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Separation of isomers of new psychoactive substances and isotope-labeled amphetamines using UHPSFC-MS/MS and UHPLC-MS/MS
Authors:Åse Marit Leere Øiestad  Thomas Berg  Elin Eliassen  Tony Wiklund  Ketil Sand  Elisabeth Leere Øiestad
Institution:1. Department of Forensic Sciences, Division of Laboratory Medicine, Oslo University Hospital, Oslo, Norwayrmaslo@ous-hf.no;3. Department of Forensic Sciences, Division of Laboratory Medicine, Oslo University Hospital, Oslo, Norway;4. Waters Customer Success Team - Northern Europe, Waters Corporation, Sollentuna, Sweden;5. Waters Sales Office Norway, Waters Corporation, Oslo, Norway
Abstract:The use of sub-2?µm particles columns is finding its use in ultrahigh-pressure supercritical fluid chromatography (UHPSFC), opening up for fast analysis and high-resolution separations. The development of new and more robust systems also makes the technique more interesting for bioanalytical analysis, where the need for reproducible and fast analysis with little downtime is great. One area where the use of UHPSFC could become a useful tool is in the separation of structural isomers of new psychoactive substances (NPS). 2-, 3-, and 4- structural isomers of fluoroamphetamine, fluoromethamphetamine, and methylmethcathinone, isomeric pairs of the synthetic cannabinoids UR-144/UR-144 degradant, XLR-11/XLR-11 degradant, JWH-015/JWH-073, and JWH-019/JWH-122, as well as amphetamine and several stable isotope-labeled amphetamine internal standards were separated with UHPSFC-MS/MS and compared with ultrahigh-pressure liquid chromatography (UHPLC) MS/MS. NPS isomers that were difficult to separate with reversed-phase UHPLC-MS/MS were separated by UHPSFC; in most cases with an orthogonal retention order to UHPLC. In contrast to the behavior seen when using reversed-phase UHPLC, the deuterated amphetamines eluted later than amphetamine with UHPSFC. 13C6-labeled amphetamine coeluted with amphetamine for all conditions, making this the best choice of an internal standard.
Keywords:Isomer separation  isotope-labeled internal standards  new psychoactive substances  supercritical fluid chromatography  synthetic cannabinoids
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