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利用高价碘试剂的全合成天然产物。

Total synthesis of natural products using hypervalent iodine reagents.

机构信息

Laboratoire de Méthodologie et Synthèse de Produits Naturels, Département de Chimie, Université du Québec à Montréal Montréal, QC, Canada.

出版信息

Front Chem. 2015 Jan 5;2:115. doi: 10.3389/fchem.2014.00115. eCollection 2014.

Abstract

We present a review of natural product syntheses accomplished in our laboratory during the last 5 years. Each synthetic route features a phenol dearomatization promoted by an environmentally benign hypervalent iodine reagent. The dearomatizations demonstrate the "aromatic ring umpolung" concept, and involve stereoselective remodeling of the inert unsaturations of a phenol into a highly functionalized key intermediate that may contain a quaternary carbon center and a prochiral dienone system. Several new oxidative strategies were employed, including transpositions (1,3-alkyl shift and Prins-pinacol), a polycyclization, an ipso rearrangement, and direct nucleophilic additions at the phenol para position. Several alkaloids, heterocyclic compounds, and a polycyclic core have been achieved, including sceletenone (a serotonin reuptake inhibitor), acetylaspidoalbidine (an antitumor agent), fortucine (antiviral and antitumor), erysotramidine (curare-like effect), platensimycin (an antibiotic), and the main core of a kaurane diterpene (immunosuppressive agent and stimulator of apoptosis). These concise and in some cases enantioselective syntheses effectively demonstrate the importance of hypervalent iodine reagents in the total synthesis of bioactive natural products.

摘要

我们对过去 5 年在实验室中完成的天然产物合成进行了综述。每条合成路线都以环境友好的高价碘试剂促进的酚去芳构化为特色。这些去芳构化反应体现了“芳香环反转”的概念,涉及将酚的惰性不饱和键立体选择性地重排为高度官能化的关键中间体,该中间体可能含有季碳原子和前手性二烯酮系统。我们采用了几种新的氧化策略,包括移位反应(1,3-烷基移位和 Prins-频哪醇重排)、多环化、ipso 重排以及酚对位的直接亲核加成。我们已经实现了几种生物碱、杂环化合物和多环核心的合成,包括塞来酮(一种 5-羟色胺再摄取抑制剂)、乙酰阿泊多林(一种抗肿瘤剂)、福提宁(抗病毒和抗肿瘤)、erysotramidine(箭毒样作用)、platensimycin(一种抗生素)以及贝壳杉二萜的主要核心(免疫抑制剂和凋亡诱导剂)。这些简洁且在某些情况下具有对映选择性的合成有效地证明了高价碘试剂在生物活性天然产物全合成中的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/419d/4283662/7e61800a5736/fchem-02-00115-g0001.jpg

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