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首页> 外文期刊>Analytical and bioanalytical chemistry >GC-MS, LC-MSn, LC-high resolution-MSn, and NMR studies on the metabolism and toxicological detection of mesembrine and mesembrenone, the main alkaloids of the legal high 'Kanna' isolated from Sceletium tortuosum
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GC-MS, LC-MSn, LC-high resolution-MSn, and NMR studies on the metabolism and toxicological detection of mesembrine and mesembrenone, the main alkaloids of the legal high 'Kanna' isolated from Sceletium tortuosum

机译:GC-MS,LC-MSn,LC-高分辨率MSn和NMR研究麦角菌碱和甲基苯肾上腺素的代谢和毒理学检测

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摘要

Mesembrine and mesembrenone are the main alkaloids of Sceletium tortuosum, a plant species that was used for sedation and analgesia by the KhoiSan, previously known as Hottentots, a tribe in South Africa. After fermentation, the obtained preparation called "Kanna" or "Kougoed" was used by chewing, smoking, or sniffing. Today, Kanna gains popularity by drug users as legal high. For monitoring such consumption, metabolism studies are mandatory because the metabolites are mostly the analytical targets, especially in urine. Therefore, the metabolism of both alkaloids was investigated in rat urine and pooled human liver preparations after several sample work-up procedures. As both alkaloids were not commercially available, they were isolated from plant material by Soxhlet extraction, and their identity confirmed by NMR. The metabolites were identified using gas chromatography-mass spectrometry (GC-MS) and liquid chromatography coupled to linear ion trap high resolution mass spectrometry (LC-HR-MSn). Both alkaloids were O- and N-demethylated, dihydrated, and/or hydroxylated at different positions. The phenolic metabolites were partly excreted as glucuronides and/or sulfates. Most of the phase I metabolites identified in rat urine could be detected also in the human liver preparations. After a common user's low dose application of mesembrine, mainly the O- and N demethyl-dihydro, hydroxy, and bis-demethyl-dihydro metabolites, and in case of mesembrenone only the N-demethyl and the N-demethyl-dihydro metabolite could be detected in rat urine using the authors' standard urine screening approaches (SUSA) by GC-MS or LC-MSn. Thus, it should be possible to monitor a consumption of mesembrine and/or mesembrenone assuming similar pharmacokinetics in humans.
机译:Mesembrine和mesembrenone是Setletium tortuosum的主要生物碱,Setletium tortuosum是科伊桑(KhoiSan)(以前称为Hottentots,南非的一个部落)用于镇静和镇痛的一种植物。发酵后,通过咀嚼,吸烟或嗅闻使用称为“ Kanna”或“ Kougoed”的所得制剂。如今,卡纳以合法高价而受到吸毒者的欢迎。为了监测这种消耗,必须进行代谢研究,因为代谢物主要是分析目标,尤其是尿液中。因此,在几个样品后处理步骤后,在大鼠尿液和合并的人肝制剂中研究了两种生物碱的代谢。由于两种生物碱都不市售,因此通过索氏提取从植物材料中分离它们,并通过NMR确认其身份。使用气相色谱-质谱(GC-MS)和液相色谱-线性离子阱高分辨率质谱(LC-HR-MSn)鉴定代谢产物。两种生物碱都在不同位置进行了O-和N-去甲基化,二水合和/或羟基化。酚类代谢物以葡萄糖醛酸和/或硫酸盐的形式部分排出。在大鼠尿液中鉴定出的大多数I相代谢产物也可以在人肝制剂中检测到。在普通用户低剂量施用甲肾上腺素后,主要是O-和N-去甲基-二氢,羟基和双-去甲基-二氢代谢物,而在甲磺酮的情况下,只能将N-去甲基和N-去甲基-二氢代谢物使用作者的标准尿液筛查方法(SUSA)通过GC-MS或LC-MSn在大鼠尿液中检测到尿液。因此,假设在人体内具有相似的药代动力学,应该有可能监测甲基苯丙氨酸和/或甲基苯肾上腺素的消耗。

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