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阿替洛尔内酯的统一全合成,一种强效抗锥虫大环内酯家族。

A Unified Total Synthesis of the Actinoallolides, a Family of Potent Anti-Trypanosomal Macrolides.

机构信息

University Chemical Laboratory, University of Cambridge, Lensfield Road, Cambridge, CB2 1EW, UK.

出版信息

Angew Chem Int Ed Engl. 2020 Jan 20;59(4):1572-1576. doi: 10.1002/anie.201914042. Epub 2019 Dec 4.

Abstract

Trypanosoma protozoan parasites are the causative agents of Chagas disease and sleeping sickness, two neglected tropical diseases where there is an urgent need for improved treatments and the evaluation of promising drug leads like the actinoallolides. Enabled by the highly stereocontrolled aldol reactions of three chiral ketone building blocks, an efficient first total synthesis of the potent anti-trypanosomal macrolide (+)-actinoallolide A has been achieved in 17 steps and 8 % overall yield. Our convergent route features an adventurous ring-closing metathesis to form the requisite trisubstituted (8E)-alkene in the 12-membered macrolactone, followed by the controlled installation of the labile transannular hemiacetal. Late-stage diversification then provides ready access to the congeneric (+)-actinoallolides B-E.

摘要

原生动物寄生虫锥虫是恰加斯病和昏睡病的病原体,这两种被忽视的热带病迫切需要改进的治疗方法,并需要评估像 Actinoallolides 这样有前景的先导药物。通过三个手性酮构建块的高度立体控制的羟醛反应,可以在 17 步和 8%的总收率下有效地首次全合成有效的抗锥虫大环内酯(+)-Actinoallolide A。我们的汇聚路线具有冒险的环 closing 复分解反应,以在 12 元大环内酯中形成必需的三取代(8E)-烯烃,然后控制不稳定的反式环半缩醛的安装。晚期的多样化为同种(+)-Actinoallolides B-E 提供了便捷的途径。

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