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首页> 外文期刊>Current Organic Chemistry >Bioactive Heterocycles from Domino Wittig-Pericyclic Reactions
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Bioactive Heterocycles from Domino Wittig-Pericyclic Reactions

机译:多米诺骨牌维蒂希-周环反应的生物活性杂环

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摘要

Heterocycles present the core of many biologically or pharmaceutically interesting compounds. A new concept that addresses crucial issues of heterocycle synthesis such as selectivity of the actual ring closure step and tolerance of other functional groups, employs the cumulated ylide keteneylidenetriphenylphosphorane Ph3P=C=C=O. Featuring a unique combination of ylidic and ketene properties in a dipolar electronic structure, it reacts with derivatives of carboxylic acids bearing additional OH, NH-, SH- or CH-acidic groups. This reaction proceeds by a domino addition-Wittig olefination giving rise to the formation of the corresponding heterocycles with five- to seven-membered rings. Further pericyclic steps such as Diels-Alder cycloadditions, Claisen rearrangements, ene reactions, and various combinations thereof may ensue with the newly installed C=C bond. In some cases, the outcome of these processes is fully controllable by merely adjusting the external conditions. For example, allyl and cinnamyl α-hydroxycycloalkanoates could be selectively converted either to Claisen rearranged 3-allyltetronic acids or to Claisen-Conia rearranged 3-(spirocyclopropyl)-dihydrofuran-2,4-diones. The former furnished anti-HIV-active 5-spiro-3-(α-cyclopropylbenzyl)-tetronic acids upon Simmons-Smith reaction and the latter could be stereoselectively ring-opened with alcohols, amines and water to give herbicidal 3-(β-synalkoxy / amino)tetronic acids. Congenerous esters with di- or trialkyl substituted allyl residues undergo a formal [2,3]-sigmatropic rearrangement also proceeding via 3-(spirocyclopropyl)dihydrofuran-2,4-diones but leading to 3- exo-alkylidene-5-spirodihydrofuran-2,4-diones which in turn rapidly autooxidize to give potentially antimalarial spirotricyclic hemiketal endoperoxide lactones as products of an overall seven-step cascade.nnThis review takes stock of these and other recent developments in the field of domino Wittig-pericyclic synthesis of bioactive heterocycles.
机译:杂环化合物是许多生物学或药学上感兴趣的化合物的核心。一个解决杂环合成关键问题(例如实际的闭环步骤的选择性和其他官能团的耐受性)的新概念,采用了累积的内酯基亚乙基亚基内苯三基苯基磷烷Ph3P = C = C = O。它在偶极电子结构中具有独特的碘基和乙烯酮特性组合,可与带有其他OH,NH-,SH-或CH-酸性基团的羧酸衍生物反应。该反应通过多米诺加成反应-维蒂希烯化反应进行,从而形成具有五至七元环的相应杂环。新安装的C = C键可能会导致进一步的周环步骤,例如Diels-Alder环加成,Claisen重排,烯键反应及其各种组合。在某些情况下,仅通过调整外部条件就可以完全控制这些过程的结果。例如,烯丙基和肉桂基α-羟基环链烷酸酯可以选择性地转化为克莱森重排的3-烯丙基电子酸或克莱森-科尼亚重排的3-(螺环丙基)-二氢呋喃-2,4-二酮。前者在Simmons-Smith反应后提供抗HIV活性的5-spiro-3-(α-环丙基苄基)-四氢代酸,而后者可以与醇,胺和水进行立体选择开环,得到除草剂3-(β-顺烷氧基/氨基)反式酸。具有二或三烷基取代的烯丙基残基的同酸酯也经历了正式的[2,3]-σ重排,还通过3-(螺环丙基)二氢呋喃-2,4-二酮进行,但导致了3-外亚烷基-5-螺二氢呋喃-2 ,4-二酮,然后迅速自氧化产生潜在的抗疟疾的螺旋三环半酮过氧化物内酯,作为整个七步级联反应的产物。本综述总结了多米诺维蒂希-周环合成生物活性杂环领域的这些和其他最新进展。

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