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6,7-苯并吗啡烷衍生物作为N-甲基-D-天冬氨酸受体通道复合物拮抗剂的合成及构效关系

Synthesis and structure-activity relationships of 6,7-benzomorphan derivatives as antagonists of the NMDA receptor-channel complex.

作者信息

Grauert M, Bechtel W D, Ensinger H A, Merz H, Carter A J

机构信息

Department of Medicinal Chemistry, Boehringer Ingelheim, KG, Ingelheim am Rhein, Federal Republic of Germany.

出版信息

J Med Chem. 1997 Aug 29;40(18):2922-30. doi: 10.1021/jm970131j.

Abstract

We have synthesized a series of stereoisomeric 6,7-benzomorphan derivatives with modified N-substituents and determined their ability to antagonize the N-methyl-D-aspartate (NMDA) receptor-channel complex in vitro and in vivo. The ability of the compounds to displace [3H]-MK-801 from the channel site of the NMDA receptor in rat brain synaptosomal membranes and to inhibit NMDA-induced lethality in mice was compared with their ability to bind to the mu opioid receptor. Examination of structure-activity relationships showed that the absolute stereochemistry is critically important for differentiating these two effects. (-)-1R,9 beta,2"S-enantiomers exhibited a higher affinity for the NMDA receptor-channel complex than for the mu opioid receptor. The aromatic hydroxy function was also found to influence the specificity of the compounds. Shift of the hydroxy group from the 2'-position to the 3'-position significantly increased the affinity for the NMDA receptor-channel complex and considerably reduced the affinity for the mu opioid receptor. From this series of 6,7-benzomorphan derivatives, the compound 15cr.HCl [(2R)-[2 alpha, 3(R*),6 alpha]-1,2,3,4,5,6-hexahydro-3-(2-methoxypropyl)-6,11,11-trimethyl -2,6-methano-3-benzazocin-9-ol hydrochloride] was chosen as the optimum candidate for further pharmacological investigations.

摘要

我们合成了一系列具有修饰 N-取代基的立体异构 6,7-苯并吗啡烷衍生物,并测定了它们在体外和体内拮抗 N-甲基-D-天冬氨酸(NMDA)受体通道复合物的能力。将这些化合物从大鼠脑突触体膜中 NMDA 受体通道位点置换[3H]-MK-801 的能力以及抑制小鼠中 NMDA 诱导的致死率的能力与其与 μ 阿片受体结合的能力进行了比较。结构-活性关系研究表明,绝对立体化学对于区分这两种效应至关重要。(-)-1R,9β,2"S-对映体对 NMDA 受体通道复合物的亲和力高于对 μ 阿片受体的亲和力。还发现芳族羟基官能团会影响化合物的特异性。羟基从 2'-位转移到 3'-位会显著增加对 NMDA 受体通道复合物的亲和力,并大大降低对 μ 阿片受体的亲和力。从这一系列 6,7-苯并吗啡烷衍生物中,选择化合物 15cr.HCl [(2R)-[2α,3(R*),6α]-1,2,3,4,5,6-六氢-3-(2-甲氧基丙基)-6,11,11-三甲基-2,6-亚甲基-3-苯并氮杂环辛-9-醇盐酸盐]作为进一步药理研究的最佳候选物。

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