methods used in the characterization of established and newly outlawed compounds). Rather than focus on the application of a single technique, Drug Testing and Analysis employs a unique multidisciplinary approach to the field of controversial compound determination. Papers discussing chromatography, mass spectrometry, immunological approaches, 1D/2D gel electrophoresis, to name just a few select methods, are welcomed where their application is related to any of the six key topics listed below.
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