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首页> 外文期刊>Journal of Medicinal Chemistry >Synthesis, molecular modeling, and opioid receptor affinity of 9, 10-diazatricyclo(4.2.1.1(2,5))decanes and 2,7-diazatricyclo(4.4.0. 0(3,8))decanes structurally related to 3,8-diazabicyclo(3.2. 1)octanes.
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Synthesis, molecular modeling, and opioid receptor affinity of 9, 10-diazatricyclo(4.2.1.1(2,5))decanes and 2,7-diazatricyclo(4.4.0. 0(3,8))decanes structurally related to 3,8-diazabicyclo(3.2. 1)octanes.

机译:9、10-二氮杂三环(4.2.1.1(2,5))癸烷和2,7-二氮杂三环(4.4.0.0(3,8))癸烷的合成,分子建模和阿片受体亲和力与3, 8-二氮杂双环(3.2.1)辛烷。

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摘要

Various lines of evidence, including molecular modeling studies, imply that the endoethylenic bridge of 3,8-diazabicyclo[3.2. 1]octanes (DBO, 1) plays an essential role in modulating affinity toward mu opioid receptors. This hypothesis, together with the remarkable analgesic properties observed for N(3) propionyl, N(8) arylpropenyl derivatives (2) and of the reverted isomers (3), has prompted us to insert an additional endoethylenic bridge on the piperazine moiety in order to identify derivatives with increased potency toward this receptor class. In the present report, we describe the synthesis of the novel compounds 9,10-diazatricyclo[4.2. 1.1(2,5)]decane (4) and 2,7-diazatricyclo[4.4.0.0(3,8)]decane (5), as well as the representative derivatives functionalized at the two nitrogen atoms by propionyl and arylpropenyl groups (6a-e, 7a-d). Opioid receptor binding assays revealed that, among the compounds tested, the N-propionyl-N-cinnamyl derivatives 6a and 7a exhibited the highest mu-receptor affinity, and remarkably, compound 7a displayed in vivo (mice) an analgesic potency 6-fold that of morphine.
机译:包括分子模型研究在内的各种证据都暗示3,8-二氮杂双环[3.2。 1]辛烷(DBO,1)在调节对μ阿片受体的亲和力中起重要作用。该假设以及对N(3)丙酰基,N(8)芳基丙烯基衍生物(2)和还原的异构体(3)观察到的显着镇痛特性促使我们在哌嗪部分按顺序插入一个附加的内烯桥以确定对这种受体类别具有增强效力的衍生物。在本报告中,我们描述了新型化合物9,10-二氮杂三环[4.2]的合成。 1.1(2,5)]癸烷(4)和2,7-二氮杂三环[4.4.0.0(3,8)]癸烷(5)以及在两个氮原子上被丙酰基和芳基丙烯基官能化的代表性衍生物( 6a-e,7a-d)。阿片受体结合试验表明,在所测试的化合物中,N-丙酰基-N-肉桂基衍生物6a和7a表现出最高的mu受体亲和力,而值得注意的是,化合物7a在体内(小鼠)的镇痛效果是其的6倍。吗啡。

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