Nilsson B M, Sundquist S, Johansson G, Nordvall G, Glas G, Nilvebrant L, Hacksell U
Department of Organic Pharmaceutical Chemistry, Uppsala Biomedical Center, Uppsala University, Sweden.
J Med Chem. 1995 Feb 3;38(3):473-87. doi: 10.1021/jm00003a011.
A number of 3-heteroaryl-substituted quinuclidin-3-ol and quinuclidin-2-ene derivatives have been prepared and evaluated for muscarinic and antimuscarinic properties. The affinities of the new compounds (13, 14, 16-32, and 36-52a,b) were tested in homogenates of cerebral cortex, heart, parotid gland, and urinary bladder from guinea pigs using (-)-[3H]-3-quinuclidinyl benzilate [(-)-[3H]QNB] as the radioligand and in a functional assay using isolated guinea pig urinary bladder. The present compounds behaved as competitive muscarinic antagonists in the urinary bladder. The highest receptor binding affinity, Ki (cortex) = 9.6 nM, was observed for 3-(2-benzofuranyl)quinuclidin-2-ene (31). The corresponding 3-benzofuranyl (36) and 3-benzothienyl (37) homologues had about 3.5-fold lower affinity for cortical muscarinic receptors. All quinuclidin-3-ol derivatives (14 and 16-25) had lower binding affinities for the different muscarinic receptor subtypes than the corresponding quinuclidin-2-ene analogues when examined in the various tissue homogenates. In general, the new compounds showed low subtype selectivity. The structure-affinity relationships are discussed in terms of differences in proton basicity of the azabicyclic nitrogen and differences in geometric, conformational, and/or electronic properties of the compounds. The cortical antimuscarinic potency is also related to the complementarity of the compounds to the putative binding site of the muscarinic m1 receptor.
已制备了多种3-杂芳基取代的奎宁环-3-醇和奎宁环-2-烯衍生物,并对其毒蕈碱和抗毒蕈碱特性进行了评估。使用(-)-[3H]-3-奎宁环基苯甲酸酯[(-)-[3H]QNB]作为放射性配体,在豚鼠大脑皮层、心脏、腮腺和膀胱的匀浆中测试了新化合物(13、14、16 - 32和36 - 52a,b)的亲和力,并在分离的豚鼠膀胱功能试验中进行了测试。本化合物在膀胱中表现为竞争性毒蕈碱拮抗剂。对于3-(2-苯并呋喃基)奎宁环-2-烯(31),观察到最高的受体结合亲和力,Ki(皮层)= 9.6 nM。相应的3-苯并呋喃基(36)和3-苯并噻吩基(37)同系物对皮层毒蕈碱受体的亲和力低约3.5倍。在各种组织匀浆中检测时,所有奎宁环-3-醇衍生物(14和16 - 25)对不同毒蕈碱受体亚型的结合亲和力均低于相应的奎宁环-2-烯类似物。一般来说,新化合物表现出低亚型选择性。根据氮杂双环氮的质子碱性差异以及化合物的几何、构象和/或电子性质差异讨论了结构-亲和力关系。皮层抗毒蕈碱效力也与化合物与毒蕈碱m1受体假定结合位点的互补性有关。