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Allylative Approaches to the Synthesis of Complex Guaianolide Sesquiterpenes from Apiaceae and Asteraceae

机译:菊科和菊科合成复杂的瓜亚胺酯倍半萜烯的烯丙基化方法

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摘要

With hundreds of unique members isolated to date, guaianolide lactones represent a particularly prolific class of terpene natural products. Given their extensive documented therapeutic properties and fascinating chemical structures, these metabolites have captivated the synthetic chemistry community for many decades. As a result of divergent biosynthetic pathways, which produce a wide array of stereochemical and oxidative permutations, a unifying synthetic pathway to this broad family of natural products is challenging. Herein we document the evolution of a chiral-pool-based synthetic program aimed at accessing an assortment of guaianolides, particularly those from the plant family Apiaceae as well as Asteraceae, members of which possess distinct chemical substructures and necessitate deviating synthetic plat- forms. An initial route employing the linear monoterpene linalool generated a lower oxidation state guaianolide but was not compatible with the majority of family members. A double-allylation disconnection using a carvone-derived fragment was then developed to access first an Asteraceae-type guaianolide and then various Apiaceae congeners. Finally, using these findings in conjunction with a tandem polyoxygenation cascade, we developed a pathway to highly oxygenated nortrilobolide. A variety of interesting observations in metal-mediated aldehyde allylation and alkene polyoxygenation are reported and discussed.
机译:迄今为止,有数百种独特的成员被隔离,愈创木酚内酯代表一类特别丰富的萜烯天然产物。鉴于其广泛的治疗特性和令人着迷的化学结构,这些代谢物已吸引了合成化学界数十年之久。由于产生广泛的立体化学和氧化置换的不同生物合成途径,因此通往这一广泛的天然产物家族的统一合成途径具有挑战性。本文中,我们记录了一种基于手性池的合成程序的演变,该程序旨在获取各种愈创木酚内酯,特别是来自菊科和菊科的植物,其中成员具有独特的化学亚结构,因此有必要偏离合成平台。使用线性单萜芳樟醇的初始途径产生了较低的氧化态愈创木酚内酯,但与大多数家庭成员不相容。然后开发了使用香芹酮衍生的片段进行双烯丙基化的连接,以首先获得菊科类型的愈创木酚,然后获得各种菊科同源物。最后,将这些发现与串联多加氧级联结合使用,我们开发了通往高度氧化的降糖三醇的途径。报告并讨论了金属介导的醛烯丙基化和烯烃多加氧反应中的各种有趣观察。

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