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从表氯醇出发,通过少至五步化学反应即可合成天然或内源性甾体。

Synthetic nat- or ent-steroids in as few as five chemical steps from epichlorohydrin.

机构信息

Dartmouth College, Department of Chemistry, Burke Laboratory, Hanover, New Hampshire 03755, USA.

Dartmouth College, Geisel School of Medicine, Department of Molecular and Systems Biology, The Norris Cotton Cancer Center, Lebanon, New Hampshire 03756, USA.

出版信息

Nat Chem. 2018 Jan;10(1):70-77. doi: 10.1038/nchem.2865. Epub 2017 Sep 25.

Abstract

Today, more than 100 Food and Drug Administration-approved steroidal agents are prescribed daily for indications including heart failure, inflammation, pain and cancer. While triumphs in organic chemistry have enabled the establishment and sustained growth of the steroid pharmaceutical industry, the production of highly functionalized synthetic steroids of varying substitution and stereochemistry remains challenging, despite the numerous reports of elegant strategies for their de novo synthesis. Here, we describe an advance in chemical synthesis that has established an enantiospecific means to access novel steroids with unprecedented facility and flexibility through the sequential use of two powerful ring-forming reactions: a modern metallacycle-mediated annulative cross-coupling and a new acid-catalysed vinylcyclopropane rearrangement cascade. In addition to accessing synthetic steroids of either enantiomeric series, these steroidal products have been selectively functionalized within each of the four carbocyclic rings, a synthetic ent-steroid has been prepared on a multigram scale, the enantiomer of a selective oestrogen has been synthesized, and a novel ent-steroid with growth inhibitory properties in three cancer cell lines has been discovered.

摘要

如今,每天有超过 100 种经美国食品和药物管理局批准的甾体药物被用于治疗心力衰竭、炎症、疼痛和癌症等疾病。尽管已有许多关于从头合成这些高度官能化的合成甾体的优雅策略的报道,但有机化学的成功使甾体药物工业得以建立并持续发展,具有不同取代基和立体化学的高度官能化合成甾体的生产仍然具有挑战性。在这里,我们描述了化学合成方面的一项进展,该进展通过连续使用两种强大的成环反应:现代金属环介导的环化交叉偶联和新的酸催化乙烯基环丙烷重排级联反应,为获得新型甾体化合物提供了一种对映选择性的手段,这种方法具有前所未有的便利性和灵活性。除了获得任意对映体系列的合成甾体外,这些甾体产物在四个碳环中的每一个都可以进行选择性官能化,已在多克规模上制备了合成的 ent-甾体,选择性雌激素的对映体已被合成,并且在三种癌细胞系中发现了具有生长抑制特性的新型 ent-甾体。

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