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可卡因、可口卡因及其可能的代谢和热解产物的同步分析。

Simultaneous analyses of cocaine, cocaethylene, and their possible metabolic and pyrolytic products.

作者信息

Cardona Patrick S, Chaturvedi Arvind K, Soper John W, Canfield Dennis V

机构信息

Bioaeronautical Sciences Research Laboratory (AAM-610), Civil Aerospace Medical Institute, Federal Aviation Administration, US Department of Transportation, Oklahoma City, 73125-5066, USA.

出版信息

Forensic Sci Int. 2006 Feb 10;157(1):46-56. doi: 10.1016/j.forsciint.2005.04.001.

Abstract

A method was developed for simultaneously analyzing cocaine (COC), benzoylecgonine (BZE), norbenzoylecgonine (BNE), norcocaine (NCOC), ecgonine (ECG), ecgonine methyl ester (EME), m-hydroxybenzoylecgonine (HBZE), anhydroecgonine methyl ester (AEME), cocaethylene (CE), norcocaethylene (NCE), and ecgonine ethyl ester (EEE) in blood, urine, and muscle. Available deuterated analogs of these analytes were used as internal standards. Proteins from blood and muscle homogenate were precipitated with cold acetonitrile. After the removal of acetonitrile by evaporation, the supernatants and urine were subjected to solid-phase extraction. The eluted analytes were converted to their hydrochloride salts and derivatized with pentafluoropropionic anhydride and 2,2,3,3,3-pentafluoro-1-propanol. The derivatized products were analyzed by a gas chromatograph (GC)/mass spectrometer by selected ion monitoring. The limit of detection (LOD) for COC, BZE, NCOC, EME, CE, NCE, and EEE was 2ng/ml, while the LODs for BNE, ECG, HBZE, and AEME were 25, 640, 50, and 13 ng/ml, respectively. This method was successfully applied in analyzing 13 case samples from aviation accident pilot fatalities and motor vehicle operators. AEME concentrations found in the 13 samples were consistent with those produced solely by the GC inlet pyrolysis of COC controls in blood. Anhydroecgonine cannot be used as a marker for the abuse of COC by smoking because it is also pyrolytically produced from COC metabolites on the GC inlet. The developed method can be effectively adopted for analyzing COC and related compounds in urine, blood, and muscle by a single extraction with increased sensitivity through formation of hydrochloride salts and using a one-step derivatization.

摘要

开发了一种同时分析血液、尿液和肌肉中可卡因(COC)、苯甲酰芽子碱(BZE)、去甲苯甲酰芽子碱(BNE)、去甲可卡因(NCOC)、芽子碱(ECG)、芽子碱甲酯(EME)、间羟基苯甲酰芽子碱(HBZE)、脱水芽子碱甲酯(AEME)、古柯乙烯(CE)、去甲古柯乙烯(NCE)和芽子碱乙酯(EEE)的方法。这些分析物的可用氘代类似物用作内标。血液和肌肉匀浆中的蛋白质用冷乙腈沉淀。通过蒸发除去乙腈后,上清液和尿液进行固相萃取。洗脱的分析物转化为盐酸盐,并用五氟丙酸酐和2,2,3,3,3 - 五氟 - 1 - 丙醇衍生化。衍生化产物通过气相色谱仪(GC)/质谱仪进行选择离子监测分析。COC、BZE、NCOC、EME、CE、NCE和EEE 的检测限(LOD)为2 ng/ml ,而BNE、ECG、HBZE和AEME的检测限分别为25、640、50和13 ng/ml。该方法成功应用于分析13例航空事故飞行员死亡和机动车驾驶员的案例样本。在13个样本中发现的AEME浓度与仅由血液中COC对照品的GC进样口热解产生的浓度一致。脱水芽子碱不能用作吸烟滥用COC的标志物,因为它也是在GC进样口由COC代谢物热解产生的。所开发的方法可通过单次萃取有效地用于分析尿液、血液和肌肉中的COC及相关化合物,通过形成盐酸盐并使用一步衍生化提高灵敏度。

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