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2-取代3β-苯基托烷衍生物的合成、多巴胺转运体亲和力、多巴胺摄取抑制及运动兴奋活性

Synthesis, dopamine transporter affinity, dopamine uptake inhibition, and locomotor stimulant activity of 2-substituted 3 beta-phenyltropane derivatives.

作者信息

Xu L, Kelkar S V, Lomenzo S A, Izenwasser S, Katz J L, Kline R H, Trudell M L

机构信息

Department of Chemistry, University of New Orleans, Louisiana 70148, USA.

出版信息

J Med Chem. 1997 Mar 14;40(6):858-63. doi: 10.1021/jm960739c.

Abstract

A series of 2 beta-substituted 3 beta-phenyltropanes were synthesized as analogs of cocaine and tested in vitro for their ability to displace bound [3H]WIN 35,428 (2b) and inhibit dopamine uptake in rat caudate-putamen tissue. The analogs bound with high affinity (Ki = 11-22 nM) to the dopamine transporter. Increased lipophilicity at the beta-C(2)-position was found to lead to increased binding affinity and increased dopamine uptake potency. However, a direct correlation between clogP values and binding affinity and potency of uptake inhibition was not observed. The unsaturated ester 7 was found to possess weak dopamine uptake inhibition relative to the high binding affinity (IC50/Ki = 10.2). In vivo measurement of stimulated locomotor activity and drug discrimination against cocaine (10 mg/kg, ip) with selected analogs (4, 6, and 7) demonstrated that the behavioral effects of these drugs were approximately equipotent with those of cocaine. The structure-activity relationships of this series of cocaine analogs supports a pharmacophore model in which lipophilic interactions between the beta-C(2)-position of 3 beta-phenyltropanes and the cocaine binding site on the dopamine transporter lead to enhanced potency while electrostatic interactions have a nonspecific effect.

摘要

合成了一系列2-β-取代的3-β-苯基托烷作为可卡因类似物,并在体外测试它们置换结合的[3H]WIN 35,428(2b)的能力以及抑制大鼠尾状核-壳核组织中多巴胺摄取的能力。这些类似物与多巴胺转运体具有高亲和力(Ki = 11 - 22 nM)。发现β-C(2)位亲脂性增加会导致结合亲和力增加以及多巴胺摄取效力增强。然而,未观察到clogP值与结合亲和力以及摄取抑制效力之间存在直接相关性。相对于高结合亲和力(IC50/Ki = 10.2),发现不饱和酯7具有较弱的多巴胺摄取抑制作用。用选定的类似物(4、6和7)对刺激的运动活性进行体内测量以及对可卡因(10 mg/kg,腹腔注射)进行药物辨别试验,结果表明这些药物的行为效应与可卡因的效应大致相当。这一系列可卡因类似物的构效关系支持一种药效团模型,即3-β-苯基托烷的β-C(2)位与多巴胺转运体上的可卡因结合位点之间的亲脂性相互作用导致效力增强,而静电相互作用具有非特异性影响。

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