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Aryne Annulation Reactions Toward the Synthesis of Heterocyclic Molecules

机译:aryne环化反应合成杂环分子

摘要

The last decade has seen an outgrowth in the development of synthetic methodologies exploiting benzyne. The unique ability of this reactive intermediate to directly furnish ortho-difuntionalized aromatic systems first stoked interest in this research group as a possible partner in asymmetric arylation reactions. Since our initial forays, we have expanded our synthetic strategies to include bond insertions, cycloadditions, condensations, and multicomponent reactions. The first project discussed in this volume is the development of an aryne annulation strategy for constructing common, synthetically useful heterocyclic structures in a convergent manner. We have developed a convergent approach to indoles and indolines. Likewise, through an orthogonal functional group intallation upon an enamine substrate, isoquinolines, quinolines, and isoquinolones can all be accessed as well. In this manner, we have been able to generate an array of functionalized heterocycles, including some that are prohibited by traditional means of synthesis. We have also begun to understand some of the reactivity trends in this context for the elusive aryne reaction partner. The development of the aryne annulation strategy for the synthesis of isoquinolines directly led to the shortest reported total synthesis of the opiate alkaloid papaverine, and the tetrahydroisoquinoline anticancer antibiotic quinocarcin. Our more recent, ongoing efforts toward the synthesis of the bis-tetrahydroisoquinoline antitumor molecule jorumycin and its many structural relatives are detailed herein. Jorumycin has been targeted through a combination of aryne annulation and acyl-alkylation/condensation methodologies aimed at the synthesis of a functionalized bis-isoquinoline intermediate. Reduction of this key bis-isoquinoline to a bis-tetrahydroisoquinoline and subsequent lactamization will provide the pentacyclic core of jorumycin and related natural products in only three steps from simple isoquinoline building blocks. The final project described is the development of several different aryne multicomponent reactions to form novel carbo- and heterocyclic scaffolds, including iminoisobenzfurans, iminoindenones, dibenzoketocaprolactams, and 2-quinolones.ud
机译:在过去的十年中,利用苯并炔的合成方法学的发展已不复存在。这种反应性中间体直接提供邻二官能化芳族体系的独特能力首先引起了该研究小组的兴趣,认为它是不对称芳构化反应的可能伙伴。自从最初的尝试以来,我们已经扩展了合成策略,包括键插入,环加成,缩合和多组分反应。本卷中讨论的第一个项目是开发芳烃环化策略,以收敛的方式构建通用的,合成上有用的杂环结构。我们已经针对吲哚和二氢吲哚开发了一种融合方法。同样,通过烯胺底物上的正交官能团镶嵌,也可以同时获得异喹啉,喹啉和异喹啉酮。通过这种方式,我们已经能够生成一系列官能化的杂环,包括一些传统合成方法所禁止的杂环。在这种情况下,我们也开始了解难以捉摸的芳烃反应分子的反应性趋势。用于合成异喹啉的芳烃环化策略的发展直接导致鸦片生物碱罂粟碱和四氢异喹啉抗癌抗生素喹诺酮的总合成最短。本文详述了我们对合成双-四氢异喹啉抗肿瘤分子柔红霉素及其许多结构亲戚的最新努力。焦红霉素已通过芳烃环化和酰基烷基化/缩合方法的组合来靶向,旨在合成功能化的双异喹啉中间体。从简单的异喹啉构建基团仅需三个步骤,就可以将这种关键的双异喹啉还原为双四氢异喹啉并随后进行内酰胺化,从而提供约莫霉素和相关天然产物的五环核。所描述的最终项目是开发几种不同的芳烃多组分反应以形成新颖的碳环和杂环骨架,包括亚氨基异苯并呋喃,亚氨基茚满,二苯并酮基丙内酰胺和2-喹诺酮。

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