Graduate School of Pharmaceutical Sciences, Osaka University, Yamada-oka, Suita, Japan.
Chemistry. 2012 Oct 22;18(43):13861-70. doi: 10.1002/chem.201200376. Epub 2012 Sep 11.
A route for the asymmetric synthesis of (-)-stenine, a member of the Stemona alkaloid family used as folk medicine in Asian countries, is described. The key features of the sequence employed include stereoselective transformations on a cyclohexane ring controlled by a chiral auxiliary unit and an intramolecular Mitsunobu reaction to construct the perhydroindole ring system. By using an intermediate in the route to (-)-stenine, an asymmetric synthesis of 9a-epi-stenine was also executed. The C(9a) stereocenter in 9a-epi-stenine was installed by using a Staudinger/aza-Wittig reaction of a keto-azide precursor followed by reduction of the resulting imine. The results of this effort demonstrate the applicability of the chiral auxiliary based strategy to the preparation of naturally occurring alkaloids that contain highly functionalized cyclohexane cores.
描述了(-)-stenine 的不对称合成途径,(-)-stenine 是一种用于亚洲国家民间医学的斯替诺生物碱家族成员。所采用的序列的关键特征包括通过手性辅助单元控制的环己烷环的立体选择性转化和分子内 Mitsunobu 反应来构建全氢吲哚环系统。通过使用(-)-stenine 路线中的中间体,还执行了 9a-epi-stenine 的不对称合成。在 9a-epi-stenine 中,C(9a) 立体中心是通过酮-叠氮化物前体的 Staudinger/aza-Wittig 反应以及随后还原所得亚胺来安装的。这项努力的结果表明,基于手性辅助的策略适用于制备含有高度官能化环己烷核心的天然存在的生物碱。