Toxicological evaluation, postmortem case descriptions, and pharmacological activity of N,N-dimethylpentylone and related analogs.

IF 2.3 3区 医学 Q3 CHEMISTRY, ANALYTICAL
Melissa F Fogarty, Sara E Walton, Michael T Truver, Grant C Glatfelter, Alex J Krotulski, Donna M Papsun, Michael Lamb, Chris W Chronister, Bruce A Goldberger, Donna Walther, Kristie Barba, Michael H Baumann, Barry K Logan
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引用次数: 0

Abstract

Identification of N,N-dimethylpentylone (DMP) in counterfeit "Ecstasy" and "Molly" tablets poses risk to public health due to its adverse effects. Little information is available regarding the pharmacological activity or relevant blood or tissue concentrations of DMP, and even less is known about other structurally related beta-keto methylenedioxyamphetamine analogs on recreational drug markets, such as N-propyl butylone. Here, a novel toxicological assay utilizing liquid chromatography-tandem quadrupole mass spectrometry was developed and validated for the quantitation of DMP and five related synthetic cathinones [eutylone, pentylone, N-ethyl pentylone (NEP), N-propyl butylone, and N-cyclohexyl butylone], with chromatographic resolution from isomeric variants and quantitation performed by standard addition. A forensic series of 125 cases is presented for DMP and related analogs, along with pharmacological activity assessments using monoamine transporter and mouse behavioral assays. The blood concentration range for DMP in postmortem forensic cases was 3.3-4600 ng/mL (mean: 320 ± 570 ng/mL, median: 150 ng/mL), whereas pentylone, the primary N-desmethyl metabolite of DMP, was identified in 98% of cases with a concentration range 1.3-710 ng/mL (mean ± SD: 105 ± 120 ng/mL, median: 71 ng/mL). N-Propyl butylone, a newly identified synthetic cathinone, was quantitated in seven cases (mean ± SD: 82 ± 75 ng/mL, median: 50 ng/mL, range: 1.7-200 ng/mL). DMP displayed potent uptake inhibition at the dopamine transporter [half maximal inhibitory concentration (IC50) of 49 nM], with 100-fold weaker potency at the serotonin transporter (IC50 = 4990 nM). DMP was a locomotor stimulant in mice [medium effective dose (ED50) of 3.5 mg/kg] exhibiting potency relatively similar to eutylone, NEP, and pentylone. Our results show that DMP is a psychomotor stimulant associated with adverse clinical outcomes leading to death. Forensic laboratories must continue to update testing methods to capture emerging drugs, with specific emphasis on resolution and identification of isomeric species. Following the scheduling of DMP in early 2024, there could be an anticipated market shift toward a new unregulated synthetic stimulant to replace DMP.

N,N-二甲基戊酮和相关类似物的毒理学评价、死后病例描述和药理活性。
在假冒“摇头丸”和“莫利”片剂中鉴定出N,N-二甲基戊酮(DMP),由于其不利影响,对公众健康构成风险。关于DMP的药理学活性或相关血液或组织浓度的信息很少,对娱乐性药物市场上其他与结构相关的β -酮-亚甲基二氧苯丙胺类似物(如n -丙基丁酮)的了解就更少了。本研究利用液相色谱-串联四极杆质谱(LC-QQQ-MS)建立了一种新的毒理学分析方法,并验证了DMP和五种相关的合成卡西酮(eutylone, pentylone, N-ethyl pentylone (NEP), n -丙基丁酮和n -环己基丁酮)的定量,其异构体变体的色谱分辨率和标准加成的定量。125例的法医系列提出了DMP和相关类似物,以及使用单胺转运蛋白和小鼠行为分析的药理学活性评估。法医尸检中DMP血药浓度范围为3.3 ~ 4600 ng/mL(平均值:320±570 ng/mL,中位数:150 ng/mL), 98%的法医尸检中DMP的主要n -去甲基代谢物戊酮血药浓度范围为1.3 ~ 710 ng/mL(平均值±SD: 105±120 ng/mL,中位数:71 ng/mL)。新鉴定的合成卡西酮n -丙基丁酮在7例中定量(平均±SD: 82±75 ng/mL,中位数:50 ng/mL,范围:1.7 ~ 200 ng/mL)。DMP对多巴胺转运体(IC50=49 nM)表现出强效的摄取抑制作用,对血清素转运体(IC50=4990 nM)的抑制作用弱100倍。DMP是一种小鼠运动兴奋剂(ED50=3.5 mg/kg),其效力与真tylone, n -乙基戊酮和戊酮相对相似。我们的研究结果表明,DMP是一种与导致死亡的不良临床结果相关的精神运动兴奋剂。法医实验室必须继续更新检测方法,以捕获新出现的药物,特别强调对异构体物种的分辨和鉴定。随着DMP计划在2024年初上市,预计市场将转向一种新的不受监管的合成兴奋剂来取代DMP。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
5.10
自引率
20.00%
发文量
92
审稿时长
6-12 weeks
期刊介绍: The Journal of Analytical Toxicology (JAT) is an international toxicology journal devoted to the timely dissemination of scientific communications concerning potentially toxic substances and drug identification, isolation, and quantitation. Since its inception in 1977, the Journal of Analytical Toxicology has striven to present state-of-the-art techniques used in toxicology labs. The peer-review process provided by the distinguished members of the Editorial Advisory Board ensures the high-quality and integrity of articles published in the Journal of Analytical Toxicology. Timely presentation of the latest toxicology developments is ensured through Technical Notes, Case Reports, and Letters to the Editor.
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