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首页> 外文期刊>Drug Metabolism and Disposition: The Biological Fate of Chemicals >Effects of dose and route of administration on pharmacokinetics of (+ or -)-3,4-methylenedioxymethamphetamine in the rat.
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Effects of dose and route of administration on pharmacokinetics of (+ or -)-3,4-methylenedioxymethamphetamine in the rat.

机译:剂量和给药途径对大鼠中(+或-)-3,4-亚甲二氧基甲基苯丙胺药代动力学的影响。

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摘要

Based on animal data, there is speculation that (+ or -)-3,4-methylenedioxymethamphetamine (MDMA) is neurotoxic to humans. Extrapolation of MDMA findings from animals to humans requires assessment of pharmacokinetics in various species, and low-dose administration data from rats are lacking. In this study, we examine MDMA pharmacokinetics in rats given low (2 mg/kg) and high (10 mg/kg) doses of racemic MDMA via intraperitoneal, subcutaneous, and oral routes. Repeated blood specimens were collected from venous catheters, and plasma was assayed for MDMA and its metabolites, 4-hydroxy-3-methoxymethamphetamine (HMMA) and 3,4-methylenedioxyamphetamine (MDA), by gas chromatography-mass spectrometry. After 2 mg/kg, maximum MDMA concentrations (C(max)) were approximately 200 ng/ml for intraperitoneal and subcutaneous routes, but less for the oral route. MDMA plasma half-lives were <1 h for low-dose groups, whereas HMMA and MDA half-lives were >2 h. After 10 mg/kg, MDMA areas under the curve (AUCs) were 21-fold (intraperitoneal), 10-fold (subcutaneous), and 36-fold (oral) greater than those at 2 mg/kg. In contrast, HMMA AUC values in high-dose groups were <3-fold above those at 2 mg/kg. Several new findings emerge from this report of low-dose MDMA pharmacokinetics in rats. First, 2 mg/kg MDMA in rats can produce MDMA C(max) values similar to those in humans, perhaps explaining why both species discriminate 1.5 mg/kg MDMA in laboratory paradigms. Second, our data provide additional support for nonlinear kinetics of MDMA in rats, and, analogous to humans, this phenomenon appears to involve impaired drug metabolism. Finally, given key similarities between MDMA pharmacokinetics in rats and humans, data from rats may be clinically relevant when appropriate dosing conditions are used.
机译:根据动物数据,推测(+或-)-3,4-亚甲二氧基甲基苯丙胺(MDMA)对人类具有神经毒性。从动物到人的MDMA研究结果的推断需要评估各种物种的药代动力学,并且缺乏大鼠的低剂量给药数据。在这项研究中,我们研究了通过腹膜内,皮下和口服途径给予低剂量(2 mg / kg)和高剂量(10 mg / kg)外消旋MDMA的大鼠的MDMA药代动力学。从静脉导管中收集重复的血液样本,并通过气相色谱-质谱法测定血浆中的MDMA及其代谢产物4-羟基-3-甲氧基甲基苯丙胺(HMMA)和3,4-亚甲基二氧基苯丙胺(MDA)。 2 mg / kg后,腹膜内和皮下途径的最大MDMA浓度(C(max))约为200 ng / ml,而口服途径则更低。低剂量组的MDMA血浆半衰期小于1小时,而HMMA和MDA的半衰期大于2小时。 10 mg / kg后,曲线下的MDMA面积(AUCs)比2 mg / kg时大21倍(腹膜内),10倍(皮下)和36倍(口服)。相反,高剂量组的HMMA AUC值比2 mg / kg时高3倍。从大鼠低剂量MDMA药代动力学的报告中得出了一些新发现。首先,大鼠中2 mg / kg的MDMA可以产生与人类相似的MDMA C(max)值,这也许可以解释为什么两种物种在实验室范式中都可以区分1.5 mg / kg的MDMA。其次,我们的数据为大鼠MDMA的非线性动力学提供了额外的支持,并且类似于人类,这种现象似乎与药物代谢受损有关。最后,考虑到MDMA药代动力学在大鼠和人类之间的关键相似性,当使用适当的给药条件时,来自大鼠的数据可能与临床相关。

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