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4-(2-二苯甲氧基乙基)-1-(4-氟苄基)哌啶的高亲和力羟基哌啶类似物与多巴胺转运体的关系:体内外立体特异性相互作用

High affinity hydroxypiperidine analogues of 4-(2-benzhydryloxyethyl)-1-(4-fluorobenzyl)piperidine for the dopamine transporter: stereospecific interactions in vitro and in vivo.

作者信息

Ghorai Sujit K, Cook Charles, Davis Matthew, Venkataraman Sylesh K, George Clifford, Beardsley Patrick M, Reith Maarten E A, Dutta Aloke K

机构信息

Wayne State University, Department of Pharmaceutical Sciences, Detroit, Michigan 48202, USA.

出版信息

J Med Chem. 2003 Mar 27;46(7):1220-8. doi: 10.1021/jm020275k.

Abstract

In our effort to develop high-affinity ligands for the dopamine transporter which might find potential use as cocaine medication, a polar hydroxy substituent was introduced into the piperidine ring of one of our disubstituted lead analogues derived from 1-[2-(diphenylmethoxy)-ethyl]-4-(3-phenylpropyl)piperazine (GBR 12935). Both cis- and trans-3-hydroxy derivatives were synthesized and the racemic trans isomer, (+/-)-5, was further resolved into two enantiomers. Newly synthesized compounds were characterized for their binding affinity at the dopamine, serotonin, and norepinephrine transporter systems in rat brain. The two enantiomers (+)-5 and (-)-5 exhibited marked differential affinities at the dopamine transporter with (+)-5 being 122-fold more potent than (-)-5 in inhibiting radiolabeled cocaine analogue binding (IC(50); 0.46 vs 56.7 nM) and 9-fold more active for inhibiting dopamine uptake (IC(50); 4.05 vs 38.0 nM). Furthermore, the most active (+)-5 was 22-fold more potent at the dopamine transporter compared to the standard GBR 12909. Absolute configuration of one of the enantiomers was determined unambiguously by X-ray structural analysis. In in vivo locomotor activity studies, the enantiomer (+)-5 and the racemic (+/-)-5, but not (-)-5, exhibited stimulant activity with a long duration of effect. All three compounds, (+)-5, (-)-5, and (+/-)-5, within the dose range tested, partially (50%) but incompletely (80%) produced cocaine-like responses in mice trained to discriminate 10 mg/kg ip cocaine from vehicle. Compound (-)-5 was distinctive in this regard in that, unlike (+)-5 and (+/-)-5, it did not affect locomotor activity yet, but similar to them, was able to engender (albeit incompletely) cocaine-like responses.

摘要

为了开发可能用作可卡因药物的多巴胺转运体高亲和力配体,我们在一种由1-[2-(二苯基甲氧基)-乙基]-4-(3-苯基丙基)哌嗪(GBR 12935)衍生的二取代先导类似物的哌啶环中引入了一个极性羟基取代基。合成了顺式和反式-3-羟基衍生物,并且将外消旋反式异构体(+/-)-5进一步拆分为两种对映体。对新合成的化合物在大鼠脑内多巴胺、5-羟色胺和去甲肾上腺素转运体系统的结合亲和力进行了表征。两种对映体(+)-5和(-)-5在多巴胺转运体上表现出显著的差异亲和力,(+)-5在抑制放射性标记可卡因类似物结合方面比(-)-5强122倍(IC(50);0.46对56.7 nM),在抑制多巴胺摄取方面活性高9倍(IC(50);4.05对38.0 nM)。此外,活性最高的(+)-5在多巴胺转运体上比标准GBR 12909强22倍。通过X射线结构分析明确确定了其中一种对映体的绝对构型。在体内运动活性研究中,对映体(+)-5和外消旋体(+/-)-5,但不是(-)-5,表现出具有长效作用的兴奋活性。在所测试的剂量范围内,所有三种化合物(+)-5、(-)-5和(+/-)-5,在训练区分腹腔注射10 mg/kg可卡因与溶剂的小鼠中部分(50%)但不完全(80%)产生可卡因样反应。化合物(-)-5在这方面很独特,与(+)-5和(+/-)-5不同,它尚未影响运动活性,但与它们类似,能够产生(尽管不完全)可卡因样反应。

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