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首页> 外文期刊>Chemical record >Indole Synthesis by Radical Cyclization of o-Alkenylphenyl Isocyanides and Its Application to the Total Synthesis of Natural Products
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Indole Synthesis by Radical Cyclization of o-Alkenylphenyl Isocyanides and Its Application to the Total Synthesis of Natural Products

机译:邻烯基苯基异氰酸酯的自由基环化吲哚合成及其在天然产物的全合成中的应用

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摘要

Development of indole synthesis by tin-mediated radical cyclization of o-alkenylphenyl isocyanide is described. Upon heating o-alkenylphenyl isocyanide in the presence of tri-n-butyltin hydride and AIBN, 2-stannyl-3-substituted indole was formed via 5-exo-trig cyclization of the imidoyl radical intermediate. After acidic workup, 3-substituted indoles were isolated. For substrates bearing simple alkyl groups, a substantial amount of tetrahydroquinoline derivatives were generated through 6-endo-trig cyclization. This undesired cyclization was suppressed by using an excess amount (five equivalents based on o-alkenylphenyl isocyanide) of ethanethiol instead of tri-n-butyltin hydride. The 2-stannylindole intermediates proved to be a suitable substrate for Stille coupling, giving 2,3-disubstituted indoles in a one-pot procedure. In addition, the 2-stannylindole intermediates could be converted to 2-iodoindoles by treatment with iodine or N-iodosuccinimide. The 2-iodoindoles thus obtained served as good substrates for Heck reactions, Stille couplings, Suzuki couplings, and palladium-mediated carbonylations, to afford a variety of 2,3-disubstituted indoles. The utility of this protocol was demonstrated by application to synthetic studies on gelsemine and discorhabdin A, and the total synthesis of an aspidosperma alkaloid, (-)-vindoline.
机译:描述了通过锡介导的邻烯基苯基异氰酸酯的自由基环化来发展吲哚合成的方法。在氢化三正丁基锡和AIBN存在下加热邻烯基苯基异氰酸酯后,通过亚氨酰基自由基中间体的5-外-trig环化反应形成2-苯乙烯基-3-取代的吲哚。在酸性处理后,分离出3-取代的吲哚。对于带有简单烷基的底物,通过6-内-trig环化产生了大量的四氢喹啉衍生物。通过使用过量(基于邻烯基苯基异氰酸酯为5当量)的乙硫醇代替氢化三正丁基锡,可以抑制这种不希望的环化。事实证明2-苯乙烯基吲哚中间体是用于Stille偶联的合适底物,以一锅法得到2,3-二取代的吲哚。此外,通过用碘或N-碘代琥珀酰亚胺处理,2-苯乙烯基吲哚中间体可转化为2-碘吲哚。如此获得的2-碘吲哚作为Heck反应,Stille偶联,Suzuki偶联和钯介导的羰基化的良好底物,提供了各种2,3-二取代的吲哚。该协议的实用性通过应用于对明胶亚胺和discorhabdin A的合成研究以及天冬子碱生物碱(-)-长春花碱的全合成而得到证明。

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