首页> 外文期刊>Journal of forensic sciences. >Stereochemical determination of selegiline metabolites in postmortem biological specimens.
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Stereochemical determination of selegiline metabolites in postmortem biological specimens.

机译:后蛋白质生物标本中硒代谢物的立体化学测定。

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In this study, findings related to an aircraft accident are reported. Biological specimens collected at autopsy from the pilot of the fatal accident and two types of tablets found at the accident scene were submitted for toxicological evaluation. It was determined that the pilot was dead at the crash site and the cause of death was multiple traumatic injuries. The tablets were identified as selegiline and levodopa, commonly prescribed for the treatment of Parkinson's disease. Selegiline, a stereospecific compound, is biotransformed into (-)-N-desmethylselegiline, (-)-methamphetamine, and (-)-amphetamine. The latter two levorotatory metabolites cannot be easily distinguished by routine analysis from their dextrorotatory isomers, which are controlled substances. It was, therefore, prudent to differentiate these isomers to determine if they resulted from the ingestion of a controlled substance, (+)-methamphetamine. Initial immunoassay drug screenings revealed the presence of amphetamine class drugs (867 ng/mL) in urine, amphetamine/methamphetamine (261 ng/mL) in urine, and methamphetamine (46 ng/mL) in blood. The gas chromatography-mass spectrometry (GC/MS) results revealed the presence of methamphetamine in the concentrations of 76 ng/mL of blood and 685 ng/mL of urine. The concentration of amphetamine was 52 ng/mL in blood and 320 ng/mL in urine. To determine the stereospecificity of these amines, the isolated amines from the biosamples were derivatized by a stereospecific agent, (S)-(-)-N-(trifluoroacetyl)-prolyl chloride, and characterized by a GC/MS method to be levorotatory. The 2.14 ratio of (-)-methamphetamine to (-)-amphetamine concentrations in the urine was consistent with a selegiline study in the recent literature. The stereospecific analysis, in conjunction with the history of the pilot being on Parkinson's medications, suggests that the source of these amines was selegiline. This conclusion substantiates the importance of the identification of enantiomers in evaluating and interpreting related analytical results for accident investigations.
机译:在这项研究中,报告了与飞机事故相关的结果。从致命事故的飞行员和事故现场发现的两种类型的片剂收集的生物标本被提交毒理学评估。确定飞行员在碰撞部位死亡,死亡原因是多重创伤伤害。将片剂鉴定为咪苯胺和左旋多巴,通常规定用于治疗帕金森病。 Selegiline,一种立体化合物,是生物转化为( - ) - N-去甲基硒,( - ) - 甲基苯丙胺,和( - ) - amphetamine。后两种左旋代谢物不能轻易区分由它们的令人异换的异构体的常规分析来区分,这些异常异构体是受控物质的。因此,谨慎地分化这些异构体,以确定它们是否因摄取受控物质而导致(+) - 甲基甲甲基。初始免疫测定药物筛选揭示尿液中尿液,尿amphetamine/甲基/ ml)中的含氨基类药物(867ng / ml)的存在,以及血液中的甲基苯丙胺(46ng / ml)。气相色谱 - 质谱(GC / MS)结果显示甲基苯丙胺的浓度为76ng / ml血液和685ng / ml尿液中存在。尿液中浓度为52ng / ml,尿液中320ng / ml。为了确定这些胺的立体特异性,来自生物素的分离的胺通过立体特异性剂,(s) - ( - ) - N-(三氟乙酰基) - 氯化氢,并通过GC / MS方法表征左旋液。 ( - ) - 甲基苯丙胺至( - ) - 尿羟胺浓度的2.14比与近期文献中的Selegiline研究一致。立体化分析与飞行员在帕金森的药物上的历史中,表明这些胺的来源是莱基林。这一结论证明了对映体鉴定在评估和解释事故调查的相关分析结果方面的重要性。

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