Camps P, El Achab R, Görbig D M, Morral J, Muñoz-Torrero D, Badia A, Eladi Baños J, Vivas N M, Barril X, Orozco M, Luque F J
Laboratori de Química Farmacèutica, Facultat de Farmàcia, Universitat de Barcelona, Av. Diagonal 643, E-08028 Barcelona, Spain.
J Med Chem. 1999 Aug 26;42(17):3227-42. doi: 10.1021/jm980620z.
Eleven new 12-amino-6,7,10,11-tetrahydro-7, 11-methanocycloocta[b]quinoline derivatives [tacrine (THA)-huperzine A hybrids, rac-21-31] have been synthesized as racemic mixtures and tested as acetylcholinesterase (AChE) inhibitors. For derivatives unsubstituted at the benzene ring, the highest activity was obtained for the 9-ethyl derivative rac-20, previously prepared by our group. More bulky substituents at position 9 led to less active compounds, although some of them [9-isopropyl (rac-22), 9-allyl (rac-23), and 9-phenyl (rac-26)] show activities similar to that of THA. Substitution at position 1 or 3 with methyl or fluorine atoms always led to more active compounds. Among them, the highest activity was observed for the 3-fluoro-9-methyl derivative rac-28 [about 15-fold more active than THA and about 9-fold more active than (-)-huperzine A]. The activity of some THA-huperzine A hybrids (rac-19, rac-20, rac-28, and rac-30), which were separated into their enantiomers by chiral medium-pressure liquid chromatography (chiral MPLC), using microcrystalline cellulose triacetate as the chiral stationary phase, showed the eutomer to be always the levorotatory enantiomer, their activity being roughly double that of the corresponding racemic mixture, the distomer being much less active. Also, the activity of some of these compounds inhibiting butyrylcholinesterase (BChE) was tested. Most of them [rac-27-31, (-)-28, and (-)-30], which are more active than (-)-huperzine A as AChE inhibitors, turned out to be quite selective for AChE, although not so selective as (-)-huperzine A. Most of the tested compounds 19-31 proved to be much more active than THA in reversing the neuromuscular blockade induced by d-tubocurarine. Molecular modeling of the interaction of these compounds with AChE from Torpedo californica showed them to interact as truly THA-huperzine A hybrids: the 4-aminoquinoline subunit of (-)-19 occupies the same position of the corresponding subunit in THA, while its bicyclo[3.3.1]nonadiene substructure roughly occupies the same position of the corresponding substructure in (-)-huperzine A, in agreement with the absolute configurations of (-)-19 and (-)-huperzine A.
已合成了11种新的12-氨基-6,7,10,11-四氢-7,11-亚甲基环辛并[b]喹啉衍生物[他克林(THA)-石杉碱甲杂合物,rac-21 - 31],作为外消旋混合物进行合成,并作为乙酰胆碱酯酶(AChE)抑制剂进行测试。对于苯环未被取代的衍生物,我们小组之前制备的9-乙基衍生物rac-20具有最高活性。9位上取代基体积更大导致化合物活性降低,尽管其中一些[9-异丙基(rac-22)、9-烯丙基(rac-23)和9-苯基(rac-26)]的活性与THA相似。在1位或3位用甲基或氟原子取代总是会产生活性更高的化合物。其中,3-氟-9-甲基衍生物rac-28的活性最高[比THA活性高约15倍,比(-)-石杉碱甲活性高约9倍]。一些THA-石杉碱甲杂合物(rac-19、rac-20、rac-28和rac-30)通过使用微晶纤维素三乙酸酯作为手性固定相的手性中压液相色谱(手性MPLC)拆分为对映体,结果显示优映体总是左旋对映体,其活性大约是相应外消旋混合物的两倍,劣映体活性则低得多。此外,还测试了其中一些化合物抑制丁酰胆碱酯酶(BChE)的活性。它们中的大多数[rac-27 - 31、(-)-28和(-)-30]作为AChE抑制剂比(-)-石杉碱甲更具活性,结果证明对AChE具有相当高的选择性,尽管不如(-)-石杉碱甲那样具有选择性。大多数测试化合物19 - 31在逆转d-筒箭毒碱引起的神经肌肉阻滞方面比THA活性高得多。这些化合物与加州电鳐AChE相互作用的分子模型表明它们作为真正的THA-石杉碱甲杂合物相互作用:(-)-19的4-氨基喹啉亚基占据THA中相应亚基的相同位置,而其二环[3.3.1]壬二烯亚结构大致占据(-)-石杉碱甲中相应亚结构的相同位置,这与(-)-19和(-)-石杉碱甲的绝对构型一致。