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Beyond simple proton transfer processes: domino reactions between 4-substituted indoles and nitroethene as a new gateway to ergot alkaloids

机译:超越简单的质子转移过程:4-取代的吲哚与硝基乙烯之间的多米诺反应作为麦角生物碱的新途径

摘要

The multimodal biology activity of ergot alkaloids is known by humankind since middle ages. Synthetically modified ergot alkaloids are used for the treatment of various medical conditions. Despite the great progress in organic syntheses, the total synthesis of ergot alkaloids remains a great challenge due to the complexity of their polycyclic structure with multiple stereogenic centres. This project has developed a new domino reaction between indoles bearing a Michael acceptor at the 4 position and nitroethene, leading to potential ergot alkaloid precursors in highly enantioenriched form. The reaction was optimised and applied to a large variety of substrate with good results. Even if unfortunately all attempts to further modify the obtained polycyclic structure failed, it was found a reaction able to produce the diastereoisomer of the polycyclic product in excellent yields. The compounds synthetized were characterized by NMR and ESIMS analysis confirming the structure and their enantiomeric excess was determined by chiral stationary phase HPLC. The mechanism of the reaction was evaluated by DFT calculations, showing the formation of a key bicoordinated nitronate intermediate, and fully accounting for the results observed with all substrates. The relative and absolute configuration of the adducts were determined by a combination of NMR, ECD and computational methods.
机译:麦角生物碱的多峰生物学活性自中世纪以来就为人类所知。合成修饰的麦角生物碱可用于治疗各种疾病。尽管有机合成取得了长足的进步,但麦角生物碱的全合成仍然面临巨大挑战,因为它们的多环结构具有多个立体生成中心。该项目开发了在4位带有迈克尔受体的吲哚与硝基乙烯之间的新多米诺骨牌反应,从而导致了高度对映体富集形式的潜在麦角生物碱前体。对反应进行了优化,并将其应用于多种底物,效果良好。不幸的是,即使所有试图进一步修饰所获得的多环结构的尝试都失败了,仍发现能够以优异的产率生产多环产物的非对映异构体的反应。通过NMR和ESIMS分析对合成的化合物进行表征,从而确认了结构,并且通过手性固定相HPLC确定了其对映体过量。通过DFT计算评估了反应的机理,显示了关键的双配位硝酸盐中间体的形成,并充分考虑了在所有底物上观察到的结果。加合物的相对和绝对构型是通过NMR,ECD和计算方法的组合确定的。

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  • 作者

    Romanini Simone;

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  • 年度 2014
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  • 原文格式 PDF
  • 正文语种 en
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