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Scalable Synthesis of Biologically Relevant SpirocyclicPyrrolidines

机译:生物相关的螺环的可扩展合成吡咯烷类

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摘要

Synthetic approaches toward multigram preparation of spirocyclic α,α-disubstituted pyrrolidines from readily available starting materials are discussed. It was shown that although a number of synthetic methodologies have been known to date, many of the title compounds remain hardly accessible. The most appropriate literature method (which relied on reaction of imines and allyl magnesium halide, followed by bromocyclization) was identified and optimized. It was found that the method is most fruitful for simple non-functionalized substrates. Two novel approaches based on the Sakurai or Petasis reactions of cyclic ketones, followed by hydroboration–oxidation at the allyl moiety thus introduced, were elaborated. The latter method had the largest scope and was beneficial for the substrates containing organosulfur or protected amino functions. For the synthesis of 4-azaspiro[2.4]heptane, an alternative synthetic scheme commencing from tert-butyl cyclopropanecarboxylate (instead of the corresponding ketone) was developed. It was shown that the whole set of the methodologies developed can be used for the synthesis of various spirocyclic α,α-disubstitutedpyrrolidines—advanced building blocks of potential importanceto medicinal and agrochemistry—at up to a 100 g scale.
机译:讨论了从容易获得的起始原料制备多环螺旋α,α-二取代吡咯烷的合成方法。结果表明,尽管迄今为止已知许多合成方法,但许多标题化合物仍难以获得。确定并优化了最合适的文献方法(依赖于亚胺和烯丙基卤化镁的反应,然后进行溴环化)。已发现该方法对于简单的非功能化底物最为有效。阐述了两种基于环酮的Sakurai或Petasis反应,然后在如此引入的烯丙基部分进行硼氢化-氧化的新颖方法。后一种方法具有最大的范围,并且对于含有有机硫或受保护的氨基官能团的底物是有益的。为了合成4-氮杂螺[2.4]庚烷,开发了从环丙烷甲酸叔丁酯(而不是相应的酮)开始的替代合成方案。结果表明,所开发的整套方法可用于合成各种螺环的α,α-二取代吡咯烷类-潜在重要的先进组成部分到药用和农业化学领域-最高可达100克。

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