Johansson G, Sundquist S, Nordvall G, Nilsson B M, Brisander M, Nilvebrant L, Hacksell U
Department of Organic Pharmaceutical Chemistry, Uppsala University, Sweden.
J Med Chem. 1997 Nov 7;40(23):3804-19. doi: 10.1021/jm970346t.
A series of 25 derivatives of the muscarinic antagonist 3-(2-furanyl)quinuclidin-2-ene (4) was synthesized and evaluated for muscarinic and antimuscarinic properties. Substitution at all three positions of the furan ring has been investigated. The affinities of the new compounds were determined by competition experiments in homogenates of cerebral cortex, heart, parotid gland, and urinary bladder from guinea pigs using (-)-[3H]-3-quinuclidinyl benzilate as the radioligand, and the antimuscarinic potency was determined in a functional assay on isolated guinea pig urinary bladder using carbachol as the agonist. Several of the novel derivatives displayed high muscarinic affinities. Whereas the affinity of lead compound 4 for cortical muscarinic receptors is moderate (Ki = 300 nM), it is much higher for the 5-methyl (48; Ki = 12 nM), 5-ethyl (52; Ki = 7.4 nM), 5-bromo (33; Ki = 6.4 nM), and 3-phenyl (49; Ki = 2.8 nM) substituted derivatives. The substituent-induced increases in affinity do not appear to be additive as a 5-bromo-3-phenyl (54), and a 5-methyl-3-phenyl (55) substitution pattern only slightly increases affinity (Ki = 1.55 and 2.39 nM, respectively). The conformational preferences of the 3-phenyl (49) and 5-phenyl (51) derivatives were studied by X-ray crystallography and molecular mechanics calculations. Because of the observed high affinity of 49, a series of 16 meta- and para-substituted analogues of 49 was synthesized and tested. The m-hydroxy derivative (68) exhibited more than 10-fold improvement in affinity as compared to 49. The structure-activity relationships of the new series are well described with QSAR and CoMFA models.
合成了一系列25种毒蕈碱拮抗剂3-(2-呋喃基)奎宁环-2-烯(4)的衍生物,并对其毒蕈碱和抗毒蕈碱特性进行了评估。研究了呋喃环所有三个位置的取代情况。使用(-)-[3H]-3-奎宁环基苯甲酸酯作为放射性配体,通过在豚鼠大脑皮层、心脏、腮腺和膀胱匀浆中的竞争实验测定新化合物的亲和力,并在以卡巴胆碱为激动剂的豚鼠离体膀胱功能试验中测定抗毒蕈碱效力。几种新型衍生物表现出高毒蕈碱亲和力。先导化合物4对皮层毒蕈碱受体的亲和力适中(Ki = 300 nM),而对于5-甲基(48;Ki = 12 nM)、5-乙基(52;Ki = 7.4 nM)、5-溴(33;Ki = 6.4 nM)和3-苯基(49;Ki = 2.8 nM)取代的衍生物,其亲和力要高得多。取代基引起的亲和力增加似乎不是累加的,因为5-溴-3-苯基(54)和5-甲基-3-苯基(55)取代模式仅略微增加亲和力(分别为Ki = 1.55和2.39 nM)。通过X射线晶体学和分子力学计算研究了3-苯基(49)和5-苯基(51)衍生物的构象偏好。由于观察到49具有高亲和力,合成并测试了一系列16种49的间位和对位取代类似物。间羟基衍生物(68)与49相比,亲和力提高了10倍以上。新系列的构效关系用QSAR和CoMFA模型得到了很好的描述。