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有机催化不对称多组分级联反应合成连续取代的四氢萘醇。

Organocatalytic Asymmetric Multicomponent Cascade Reaction for the Synthesis of Contiguously Substituted Tetrahydronaphthols.

机构信息

Department of Chemistry, Aarhus University, DK-8000 Aarhus C, Denmark.

出版信息

J Am Chem Soc. 2021 Jun 2;143(21):8208-8220. doi: 10.1021/jacs.1c03923. Epub 2021 May 24.

Abstract

Isobenzopyrylium ions are unique, highly reactive, aromatic intermediates which are largely unexplored in asymmetric catalysis despite their high potential synthetic utility. In this study, an organocatalytic asymmetric multicomponent cascade via dienamine catalysis, involving a cycloaddition, a nucleophilic addition, and a ring-opening reaction, is disclosed. The reaction furnishes chiral tetrahydronaphthols containing four contiguous stereocenters in good to high yield, high diastereoselectivity (up to >20:1), and excellent enantioselectivity (93-98% ee). The obtained products are important synthetic intermediates, and it is demonstrated that they can be used for the generation of frameworks such as octahydrobenzo[]isoquinoline and [2.2.2]octane scaffolds. Furthermore, mechanistic experiments involving oxygen-18-labeling studies and density functional theory calculations provide a vivid picture of the reaction mechanism. Finally, the bioactivity of 16 representative tetrahydronaphthol compounds has been evaluated in U-2OS cancer cells with some compounds showing a unique profile and a clear morphological change.

摘要

异苯并吡喃鎓离子是一种独特的、高反应性的芳香族中间体,尽管它们具有很高的合成应用潜力,但在不对称催化中仍未得到充分研究。本研究通过烯胺催化,揭示了一种涉及环加成、亲核加成和开环反应的有机催化不对称多组分级联反应。该反应以良好到较高的收率、高非对映选择性(高达>20:1)和优异的对映选择性(93-98%ee)提供了含有四个连续立体中心的手性四氢萘醇。获得的产物是重要的合成中间体,并且证明它们可以用于生成八氢苯并[]异喹啉和[2.2.2]辛烷骨架等框架。此外,涉及氧-18 标记研究和密度泛函理论计算的机理实验为反应机制提供了生动的描述。最后,对 16 种代表性四氢萘醇化合物在 U-2OS 癌细胞中的生物活性进行了评估,一些化合物表现出独特的特征和明显的形态变化。

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