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首页> 外文期刊>Frontiers in Psychiatry >Mephedrone (4-Methylmethcathinone): Acute Behavioral Effects, Hyperthermic, and Pharmacokinetic Profile in Rats
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Mephedrone (4-Methylmethcathinone): Acute Behavioral Effects, Hyperthermic, and Pharmacokinetic Profile in Rats

机译:甲氧麻黄酮(4-甲基甲卡西酮):大鼠的急性行为影响,热疗和药代动力学

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Mephedrone (MEPH) is a synthetic cathinone derivative with effects that mimic MDMA and/or cocaine. Our study in male Wistar rats provides detailed investigations of MEPH’s and its primary metabolite nor-mephedrone’s (nor-MEPH) pharmacokinetics and bio-distribution to four different substrates (serum, brain, lungs, and liver), as well as comparative analysis of their effects on locomotion [open field test (OFT)] and sensorimotor gating [prepulse inhibition of acoustic startle reaction (PPI ASR)]. Furthermore, in order to mimic the crowded condition where MEPH is typically taken (e.g., clubs), the acute effect of MEPH on thermoregulation in singly- and group-housed rats was evaluated. Pharmacokinetics of MEPH and nor-MEPH after MEPH (5?mg/kg, sc.) were analyzed over 8?h using liquid chromatography with mass spectrometry. MEPH (2.5, 5, or 20?mg/kg, sc.) and nor-MEPH (5?mg/kg, sc.) were administered 5 or 40?min before the behavioral testing in the OFT and PPI ASR; locomotion and its spatial distribution, ASR, habituation and PPI itself were quantified. The effect of MEPH on rectal temperature was measured after 5 and 20?mg/kg, sc. Both MEPH and nor-MEPH were detected in all substrates, with the highest levels detected in lungs. Mean brain: serum ratios were 1:1.19 (MEPH) and 1:1.91 (nor-MEPH), maximum concentrations were observed at 30?min; at 2 and 4?h after administration, nor-MEPH concentrations were higher compared to the parent drug. While neither of the drugs disrupted PPI, both increased locomotion and affected its spatial distribution. The effects of MEPH were dose dependent, rapid, and short-lasting, and the intensity of locomotor stimulant effects was comparable between MEPH and nor-MEPH. Despite the disappearance of behavioral effects within 40?min after administration, MEPH induced rectal temperature elevations that persisted for 3?h even in singly housed rats. To conclude, we observed a robust, short-lasting, and most likely synergistic stimulatory effect of both drugs which corresponded to brain pharmacokinetics. The dissociation between the duration of behavioral and hyperthermic effects is indicative of the possible contribution of nor-MEPH or other biologically active metabolites. This temporal dissociation may be related to the risk of prolonged somatic toxicity when stimulatory effects are no longer present.
机译:Mephedrone(MEPH)是一种合成的卡西酮衍生物,具有模仿MDMA和/或可卡因的作用。我们在雄性Wistar大鼠中的研究提供了对MEPH及其主要代谢物去甲吗啡酮(nor-MEPH)药代动力学和对四种不同底物(血清,脑,肺和肝)的生物分布的详细研究,以及对其的对比分析对运动的影响[开放视野测试(OFT)]和感觉运动门控[对声惊吓反应的预脉冲抑制(PPI ASR)]。此外,为了模拟通常服用MEPH的拥挤状况(例如,棍棒),评估了MEPH对单只和成群饲养的大鼠的体温调节的急性作用。使用液相色谱-质谱联用仪分析MEPH(5?mg / kg,sc。)在8?h以上后MEPH和nor-MEPH的药代动力学。在OFT和PPI ASR中进行行为测试之前,在5或40?min时给予MEPH(2.5、5或20?mg / kg,sc。)和nor-MEPH(5?mg / kg,sc。)。对运动及其空间分布,ASR,习惯和PPI本身进行了量化。在5和20?mg / kg,皮下注射后,测量MEPH对直肠温度的影响。在所有底物中都检测到了MEPH和nor-MEPH,在肺中检测到的水平最高。平均脑:血清比率分别为1:1.19(MEPH)和1:1.91(nor-MEPH),在30分钟时观察到最大浓度。在给药后2和4小时,与母体药物相比,nor-MEPH浓度也更高。尽管这两种药物均未破坏PPI,但两者均增加了运动并影响了其空间分布。 MEPH的作用是剂量依赖性的,快速的和持久的,运动刺激作用的强度在MEPH和nor-MEPH之间是可比的。尽管在给药后40分钟内行为作用消失了,但MEPH引起的直肠温度升高甚至在单独饲养的大鼠中也持续了3 h。总而言之,我们观察到两种药物均具有健壮,持久,最可能的协同刺激作用,这与脑部药代动力学相对应。行为和高热作用的持续时间之间的分离指示了nor-MEPH或其他生物活性代谢物的可能贡献。当不再存在刺激作用时,这种暂时的解离可能与体细胞毒性延长的风险有关。

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