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新型 C-1 取代的可卡因类似物,不同于可卡因或苯环丙胺。

Novel C-1 substituted cocaine analogs unlike cocaine or benztropine.

机构信息

Department of Psychiatry, New York University School of Medicine, 450 E 29th Street, Alexandria Building Room 803, New York, NY 10016, USA.

出版信息

J Pharmacol Exp Ther. 2012 Nov;343(2):413-25. doi: 10.1124/jpet.112.193771. Epub 2012 Aug 15.

Abstract

Despite a wealth of information on cocaine-like compounds, there is no information on cocaine analogs with substitutions at C-1. Here, we report on (R)-(-)-cocaine analogs with various C-1 substituents: methyl (2), ethyl (3), n-propyl (4), n-pentyl (5), and phenyl (6). Analog 2 was equipotent to cocaine as an inhibitor of the dopamine transporter (DAT), whereas 3 and 6 were 3- and 10-fold more potent, respectively. None of the analogs, however, stimulated mouse locomotor activity, in contrast to cocaine. Pharmacokinetic assays showed compound 2 occupied mouse brain rapidly, as cocaine itself; moreover, 2 and 6 were behaviorally active in mice in the forced-swim test model of depression and the conditioned place preference test. Analog 2 was a weaker inhibitor of voltage-dependent Na+ channels than cocaine, although 6 was more potent than cocaine, highlighting the need to assay future C-1 analogs for this activity. Receptorome screening indicated few significant binding targets other than the monoamine transporters. Benztropine-like "atypical" DAT inhibitors are known to display reduced cocaine-like locomotor stimulation, presumably by their propensity to interact with an inward-facing transporter conformation. However, 2 and 6, like cocaine, but unlike benztropine, exhibited preferential interaction with an outward-facing conformation upon docking in our DAT homology model. In summary, C-1 cocaine analogs are not cocaine-like in that they are not stimulatory in vivo. However, they are not benztropine-like in binding mechanism and seem to interact with the DAT similarly to cocaine. The present data warrant further consideration of these novel cocaine analogs for antidepressant or cocaine substitution potential.

摘要

尽管有大量关于可卡因类似物的信息,但关于 C-1 取代的可卡因类似物的信息却很少。在这里,我们报告了各种 C-1 取代的(R)-(-)-可卡因类似物:甲基(2)、乙基(3)、正丙基(4)、正戊基(5)和苯基(6)。类似物 2 作为多巴胺转运体(DAT)抑制剂与可卡因等效,而 3 和 6 的效力分别提高了 3 倍和 10 倍。然而,与可卡因相反,这些类似物都没有刺激小鼠的运动活性。药代动力学测定表明,化合物 2 像可卡因本身一样迅速占据小鼠大脑;此外,2 和 6 在小鼠的强迫游泳试验模型和条件性位置偏好试验中具有行为活性。类似物 2 作为电压依赖性 Na+通道的抑制剂比可卡因弱,尽管 6 比可卡因更有效,这突出了需要对未来的 C-1 类似物进行这种活性的检测。受体组筛选表明,除了单胺转运体外,其他结合靶标很少。众所周知,苯甲托品样“非典型”DAT 抑制剂显示出降低可卡因样运动刺激作用,推测是由于它们与内向转运体构象相互作用的倾向。然而,2 和 6 与可卡因一样,但与苯甲托品不同,在我们的 DAT 同源模型中对接时表现出与外向构象的优先相互作用。总之,C-1 可卡因类似物在体内没有刺激作用,因此不像可卡因那样具有刺激性。然而,它们在结合机制上不像苯甲托品,并且似乎与 DAT 的相互作用与可卡因相似。目前的数据值得进一步考虑这些新型可卡因类似物作为抗抑郁药或可卡因替代品的潜力。

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