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Asymmetric methods for the synthesis of flavanones, chromanones, and azaflavanones

机译:黄烷酮,发色酮和氮杂黄烷酮的不对称合成方法

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摘要

Flavanones, chromanones, and related structures are privileged natural products that display a wide variety of biological activities. Although flavanoids are abundant in nature, there are a limited number of available general and efficient synthetic methods for accessing molecules of this class in a stereoselective manner. Their structurally simple architectures belie the difficulties involved in installation and maintenance of the stereogenic configuration at the C2 position, which can be sensitive and can undergo epimerization under mildly acidic, basic, and thermal reaction conditions. This review presents the methods currently used to access these related structures. The synthetic methods include manipulation of the flavone/flavanone core, carbon-carbon bond formation, and carbon-heteroatom bond formation. Flavanoids are plant-derived natural products. Although they are ubiquitous in nature, general asymmetric methods for their generation are rarer, due to the lability of the stereochemistry at C2. We discuss methods for the generation of enantio-enriched flavanones, chromanones, andazaflavanones, including chemical and enzymatic resolution, asymmetric reduction, and conjugate addition reactions.
机译:黄烷酮,发色酮和相关结构是特权天然产品,具有多种生物活性。尽管类黄酮在自然界中很丰富,但是以立体选择的方式访问这类分子的通用和有效的合成方法数量有限。它们的结构简单的体系结构掩盖了在C2位置安装和维持立体异构构型所涉及的困难,这可能很敏感,并且在弱酸性,碱性和热反应条件下会发生差向异构。这篇评论介绍了当前用于访问这些相关结构的方法。合成方法包括操纵黄酮/黄酮核,形成碳-碳键和形成碳-杂原子键。类黄酮是植物来源的天然产物。尽管它们本质上无处不在,但由于C2上立体化学的不稳定性,因此一般的不对称生成方法很少见。我们讨论了生成对映体富集的黄烷酮,发色酮和氮杂黄酮酮的方法,包括化学和酶促拆分,不对称还原和共轭加成反应。

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