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使用 H 定量 NMR 无对照品定量分析卡他酮类似物。

Quantification of Cathinone Analogues without Reference Standard Using H Quantitative NMR.

机构信息

School of Pharmacy, China Pharmaceutical University.

China Pharmaceutical University Joint Laboratory on Key Technologies of Narcotics Control, China National Narcotics Control Commission.

出版信息

Anal Sci. 2021 Nov 10;37(11):1577-1582. doi: 10.2116/analsci.21P048. Epub 2021 May 14.

Abstract

Synthetic cathinones are a type of new psychoactive substances (NPS) that have been seriously abused. Owing to the rapid variation in their structures, the absence of reference standards poses a challenge in quantitative investigations. In this study, a H quantitative nuclear magnetic resonance (H qNMR) method was established using maleic acid as the internal standard and the shared signal (i.e., the methylidyne hydrogen) on the parent synthetic cathinones structure as the quantitative peak. Taking 3-methoxy-2-(methylamino)-1-(4-methylphenyl)propan-1-one (mexedrone) as an example, this study optimized the acquisition parameters and conducted method validation, including an evaluation of the specificity, linearity, accuracy, precision, and robustness. Using this H qNMR method, the contents of mexedrone and its analogues, including 1-(3-chlorophenyl)-2-(ethylamino)-propan-1-one (3-CEC), 4-chloro-α-pyrroli-dinopropiophenone (4-Cl-α-PVP), 1-(3,4-methylenedioxy-phenyl)-2-propylamino-propan-1-one (propylone), and methcathinone, were obtained. The obtained results showed that the method was accurate, rapid, versatile, and can be used to address the qualitative and quantitative issues related to similar substances.

摘要

合成卡西酮是一种新的精神活性物质(NPS),已被严重滥用。由于其结构的快速变化,缺乏参考标准给定量研究带来了挑战。在这项研究中,建立了一种使用马来酸作为内标和母体合成卡西酮结构上的共享信号(即亚甲基氢)作为定量峰的 H 定量核磁共振(H qNMR)方法。以 3-甲氧基-2-(甲基氨基)-1-(4-甲基苯基)-1-丙酮(mexedrone)为例,本研究优化了采集参数并进行了方法验证,包括特异性、线性、准确性、精密度和稳健性的评估。使用这种 H qNMR 方法,可以获得 mexedrone 及其类似物,包括 1-(3-氯苯基)-2-(乙基氨基)-1-丙酮(3-CEC)、4-氯-α-吡咯并二氮丙基苯甲酮(4-Cl-α-PVP)、1-(3,4-亚甲二氧基苯基)-2-丙基氨基-1-丙酮(丙基酮)和甲卡西酮的含量。得到的结果表明,该方法准确、快速、通用,可用于解决类似物质的定性和定量问题。

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