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首页> 外文期刊>Angewandte Chemie >A Kinetic Dearomatization Strategy for an Expedient Biomimetic Route to the Bielschowskysin Skeleton
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A Kinetic Dearomatization Strategy for an Expedient Biomimetic Route to the Bielschowskysin Skeleton

机译:对Bielschowskysin骨架的权宜之计仿生途径的动力学避免策略

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摘要

Bielschowskysin (1), the flagship of the furanocembranoid diterpene family, has attracted attention from chemists owing to its intriguing and daunting polycyclic architecture and medicinal potential against lung cancer. The high level of functionalization of 1 poses a considerable challenge to synthesis. Herein, a stereoselective furan dearomatization strategy of furanocembranoids was achieved via the intermediacy of chlorohydrins. The stereochemical course of the kinetic dearomatization was established, and the C3 configuration of the resulting exo-enol ether intermediates proved to be essential to complete the late-stage transannular [2+2] photocycloaddition. Overall, this biomimetic strategy starting from the natural product acerosolide (9) featured an unprecedented regio- and highly stereoselective furan dearomatization, which provided rapid access to the pivotal exo-enol ethers enroute to the intricate bielschowskyane skeleton.
机译:Bielschowskysin(1)是呋喃布杂交地段家族的旗舰,由于其有趣和肺癌的药用潜力而引起了化学家的关注。 1的高水平官能化为合成构成了相当大的挑战。 在此,通过氯醇的中间性实现了呋喃布杂交的立体选择性呋喃脱落策略。 建立了动力学的立体化学过程,所以得到的外烯醚中间体的C3构型证明是必要的,以完成后阶段的长期变性[2 + 2]光电载入。 总体而言,这种从天然产物的灭菌剂(9)开始的仿生策略(9)是一个前所未有的重组和高度立体声选择性的呋喃亲爱的,这提供了快速进入枢轴外烯醇的exers途径,以途径到复杂的Bielschowskyane骨架。

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