Convenient Synthesis of Highly Functionalized, 3,4-Disubstituted Indole Building Blocks

Sonia R. Miranda, P. López‐Alvarado, C. Avendaño, J. Menéndez
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引用次数: 8

Abstract

Several 3,4-disubstituted indole building blocks were synthesized, containing a one-carbon functional group at C-4 and a three-carbon chain bearing at least one  functional group. A C-4 functionalized indole derivative was prepared by application of the Leimgruber-Batcho reaction. Several three-carbon chains were subsequently installed at the indole C-3 position. In the first strategy employed, a Mannich reaction was followed by the creation of a C-C bond by phosphine-induced generation of a 3-methyleneindolenine species, which was trapped by diethyl malonate. Alternatively, a Vilsmeier formylation at C-3 was followed by Knoevenagel or Wittig reactions or by treatment with ethyl diazoacetate in the presence of a Lewis acid. Direct introduction of the three-carbon chain at C-3 using a Lewis acid-catalyzed Michael reaction was also achieved. Further functionalization of the benzylic position attached to C-4 by attachment of a nitro group was carried out, but preparation of a tricyclic welwistatin fragment by intramolecular nitroalkane acylation or in- tramolecular Henry reactions was not possible.
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高功能化3,4-二取代吲哚构建块的便捷合成
合成了几种3,4-二取代吲哚构建块,它们在C-4上含有一个单碳官能团和一个至少含有一个官能团的三碳链。采用Leimgruber-Batcho反应制备了C-4功能化吲哚衍生物。随后在吲哚C-3位置上安装了几个三碳链。在采用的第一种策略中,在曼尼希反应之后,由膦诱导生成的3-亚甲基吲哚啉形成一个C-C键,该键被丙二酸二乙酯捕获。或者,在C-3的Vilsmeier甲酰化反应之后进行Knoevenagel或Wittig反应或在Lewis酸存在下用重氮乙酸乙酯处理。用Lewis酸催化的Michael反应也实现了在C-3上直接引入三碳链。对C-4上的苯基进行了进一步的官能化,但通过分子内硝基烷酰化或分子内亨利反应制备三环韦氏汀片段是不可能的。
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