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中碳烯类似物抑制囊泡单胺转运体 2 的功能和甲基苯丙胺诱导的多巴胺释放。

meso-Transdiene analogs inhibit vesicular monoamine transporter-2 function and methamphetamine-evoked dopamine release.

机构信息

Department of Pharmaceutical Sciences, College of Pharmacy, University of Kentucky, Lexington, KY 40536-0082, USA.

出版信息

J Pharmacol Exp Ther. 2011 Mar;336(3):940-51. doi: 10.1124/jpet.110.175117. Epub 2010 Dec 21.

Abstract

Lobeline, a nicotinic receptor antagonist and neurotransmitter transporter inhibitor, is a candidate pharmacotherapy for methamphetamine abuse. meso-Transdiene (MTD), a lobeline analog, lacks nicotinic receptor affinity, retains affinity for vesicular monoamine transporter 2 (VMAT2), and, surprisingly, has enhanced affinity for dopamine (DA) and serotonin transporters [DA transporter (DAT) and serotonin transporter (SERT), respectively]. In the current study, MTD was evaluated for its ability to decrease methamphetamine self-administration in rats relative to food-maintained responding. MTD specifically decreased methamphetamine self-administration, extending our previous work. Classical structure-activity relationships revealed that more conformationally restricted MTD analogs enhanced VMAT2 selectivity and drug likeness, whereas affinity at the dihydrotetrabenazine binding and DA uptake sites on VMAT2 was not altered. Generally, MTD analogs exhibited 50- to 1000-fold lower affinity for DAT and were equipotent or had 10-fold higher affinity for SERT, compared with MTD. Representative analogs from the series potently and competitively inhibited [(3)H]DA uptake at VMAT2. (3Z,5Z)-3,5-bis(2,4-dichlorobenzylidene)-1-methylpiperidine (UKMH-106), the 3Z,5Z-2,4-dichlorophenyl MTD analog, had improved selectivity for VMAT2 over DAT and importantly inhibited methamphetamine-evoked DA release from striatal slices. In contrast, (3Z,5E)-3,5-bis(2,4-dichlorobenzylidene)-1-methylpiperidine (UKMH-105), the 3Z,5E-geometrical isomer, inhibited DA uptake at VMAT2, but did not inhibit methamphetamine-evoked DA release. Taken together, these results suggest that these geometrical isomers interact at alternate sites on VMAT2, which are associated with distinct pharmacophores. Thus, structural modification of the MTD molecule resulted in analogs exhibiting improved drug likeness and improved selectivity for VMAT2, as well as the ability to decrease methamphetamine-evoked DA release, supporting the further evaluation of these analogs as treatments for methamphetamine abuse.

摘要

洛贝林是一种烟碱型受体拮抗剂和神经递质转运体抑制剂,是治疗安非他命滥用的候选药物。间-反式二烯(MTD)是洛贝林的类似物,缺乏烟碱型受体亲和力,保留对囊泡单胺转运体 2(VMAT2)的亲和力,令人惊讶的是,对多巴胺(DA)和 5-羟色胺转运体[多巴胺转运体(DAT)和 5-羟色胺转运体(SERT)]具有增强的亲和力。在本研究中,评估了 MTD 相对于食物维持反应降低安非他命自我给药的能力。MTD 特异性降低了安非他命的自我给药,扩展了我们之前的工作。经典的构效关系研究表明,更多构象受限的 MTD 类似物增强了 VMAT2 的选择性和药物相似性,而二氢四苯并嗪结合和 DA 摄取位点对 VMAT2 的亲和力没有改变。一般来说,与 MTD 相比,MTD 类似物对 DAT 的亲和力低 50-1000 倍,对 SERT 的亲和力相当或高 10 倍。该系列的代表性类似物有效地竞争性抑制了 VMAT2 上的 [(3)H]DA 摄取。(3Z,5Z)-3,5-双(2,4-二氯苯亚甲基)-1-甲基哌啶(UKMH-106),3Z,5Z-2,4-二氯苯基 MTD 类似物,对 DAT 具有更高的 VMAT2 选择性,并且重要的是抑制了纹状体切片中安非他命诱发的 DA 释放。相比之下,(3Z,5E)-3,5-双(2,4-二氯苯亚甲基)-1-甲基哌啶(UKMH-105),3Z,5E-几何异构体,抑制了 VMAT2 上的 DA 摄取,但不抑制安非他命诱发的 DA 释放。总之,这些结果表明,这些几何异构体在 VMAT2 上的不同部位相互作用,这些部位与不同的药效团有关。因此,MTD 分子的结构修饰导致类似物表现出更好的药物相似性和对 VMAT2 的更高选择性,以及降低安非他命诱发的 DA 释放的能力,支持进一步评估这些类似物作为治疗安非他命滥用的方法。

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