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新型功能性M1选择性毒蕈碱激动剂。2. 3-吡嗪基-1,2,5,6-四氢-1-甲基吡啶的合成及构效关系。M1药效团分子模型的构建。

Novel functional M1 selective muscarinic agonists. 2. Synthesis and structure-activity relationships of 3-pyrazinyl-1,2,5,6-tetrahydro-1-methylpyridines. Construction of a molecular model for the M1 pharmacophore.

作者信息

Ward J S, Merritt L, Klimkowski V J, Lamb M L, Mitch C H, Bymaster F P, Sawyer B, Shannon H E, Olesen P H, Honoré T

机构信息

Lilly Research Laboratories, Lilly Corporate Center, Indianapolis, Indiana 46285.

出版信息

J Med Chem. 1992 Oct 30;35(22):4011-9. doi: 10.1021/jm00100a005.

Abstract

A series of 3-(3-substituted-pyrazinyl)-1,2,5,6-tetrahydro-1-methylpyridines were synthesized and found to have high affinity for central muscarinic receptors. The ability of some of these compounds to inhibit the electrically stimulated twitch of the guinea pig vas deferens indicated that the compounds were M1 agonists. M1 agonist activity was related to the length of the side chain attached to the pyrazine ring, with maximal activity being obtained with the hexyloxy side chain. The (hexyloxy)pyrazine 3f lacked M2 agonist activity as it failed to affect the guinea pig atria and was also relatively devoid of M3 agonist activity as determined by its lack of tremorogenic and sialogogic effects in mice. A comparison of the M1 agonist efficacy of these pyrazines and related 1,2,5-thiadiazoles and 1,2,5-oxadiazoles suggested that M1 efficacy was related to the magnitude of electrostatic potential located over the nitrogens of the respective heterocycles. The heteroatom directly attached to the 3 position of the pyrazine or 1,2,5-thiadiazole heterocycle markedly influenced the M1 efficacy of the compounds by determining the energetically favorably conformers for rotation about the bond connecting the tetrahydropyridyl ring and the heterocycle. A three-dimensional model for the M1-activating pharmacophore was proposed based on computational studies and the model of the muscarinic pharmacophore proposed by Schulman.

摘要

合成了一系列3-(3-取代吡嗪基)-1,2,5,6-四氢-1-甲基吡啶,发现它们对中枢毒蕈碱受体具有高亲和力。其中一些化合物抑制豚鼠输精管电刺激抽搐的能力表明这些化合物是M1激动剂。M1激动剂活性与连接到吡嗪环的侧链长度有关,己氧基侧链具有最大活性。(己氧基)吡嗪3f缺乏M2激动剂活性,因为它对豚鼠心房无影响,并且根据其在小鼠中缺乏震颤和催涎作用确定也相对缺乏M3激动剂活性。对这些吡嗪以及相关的1,2,5-噻二唑和1,2,5-恶二唑的M1激动剂效力的比较表明,M1效力与各个杂环氮原子上的静电势大小有关。直接连接到吡嗪或1,2,5-噻二唑杂环3位的杂原子通过确定围绕连接四氢吡啶环和杂环的键旋转的能量有利构象,显著影响化合物的M1效力。基于计算研究和舒尔曼提出的毒蕈碱药效团模型,提出了M1激活药效团的三维模型。

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