Che D, Wegge T, Stubbs M T, Seitz G, Meier H, Methfessel C
Institut für Pharmazeutische Chemie, Universität Marburg, Marbacher Weg 6, D-35032 Marburg/Lahn, Germany.
J Med Chem. 2001 Jan 4;44(1):47-57. doi: 10.1021/jm000949w.
A new strategy for the straightforward synthesis of novel racemic epibatidine analogues is presented, in which the 2-chloropyridinyl moiety of epibatidine is bioisosterically replaced by differently substituted pyridazine rings. A key step of the new syntheses is the inverse type Diels-Alder reaction of the electron-rich enol ether 13 with the electron-deficient diazadiene systems of the 1,2,4, 5-tetrazines 14a-d to yield the novel pyridazine analogues of (+/-)-epibatidine 18, 19, 22, and 24. In addition preparation of the N-substituted derivatives, such as 26 and 28, is described. The structures of the novel epibatidine analogues were assigned on the basis of spectral data, that of compound 24 being additionally verified by X-ray crystallography exhibiting two racemic solid-state conformations in the crystal lattice and representing the first X-ray structure of an unprotected 7-azabicyclo[2.2.1]heptane moiety. The nAChR agonist activity of the racemic compounds 18, 19, 22, 24, and 28 was assayed in vitro by whole-cell current recordings from Xenopus oocytes expressing different recombinant nicotinic receptors from the rat. Among the compounds synthesized and tested, the pyridazine analogue 24 of (+/-)-epibatidine and its N-methyl derivative 28 were found to be the most active ones retaining much of the potency of natural epibatidine but with a substantially improved selectivity ratio between the alpha4beta2 and alpha3beta4 subtypes.
本文提出了一种直接合成新型外消旋埃博霉素类似物的新策略,其中埃博霉素的2-氯吡啶基部分被不同取代的哒嗪环生物电子等排体取代。新合成方法的关键步骤是富电子烯醇醚13与缺电子的1,2,4,5-四嗪14a-d的二氮杂二烯体系进行逆Diels-Alder反应,生成新型(±)-埃博霉素类似物18、19、22和24的哒嗪类似物。此外,还描述了N-取代衍生物如26和28的制备。新型埃博霉素类似物的结构根据光谱数据确定,化合物24的结构通过X射线晶体学进一步验证,其在晶格中呈现两种外消旋固态构象,代表了未保护的7-氮杂双环[2.2.1]庚烷部分的首个X射线结构。通过从表达大鼠不同重组烟碱受体的非洲爪蟾卵母细胞进行全细胞电流记录,体外测定了外消旋化合物18、19、22、24和28的nAChR激动剂活性。在合成和测试的化合物中,(±)-埃博霉素的哒嗪类似物24及其N-甲基衍生物28被发现是活性最高的,保留了天然埃博霉素的大部分效力,但α4β2和α3β4亚型之间的选择性比有显著提高。