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Total synthesis of (±)-rocaglamide via oxidation-initiated nazarov cyclization

机译:通过氧化引发的Nazarov环化全合成(±)-rocaglamide

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This article describes the evolution of a Nazarov cyclization-based synthetic strategy targeting the anticancer, antiinflammatory, and insecticidal natural product (±)-rocaglamide. Initial pursuit of a polarized heteroaromatic Nazarov cyclization to construct the congested cyclopentane core revealed an unanticipated electronic bias in the pentadienyl cation. This reactivity was harnessed in a successful second-generation approach using an oxidation-initiated Nazarov cyclization of a heteroaryl alkoxyallene. Full details of these two approaches are given, as well as the characterization of undesired reaction pathways available to the Nazarov cyclization product. A sequence of experiments that led to an understanding of the unexpected reactivity of this key intermediate is described, which culminated in the successful total synthesis of (+)-rocaglamide.
机译:本文介绍了针对抗癌,抗炎和杀虫的天然产物(±)-rocaglamide的基于Nazarov环化的合成策略的演变。最初追求极化杂芳Nazarov环化反应以构建拥挤的环戊烷核,发现戊二烯基阳离子存在意料之外的电子偏向。在成功的第二代方法中,利用杂芳基烷氧基丙二烯的氧化引发的Nazarov环化,利用了这种反应性。给出了这两种方法的全部详细信息,以及对Nazarov环化产物可用的不良反应途径的表征。描述了一系列导致对该关键中间体产生意外反应性的实验,最终成功地合成了(+)-rocaglamide。

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