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[(2,3-二氯苯基)哌嗪-1-基]烷基芴基羧酰胺作为多巴胺D3受体亚型选择性新型配体的设计与合成

Design and synthesis of [(2,3-dichlorophenyl)piperazin-1-yl]alkylfluorenylcarboxamides as novel ligands selective for the dopamine D3 receptor subtype.

作者信息

Robarge M J, Husbands S M, Kieltyka A, Brodbeck R, Thurkauf A, Newman A H

机构信息

Medicinal Chemistry Section, National Institute on Drug Abuse-Intramural Research Program, 5500 Nathan Shock Drive, Baltimore, Maryland 21224, USA.

出版信息

J Med Chem. 2001 Sep 13;44(19):3175-86. doi: 10.1021/jm010146o.

Abstract

The dopamine D3 receptor subtype has been recently targeted as a potential neurochemical modulator of the behavioral actions of psychomotor stimulants, such as cocaine. However, definitive behavioral investigations have been hampered by the lack of highly selective D3 agonists and antagonists. In an attempt to design a novel class of D3 ligands with which to study this receptor system, a series of chemically divergent compounds that possessed various structural features that exist within several classes of reputed D3 agents was screened and compared to the recently reported NGB 2904 (58b). On the basis of these results, a novel series of compounds was designed that included functional moieties that were required for high-affinity and selective binding to D3 receptors. All the compounds in this series included an aryl-substituted piperazine ring, a varying alkyl chain linker (C3-C5), and a terminal aryl amide. The compounds were synthesized and evaluated in vitro for binding in CHO cells transfected with human D2, D3, or D4 receptor cDNAs. D3 binding affinities ranged from K(i) = 1.4 to 1460 nM. The most potent analogue in this series, 51, demonstrated a D3/D2 selectivity of 64 and a D3/D4 selectivity of 1300. Structure-activity relationships for this class of ligands at D3 receptors will provide new leads toward the development of highly selective and potent molecular probes that will prove useful in the elucidation of the role D3 receptors play in the psychomotor stimulant and reinforcing properties of cocaine.

摘要

多巴胺D3受体亚型最近已成为精神运动兴奋剂(如可卡因)行为作用的潜在神经化学调节剂。然而,由于缺乏高选择性的D3激动剂和拮抗剂,明确的行为研究受到了阻碍。为了设计一类新型的D3配体来研究这个受体系统,筛选了一系列具有不同化学结构的化合物,这些化合物具有几类著名D3药物中存在的各种结构特征,并与最近报道的NGB 2904(58b)进行了比较。基于这些结果,设计了一系列新型化合物,其中包括与D3受体高亲和力和选择性结合所需的功能基团。该系列中的所有化合物都包括一个芳基取代的哌嗪环、一个可变的烷基链连接基(C3 - C5)和一个末端芳基酰胺。合成了这些化合物,并在体外对转染了人D2、D3或D4受体cDNA的CHO细胞中的结合情况进行了评估。D3结合亲和力范围为K(i)=1.4至1460 nM。该系列中最有效的类似物51,其D3/D2选择性为64,D3/D4选择性为1300。这类配体在D3受体上的构效关系将为开发高选择性和强效分子探针提供新的线索,这些探针将有助于阐明D3受体在可卡因的精神运动兴奋和强化特性中所起的作用。

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