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麻醉受体介导现象的探针。37. 最后一对氧化物桥连苯吗喃(邻位和对位β-异构体及其N-苯乙基类似物)的合成与阿片样物质结合亲和力,以及邻位和对位δ-异构体的N-苯乙基类似物的合成。

Probes for narcotic receptor mediated phenomena. 37. Synthesis and opioid binding affinity of the final pair of oxide-bridged phenylmorphans, the ortho- and para-b-isomers and their N-phenethyl analogues, and the synthesis of the N-phenethyl analogues of the ortho- and para-d-isomers.

作者信息

Kurimura Muneaki, Liu Hehua, Sulima Agnieszka, Hashimoto Akihiro, Przybyl Anna K, Ohshima Etsuo, Kodato Shinichi, Deschamps Jeffrey R, Dersch Christina M, Rothman Richard B, Lee Yong Sok, Jacobson Arthur E, Rice Kenner C

机构信息

Drug Design and Synthesis Section, Chemical Biology Research Branch, National Institute on Drug Abuse, National Institutes of Health, Department of Health and Human Services, 5625 Fishers Lane, Room 4N03, Bethesda, Maryland 20892-9415, USA.

出版信息

J Med Chem. 2008 Dec 25;51(24):7866-81. doi: 10.1021/jm800913d.

Abstract

In the isomeric series of 12 racemic topologically rigid N-methyl analogues of oxide-bridged phenylmorphans, all but two of the racemates, the ortho- and para-b-oxide-bridged phenylmorphans 20 and 12, have remained to be synthesized. The b-isomers were very difficult to synthesize because of the highly strained 5,6-trans-fused ring junction that had to be formed. Our successful strategy required functionalization of the position para (or ortho) to a fluorine atom on the aromatic ring using an electron-withdrawing nitro group to activate that fluorine. The racemic N-phenethyl analogues 24 and 16 were moderately potent kappa-receptor antagonists in the [(35)S]GTPgammaS assay. We synthesized the N-phenethyl-substituted oxide-bridged phenylmorphans in the ortho- and para-d-oxide-bridged phenylmorphan series (51 and 52) which had not been previously evaluated using contemporary receptor binding assays to see whether they also have higher affinity for opioid receptors than their N-methyl relatives 46 and 47.

摘要

在12种外消旋拓扑刚性的氧化桥联苯基吗喃N-甲基类似物的异构体系列中,除了两种外消旋体,即邻位和对位β-氧化桥联苯基吗喃20和12外,其余的都有待合成。由于必须形成高度张力的5,6-反式稠合环连接,β-异构体很难合成。我们成功的策略是利用吸电子硝基活化芳环上氟原子对位(或邻位)的位置进行官能化。在[(35)S]GTPγS试验中,外消旋N-苯乙基类似物24和16是中等效力的κ-受体拮抗剂。我们合成了邻位和对位δ-氧化桥联苯基吗喃系列(51和52)中的N-苯乙基取代的氧化桥联苯基吗喃,此前尚未使用当代受体结合试验对其进行评估,以确定它们对阿片受体的亲和力是否也高于其N-甲基类似物46和47。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/180f/2605521/3399bcfaf88a/nihms78004f1.jpg

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