Tseng Li-Ping, Lan Yung-Sheng, Lee Yung-Hung, Lee Yi-Cheng, Chou Yi-Cheng, Lee Hei-Hwa, Chang Mei-Ying, Liang Shih-Shin, Lin Yi-Ching
Department of Laboratory Medicine, Kaohsiung Medical University Hospital, Kaohsiung Medical University, #100, Tz-You 1st Road, Kaohsiung, 807, Taiwan, ROC.
Department of Photonics, National Sun Yat-Sen University, Kaohsiung, Taiwan.
Anal Sci. 2024 Aug;40(8):1397-1407. doi: 10.1007/s44211-024-00572-0. Epub 2024 Apr 22.
Analyzing new psychoactive substances (NPSs) in forensic laboratories present a formidable challenge globally. Within illicit drug analysis, gas chromatography-mass spectrometry (GC-MS) emerges as a robust analytical tool. This study endeavors to assess and compare peak resolution in the analysis of illicit drugs, specifically focusing on 21 synthetic cathinones, encompassing 9 cathinone isomers. Varied GC-MS operating conditions, including distinct GC-MS columns and thermal gradients, were systematically employed for the simultaneous analysis of these synthetic cathinones. The study utilized HP-1 nonpolar and HP-5MS low-bleed columns to achieve optimal analyte resolution through modulation of GC-MS oven conditions. Mass spectra were meticulously recorded within a mass-to-charge (m/z) range spanning from 40 to 500 in full scan mode. The data showed that the cathinone isomers slightly differed in retention times and mass spectra. The GC oven conditions affected the peak resolution for chromatographic separation even with the same column. The peak resolution improved using a slower thermal gradient heat speed with a prolonged analysis time. Conclusively, the interplay of GC columns and thermal gradients emerged as pivotal factors impacting peak resolution in the analysis of illicit drugs. These empirical insights contribute to a nuanced understanding of peak resolution dynamics and facilitate the identification of synthetic cathinones, including their isomers, in seized materials through the judicious application of GC-MS methodologies.
在全球范围内,法医实验室对新型精神活性物质(NPS)进行分析是一项艰巨的挑战。在非法药物分析中,气相色谱 - 质谱联用仪(GC-MS)是一种强大的分析工具。本研究旨在评估和比较非法药物分析中的峰分辨率,特别关注21种合成卡西酮,其中包括9种卡西酮异构体。系统地采用了各种GC-MS操作条件,包括不同的GC-MS色谱柱和温度梯度,用于同时分析这些合成卡西酮。该研究使用HP-1非极性柱和HP-5MS低流失柱,通过调节GC-MS柱温箱条件来实现最佳的分析物分辨率。在全扫描模式下,在质荷比(m/z)范围为40至500内精心记录质谱。数据表明,卡西酮异构体在保留时间和质谱上略有不同。即使使用相同的色谱柱,GC柱温箱条件也会影响色谱分离的峰分辨率。使用较慢的温度梯度升温速度并延长分析时间可提高峰分辨率。总之,GC色谱柱和温度梯度的相互作用是影响非法药物分析中峰分辨率的关键因素。这些经验见解有助于对峰分辨率动态有更细致的理解,并通过明智地应用GC-MS方法,促进在查获材料中鉴定合成卡西酮,包括其异构体。