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首页> 外文期刊>Journal of Medicinal Chemistry >Synthesis and Pharmacology of Site Specific Cocaine Abuse Treatment Agents: 8-Substituted Isotropane (3-Azabicyclo(3.2.1)octane) Dopamine Uptake Inhibitors.
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Synthesis and Pharmacology of Site Specific Cocaine Abuse Treatment Agents: 8-Substituted Isotropane (3-Azabicyclo(3.2.1)octane) Dopamine Uptake Inhibitors.

机译:特定部位可卡因滥用治疗剂的合成和药理作用:8取代的异方烷(3-氮杂双环(3.2.1)辛烷)多巴胺摄取抑制剂。

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A series of 8-substituted-3-azabicyclo[3.2.1]octanes (isotropanes) were synthesized and tested for inhibitor potency using [(3)H]WIN 35,428 binding at the dopamine (DA) transporter, [(3)H]citalopram binding at the serotonin (5-HT) transporter, and [(3)H]DA uptake assays. The synthesis started with a Mannich condensation of cyclopentanone, benzylamine, and fomaldehyde to afford N-benzyl-3-azabicyclo[3.2.1]octan-8-one (6). The 8-phenyl group was introduced by Grignard addition to ketone 6 or nucleophilic displacement via a triflate of the corresponding alcohol 7a. The 8beta-phenyl-8alpha-alcohols from Grignard addition generally have low affinity for the two transporters and do not effectively inhibit the uptake of [(3)H]DA. The 8beta-phenyl compound (14) without the hydroxyl group at C-8 was much more potent (22-fold) for [(3)H]WIN 35,428 binding inhibition than the corresponding 8beta-phenyl-8alpha-hydroxy compound (7a). The 8alpha-phenyl compound 8a was almost as potent as cocaine in binding to the DAtransporter (IC(50) = 234 nM vs 159 nM for cocaine), whereas the C-8 epimer, compound 14, was somewhat less potent (IC(50) = 785 nM). The lower potency of 14 (beta-orientation of 8-phenyl group) as compared to 8a (alpha-orientation) was unexpected, based on modeling studies comparing the new compounds to WIN 35,065-2, an analogue of cocaine. The benzhydryl ethers at C-8 (17), analogous to the benztropines, had better selectivity than the corresponding phenyl compounds, 8a and 14, for the DA transporter as compared to the 5-HT transporter. The isotropane and benzisotropine analogues seem to bind in a manner that is more similar to that of the benztropine compounds 5 rather than those of cocaine and WIN 35,065-2.
机译:合成了一系列的8-取代-3-氮杂双环[3.2.1]辛烷(异养烷),并使用在多巴胺(DA)转运蛋白[[3] H]上结合的[(3)H] WIN 35,428测试了抑制剂的效价。西酞普兰在5-羟色胺(5-HT)转运蛋白上的结合,以及[(3)H] DA摄取分析。合成开始于环戊酮,苄胺和甲醛的曼尼希缩合反应,得到N-苄基-3-氮杂双环[3.2.1] octan-8-(6)。通过相应的醇7a的三氟甲磺酸酯的格利雅(Grignard)加成,将8-苯基引入酮6或亲核取代。来自格利雅(Grignard)加成物的8beta-苯基-8alpha-醇通常对这两种转运蛋白的亲和力低,并且不能有效抑制[(3)H] DA的吸收。 C [8]处无羟基的8β-苯基化合物(14)对[(3)H] WIN 35,428的结合抑制作用比相应的8β-苯基-8α-羟基化合物(7a)强得多(22倍) 。 8α-苯基化合物8a与DAtransporter的结合几乎与可卡因一样有效(IC(50)= 234 nM,可卡因为159 nM),而C-8差向异构体化合物14的效力稍差(IC(50 )= 785 nM)。根据将新化合物与可卡因类似物WIN 35,065-2进行比较的模型研究,出乎意料的是14(8-苯基基团的β-方向)与8a(α-方向)相比更低的效力。与5-HT转运蛋白相比,C-8(17)上的苯甲醚对苯甲酰转运蛋白的选择性好于相应的苯基化合物8a和14。异托烷和苯并异托平类似物似乎以与苯并品类化合物5更相似的方式结合,而不是与可卡因和WIN 35,065-2相似。

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