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首页> 外文期刊>Journal of Medicinal Chemistry >Synthesis and biological evaluation of tropane-like 1-(2-(bis(4-fluorophenyl)methoxy)ethyl)-4-(3-phenylpropyl)piperazine (GBR 12909) analogues.
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Synthesis and biological evaluation of tropane-like 1-(2-(bis(4-fluorophenyl)methoxy)ethyl)-4-(3-phenylpropyl)piperazine (GBR 12909) analogues.

机译:托烷样的1-(2-(双(4-(氟代苯基)甲氧基)乙基)-4-(3-苯基丙基)哌嗪(GBR 12909)类似物的合成和生物学评估。

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摘要

We have prepared azabicyclo[3.2.1] derivatives (C-3-substituted tropanes) that bind with high affinity to the dopamine transporter and inhibit dopamine reuptake. Within the series, 3-[2-[bis-(4-fluorophenyl)methoxy]ethylidene]-8-methyl-8-azabicyclo[3.2.1] octane (8) was found to have the highest affinity and selectivity for the dopamine transporter. These azabicyclo[3.2.1] (bridged piperidine) series of compounds differ from the well-known benztropines by a 2-carbon spacer between C-3 and a diarylmethoxy moiety. Interestingly, these new compounds demonstrated a much lower affinity for the muscarinic-1 site, at least a 100-fold decrease compared to benztropine. Replacing N-methyl with N-phenylpropyl in two of the compounds resulted in a 3-10-fold increase in binding affinity for the dopamine transporter. However, those compounds lost selectivity for the dopamine transporter over the serotonin transporter. Replacement of the ether oxygen in the diarylmethoxy moiety with a nitrogen atom gave relatively inactive amines, indicating the important role which is played by the ether oxygen in transporter binding. Reduction of the C-3 double bond in 8 gave 3 alpha-substituted tropanes, as shown by X-ray crystallographic analyses of 11, 12, and 19. The 3 alpha-substituted tropanes had lower affinity and less selectivity than the comparable unsaturated ligands.
机译:我们已经制备了氮杂双环[3.2.1]衍生物(C-3取代的托烷),它们与多巴胺转运蛋白具有高亲和力并抑制多巴胺的再摄取。在该系列中,发现3- [2- [双-(4-氟苯基)甲氧基]亚乙基] -8-甲基-8-氮杂双环[3.2.1]辛烷(8)对多巴胺的亲和力和选择性最高。运输者。这些氮杂双环[3.2.1](桥联哌啶)系列化合物与众所周知的苯甲平不同,其C-3和二芳基甲氧基部分之间具有2-碳间隔基。有趣的是,这些新化合物对毒蕈碱-1位点的亲和力要低得多,与苯甲平相比降低了至少100倍。用两种化合物中的N-苯基丙基取代N-甲基导致对多巴胺转运蛋白的结合亲和力提高3-10倍。但是,这些化合物相对于5-羟色胺转运蛋白失去了对多巴胺转运蛋白的选择性。用氮原子代替二芳基甲氧基部分中的醚氧得到相对惰性的胺,表明醚氧在转运蛋白结合中起重要作用。如对11、12和19的X射线晶体学分析所示,在8中C-3双键的还原得到3个α-取代的托烷。与同等的不饱和配体相比,3个α-取代的托烷具有更低的亲和力和更低的选择性。

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