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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Chiral separation of new cathinone- and amphetamine-related designer drugs by gas chromatography-mass spectrometry using trifluoroacetyl-l-prolyl chloride as chiral derivatization reagent
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Chiral separation of new cathinone- and amphetamine-related designer drugs by gas chromatography-mass spectrometry using trifluoroacetyl-l-prolyl chloride as chiral derivatization reagent

机译:以三氟乙酰基-1-脯氨酰氯为手性衍生试剂的气相色谱-质谱法手性分离与新的卡西酮和安非他明有关的设计药物

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摘要

Since cathinone derivatives gained high popularity on the recreational drugs market within the past 5. years the development of analytical methods for the achiral and chiral determination of this substance class is of great interest. Not at least because it is obvious that the pharmacological potency differs between both enantiomers. Cathinones are structurally closely related to amphetamines, which have similar stimulating effects and are somehow better investigated. The goal of this research was to perform indirect enantioseparation of novel psychoactive cathinone and amphetamine derivatives. Trifluoroacetyl- l-prolyl chloride was served as chiral derivatization agent (CDA). Chromatographic separation was performed using a commercially available HP5-MS capillary column with a length of 30. m. Helium was used as carrier gas with a constant flow of 1.0. ml/min. Under optimum conditions 14 amphetamine derivatives were successfully resolved into their enantiomers and detected with the single quadrupol detector. Racemic methcathinone derivatives analyzed with the same method showed different peak areas for each of the produced diastereomeric isomers, even if they are structurally closely related to the amphetamines. Derivatization experiments with the single isomers of methcathinone led to both diastereomers whereas the S(-) enantiomer seemed to racemize more likely. Based on comparative experiments with R-(-)-α-methoxy-α-(trifluoromethyl)phenylacetyl chloride (MTPA) as CDA, racemization due to the keto-enol-tautomerism of the cathinone derivatives seemed to be responsible for this phenomenon. Nevertheless, 18 cathinone derivatives were successfully enantioseparated and an approach of quantitative evaluation is demonstrated.
机译:由于卡西酮衍生物在过去的5年中在休闲药物市场上获得了很高的知名度,因此开发这种手性和非手性测定方法的分析方法引起了人们的极大兴趣。至少不是因为很明显两种对映异构体的药理效力不同。卡西酮在结构上与苯丙胺密切相关,苯丙胺具有相似的刺激作用,并且在某种程度上得到了更好的研究。这项研究的目的是进行新型精神活性卡西酮和苯丙胺衍生物的间接对映体分离。三氟乙酰基-1-脯氨酰氯用作手性衍生剂(CDA)。使用市售的长度为30. m的HP5-MS毛细管柱进行色谱分离。氦气用作恒定流量为1.0的载气。毫升/分钟在最佳条件下,将14种苯丙胺衍生物成功解析为对映异构体,并用单个Quadrupol检测器进行检测。用相同方法分析的外消旋甲卡西酮衍生物对于每种产生的非对映异构体均显示出不同的峰面积,即使它们在结构上与苯丙胺密切相关。用美卡西酮的单一异构体进行衍生化实验会产生两种非对映异构体,而S(-)对映异构体似乎更容易消旋。根据以R-(-)-α-甲氧基-α-(三氟甲基)苯基乙酰氯(MTPA)作为CDA的比较实验,由于卡西酮衍生物的酮-烯醇-互变异构作用而引起的外消旋作用可能是造成这种现象的原因。然而,成功分离出18种卡西酮衍生物,并证明了定量评估的方法。

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