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A sterically encumbered photoredox catalyst enables the unified synthesis of the classical lignan family of natural products

机译:在空间上受阻的光氧化还原催化剂可实现经典木脂素天然产物家族的统一合成

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摘要

Herein, we detail a unified synthetic approach to the classical lignan family of natural products that hinges on divergence from a common intermediate that was strategically identified from nature's biosynthetic blueprints. Efforts toward accessing the common intermediate through a convergent and modular approach resulted in the discovery of a sterically encumbered photoredox catalyst that can selectively generate carbonyl ylides from electron-rich epoxides. These can undergo concerted [3 + 2] dipolar cycloadditions to afford tetrahydrofurans, which were advanced (2–4 steps) to at least one representative natural product or natural product scaffold within all six subtypes in classical lignans. The application of those synthetic blueprints to the synthesis of heterolignans bearing unnatural functionality was demonstrated, which establishes the potential of this strategy to accelerate structure–activity-relationship studies of these natural product frameworks and their rich biological activity.
机译:本文中,我们详细介绍了经典的天然木脂素家族天然产品的统一合成方法,该方法取决于与从自然生物合成蓝图战略性确定的常见中间体的差异。通过会聚和模块化方法来尝试访问通用中间体的努力导致发现了一种空间受限的光氧化还原催化剂,该催化剂可以从富含电子的环氧化物中选择性地生成羰基化物。这些可以经历一致的[3 + 2]偶极环加成反应,得到四氢呋喃,在经典木脂素的所有六种亚型中,四氢呋喃被推进(2-4个步骤)至至少一种代表性的天然产物或天然产物支架。这些合成蓝图在具有非天然功能的杂木聚糖的合成中的应用得到了证明,这确立了该策略加速这些天然产物框架及其丰富生物活性的结构-活性-关系研究的潜力。

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