Mikuma Toshiyasu, Iwata Yuko T, Miyaguchi Hajime, Kuwayama Kenji, Tsujikawa Kenji, Kanamori Tatsuyuki, Inoue Hiroyuki
National Research Institute of Police Science, 6-3-1, Kashiwanoha, Kashiwa, Chiba 277-0882, Japan.
National Research Institute of Police Science, 6-3-1, Kashiwanoha, Kashiwa, Chiba 277-0882, Japan.
Forensic Sci Int. 2015 Apr;249:59-65. doi: 10.1016/j.forsciint.2015.01.015. Epub 2015 Jan 30.
Chiral capillary electrophoresis/tandem mass spectrometry (CE/MS/MS) using a chemically modified capillary containing sulfonated groups was developed for the following 8 amphetamine-type stimulants (ATS): amphetamine, methamphetamine (MA), norephedrine, norpseudoephedrine, ephedrine (EP), pseudoephedrine (pEP), dimethylamphetamine and methylephedrine. The running buffer was 10 mM formic acid containing 20 mM highly sulfated γ-cyclodextrin (pH 2.5) as the chiral selector. All 16 enantiomers were well resolved within 60 min, and precisely identified due to their characteristic mass spectra. Further, the RSDs of the migration times of the analytes were no more than 0.3% without any standardization. (1R,2S)-(-)-EP and (1S,2S)-(+)-pEP, which are important ATS impurities originating in the precursors, were added to a highly concentrated MA solution (1 mg/mL) and analyzed as mock samples for MA impurity analysis. Acceptable repeatability of the migration times of (-)-EP and (+)-pEP (ca. 0.3% RSDs) was still observed without interference from the large amount of MA. The limits of detection (LOD) of (-)-EP and (+)-pEP were approximately 2 μg/mL, therefore, their LOD as the impurity concentrations were calculated at about 0.2%. Seized MA samples were dissolved in water at a high concentration (1 mg/mL) and analyzed by this method. (-)-EP and (+)-pEP were clearly detected as impurities. Although these compounds had similar migration times and mass spectral patterns, the fine repeatability allowed easy identification of the impurities by a simple comparison of the absolute migration times of the specimens and those of authentic standards. This study is the first to report the use of a chemically modified capillary for the impurity profiling on CE/MS/MS.
采用含有磺化基团的化学修饰毛细管的手性毛细管电泳/串联质谱法(CE/MS/MS),用于分析以下8种苯丙胺类兴奋剂(ATS):苯丙胺、甲基苯丙胺(MA)、去甲麻黄碱、去甲伪麻黄碱、麻黄碱(EP)、伪麻黄碱(pEP)、二甲基苯丙胺和甲基麻黄碱。运行缓冲液为含有20 mM高硫酸化γ-环糊精的10 mM甲酸(pH 2.5),作为手性选择剂。所有16种对映体在60分钟内得到良好分离,并因其特征质谱而被精确鉴定。此外,在没有任何标准化的情况下,分析物迁移时间的相对标准偏差(RSD)不超过0.3%。将作为前体中重要ATS杂质的(1R,2S)-(-)-EP和(1S,2S)-(+)-pEP添加到高浓度MA溶液(1 mg/mL)中,并作为MA杂质分析的模拟样品进行分析。在不受大量MA干扰的情况下,仍观察到(-)-EP和(+)-pEP迁移时间的可接受重复性(约0.3% RSD)。(-)-EP和(+)-pEP的检测限(LOD)约为2 μg/mL,因此,它们作为杂质浓度的LOD计算约为0.2%。查获的MA样品以高浓度(1 mg/mL)溶解于水中,并采用该方法进行分析。(-)-EP和(+)-pEP作为杂质被清晰检测到。尽管这些化合物具有相似的迁移时间和质谱图,但良好的重复性使得通过简单比较样品和真实标准品的绝对迁移时间即可轻松鉴定杂质。本研究首次报道了在CE/MS/MS上使用化学修饰毛细管进行杂质分析。