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9-[3-(顺式-3,5-二甲基-1-哌嗪基)丙基]咔唑(利莫唑)的异硫氰酸酯衍生物:多巴胺转运体的不可逆配体。

Isothiocyanate derivatives of 9-[3-(cis-3,5-dimethyl-1-piperazinyl)propyl]carbazole (rimcazole): irreversible ligands for the dopamine transporter.

作者信息

Husbands S M, Izenwasser S, Loeloff R J, Katz J L, Bowen W D, Vilner B J, Newman A H

机构信息

Psychobiology Section, National Institute on Drug Abuse-Intramural Research Program, Baltimore, Maryland 21224, USA.

出版信息

J Med Chem. 1997 Dec 19;40(26):4340-46. doi: 10.1021/jm9705519.

Abstract

Cocaine has been reported to bind to the dopamine transporter in a biphasic fashion, and it has been hypothesized that the low-affinity component may play a modulatory role in cocaine's psychomotor stimulant effects. In an effort to gain further insight into the roles of the two sites, we have prepared a series of irreversible ligands based on rimcazole (9-[3-(cis-3,5-dimethyl-1-piperazinyl)propyl]carbazole, 2), a compound that has been postulated to bind only to the low-affinity site. The alkylating moiety (isothiocyanate) is attached to the distal nitrogen of the piperazine ring via alkyl chains of varying lengths or directly attached to one of the aromatic groups. It was found that substitution on the piperazine nitrogen caused an initial decrease in affinity that was recovered as the alkyl chain length increased. Importantly, the analogue 16, with the highest affinity for the dopamine transporter (DAT), binds in a monophasic and irreversible manner, as evidenced by the greatly diminished binding of [3H]WIN 35,428 in tissue that had been preincubated with the ligand and then thoroughly washed using centrifugation. The dose-dependent reduction in Bmax was accompanied by a concentration-related decrease in KD values. This shift in KD to a lower value suggests that the preincubation with 16 produced a preferential irreversible binding to the low-affinity [3H]WIN 35,428 site on the dopamine transporter. These ligands may prove to be important tools with which to study the significance of the low-affinity site on the DAT. Since rimcazole does not share the behavioral profile of cocaine, and in fact appears to play a modulatory role, these compounds may provide leads for a novel cocaine-abuse treatment.

摘要

据报道,可卡因以双相方式与多巴胺转运体结合,并且据推测,低亲和力组分可能在可卡因的精神运动兴奋作用中发挥调节作用。为了进一步深入了解这两个位点的作用,我们基于利米卡唑(9-[3-(顺式-3,5-二甲基-1-哌嗪基)丙基]咔唑,2)制备了一系列不可逆配体,该化合物被假定仅与低亲和力位点结合。烷基化部分(异硫氰酸酯)通过不同长度的烷基链连接到哌嗪环的远端氮上,或直接连接到其中一个芳环上。发现哌嗪氮上的取代导致亲和力最初下降,但随着烷基链长度增加而恢复。重要的是,对多巴胺转运体(DAT)具有最高亲和力的类似物16以单相且不可逆的方式结合,这通过在与配体预孵育然后通过离心彻底洗涤的组织中[3H]WIN 35,428的结合大大减少来证明。Bmax的剂量依赖性降低伴随着KD值的浓度相关降低。KD向较低值的这种转变表明,用16预孵育会导致与多巴胺转运体上的低亲和力[3H]WIN 35,428位点发生优先不可逆结合。这些配体可能被证明是研究DAT上低亲和力位点重要性的重要工具。由于利米卡唑不具有可卡因的行为特征,实际上似乎发挥调节作用,这些化合物可能为新型可卡因滥用治疗提供线索。

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