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The Barbier-Type Allylation/Lactamization Cascade Route to Isoindolinones and the Heck-Type Annulation Route to Isoindolo2,1-a quinolines

机译:Barbier型烯丙基化/内酰胺化级联途径为异吲哚啉酮类,Heck型环化途径为异吲哚2,1-a喹啉类

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摘要

In this paper, we report the construction of pharmacologically relevant isoindolinones and isoindolo2,1-a quinolines through the Zn-mediated Barbier-type allylation/lactamization sequential reactions and intramolecular Heck annulation reactions, respectively. The Zn-mediated Barbier-type allylation/lactamization sequential reactions of imine systems derived from alkyl 2-formylbenzoates afforded a library of N-substituted 3-allyl-isoindolinone scaffolds. Then, this route was applied to assemble various N-(2-haloaryl)-3-allyl-isoindolinone derivatives, which were subsequently subjected to the Pd-catalyzed intramolecular Heck-type annulation reaction to afford the corresponding isoindolo2,1-a quinoline frameworks. We have shown a formal synthesis of the bio-active isoindolo2,1-a quinoline system 1g by synthesizing the dione system 12, which was an intermediate in the Ishihara's scheme pertaining to the synthesis of the bio-active isoindolo2,1-a quinoline system 1g.
机译:本文分别报道了通过Zn介导的Barbier型烯丙基化/内酰胺化顺序反应和分子内Heck环化反应构建药理学相关的异吲哚啉酮和异吲哚[2,1-a]喹啉。由烷基 2-甲酰基苯甲酸酯衍生的亚胺体系的 Zn 介导的 Barbier 型烯丙基化/内酰胺化顺序反应提供了 N-取代的 3-烯丙基异吲哚啉酮支架库。然后,将该路线应用于组装各种N-(2-卤芳基)-3-烯丙基异吲哚啉酮衍生物,随后进行Pd催化的分子内Heck型环化反应,得到相应的异吲哚[2,1-a]喹啉骨架。我们通过合成二酮系统12展示了生物活性异吲哚[2,1-a]喹啉系统1g的正式合成,二酮系统是石原方案中与合成生物活性异吲哚[2,1-a]喹啉系统1g有关的中间体。

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