Harvey Eric L, Burroughs Rachel L, Baker Lisa E
Department of Psychology, Western Michigan University, Kalamazoo, Michigan, USA.
Behav Pharmacol. 2017 Oct;28(7):586-589. doi: 10.1097/FBP.0000000000000328.
Psychopharmacology research has amassed substantial evidence for similarities between synthetic cathinones and other commonly abused psychostimulants. Few studies have utilized drug discrimination methods to investigate synthetic cathinones, and the precise neurochemical substrates underlying their interoceptive effects have not been examined. The present study assessed the involvement of D1 and D2 dopaminergic receptors in the stimulus effects of 3,4-methylenedioxypyrovalerone (MDPV) and mephedrone (MEPH) in rats trained to discriminate D-amphetamine. Eight male Sprague-Dawley rats were trained to discriminate 0.5 mg/kg D-amphetamine (AMPH) from saline. Dose-response curves were then generated with AMPH (0.0-1.0 mg/kg), MDPV (0.0-1.0 mg/kg), and MEPH (0.0-2.0 mg/kg). Subsequently, Sch 39166 (0.3 mg/kg) and haloperidol (0.5 mg/kg) were administered in combination with select doses of MDPV and MEPH. Both MDPV and MEPH produced full substitution for AMPH. Sch 39166 produced a downward shift in the MDPV and MEPH dose-response curves and haloperidol produced similar results with MDPV. These preliminary findings indicate that MDPV and MEPH produce interoceptive stimuli that are similar to those produced by AMPH and that D1 and D2 dopamine receptors contribute to these effects. Additional studies are warranted to investigate the contribution of other receptor mechanisms involved in the interoceptive stimuli produced by synthetic cathinones.
精神药理学研究已经积累了大量证据,证明合成卡西酮与其他常见滥用精神兴奋剂之间存在相似之处。很少有研究使用药物辨别方法来研究合成卡西酮,其体内感受效应背后的确切神经化学底物尚未得到研究。本研究评估了D1和D2多巴胺能受体在训练用于辨别D-苯丙胺的大鼠中对3,4-亚甲基二氧吡咯戊酮(MDPV)和甲氧麻黄酮(MEPH)刺激效应的参与情况。八只雄性Sprague-Dawley大鼠被训练从盐水中辨别0.5mg/kg的D-苯丙胺(AMPH)。然后用AMPH(0.0 - 1.0mg/kg)、MDPV(0.0 - 1.0mg/kg)和MEPH(0.0 - 2.0mg/kg)生成剂量反应曲线。随后,将Sch 39166(0.3mg/kg)和氟哌啶醇(0.5mg/kg)与选定剂量的MDPV和MEPH联合给药。MDPV和MEPH都完全替代了AMPH。Sch 39166使MDPV和MEPH的剂量反应曲线向下移动,氟哌啶醇对MDPV产生了类似的结果。这些初步发现表明,MDPV和MEPH产生的体内感受刺激与AMPH产生的刺激相似,并且D1和D2多巴胺受体促成了这些效应。有必要进行更多研究来调查参与合成卡西酮产生的体内感受刺激的其他受体机制的作用。