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Simultaneous Quantitative Determination of Synthetic Cathinone Enantiomers in Urine and Plasma Using GC-NCI-MS

机译:使用GC-NCI-MS同时定量测定尿液和血浆中合成的Cathinone对映异构体

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Development and validation of sensitive and selective method for enantioseparation and quantitation of synthetic cathinones is reported using GC-MS triple quadrupole mass spectrometry with negative chemical ionization (NCI) mode. Indirect chiral separation of thirty-six synthetic cathinone compounds has been achieved by using an optically pure chiral derivatizing agent (CDA) called (S)-(−)-N-(trifluoroacetyl)pyrrolidine-2-carbonyl chloride (L-TPC), which converts cathinone enantiomers into diastereoisomers that can be separated on achiral columns. As a result of using Ultra Inert 60 m column and performing slow heating rate (2°C/min) on the GC oven, an observed enhancement in enantiomer peak resolution has been achieved. An internal standard, (+)-cathinone, was used for quantitation of synthetic cathinones. Method validation in terms of linearities and sensitivity in terms of limits of detection (LODs), limits of quantitation (LOQs), recoveries, and reproducibilities has been obtained for fourteen selected compounds that examined simultaneously as a mixture after being spiked in urine and plasma. It was found that the LOD of the fourteen synthetic cathinones in urine was in the range of 0.26–0.76 µg/L, and in plasma, it was in the range of 0.26–0.34 µg/L. While the LOQ of the mixture in urine was in the range of 0.86–2.34 µg/L, and in plasma, it was in the range of 0.89–1.12 µg/L. Unlike the electron impact (EI) ion source, NCI showed better sensitivity by two orders of magnitude by comparing the obtained results with the recently published reports for quantitative analysis and enantioseparation of synthetic cathinones.
机译:据报道,使用负化学电离(NCI)模式的GC-MS三重四极杆质谱法开发并验证了对合成卡西酮的对映体和定量方法的灵敏和选择性的方法。通过使用称为(S)-(-)-N-(三氟乙酰基)吡咯烷-2-羰基氯(L-TPC)的光学纯手性衍生剂(CDA),已实现了36种合成卡西酮化合物的间接手性分离,可将卡西酮对映异构体转化为非对映异构体,可在非手性色谱柱上分离。使用Ultra Inert 60µm色谱柱并在GC柱箱上以较低的加热速率(2°C / min)进行加热的结果,对映体峰分离度得到了明显提高。内标(+)-卡西酮用于定量合成卡西酮。对于十四种选定的化合物,在掺入尿液和血浆后作为混合物同时进行检测,已经获得了线性度方面的方法验证以及检测限(LODs),定量限(LOQs),回收率和重现性方面的方法验证。结果发现,尿液中十四种合成卡他酮的检测限在0.26-0.76μg/ L范围内,在血浆中在0.26-0.34μg/ L的范围内。混合物在尿液中的最低定量限在0.86-2.34μg/ L的范围内,在血浆中,最低定量限在0.89-1.12μg/ L的范围内。与电子碰撞(EI)离子源不同,NCI通过将获得的结果与最近发表的用于合成卡西酮的定量分析和对映体分离的报告进行比较,显示出了两个数量级的更高灵敏度。

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