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Atropisomerism: the effect of the axial chirality in bioactive compounds

机译:阻转异构性:生物活性化合物中轴向手性的影响

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摘要

Atropisomerism is a special kind of stereoisomeric relationship that arises from the freezing of a certain conformation of an organic molecule, associated with a high rotational barrier about a single covalent bond. Atropisomerism has been originally described in orto-functionalyzed biphenyl derivatives, but a lot of other organic functionalities can present this structural phenomenon, characterized by the presence of chiral properties in compounds that don't present classical stereogenic centers. Atropisomeric compounds, intermediates and catalysts have well-know importance in organic synthesis, but the influence of the axial chirality in substances able to modulate biological systems is still not very exploited in drug design and development. In this context, the present account describes the importance of this structural property in the medicinal chemistry of different classes of bioactive compounds or therapeutic agents, emphasizing how atropisomerism could affect the molecular recognition of a ligand or a prototype by the target bioreceptor.
机译:阻转异构是一种特殊的立体异构关系,其源于有机分子某种构象的冻结,与围绕单个共价键的高旋转势垒有关。阻转异构现象最初是在功能官能化的联苯衍生物中描述的,但是许多其他有机官能团也可以呈现这种结构现象,其特征是在不存在经典立体异构中心的化合物中存在手性。阻转异构化合物,中间体和催化剂在有机合成中具有众所周知的重要性,但是轴向手性对能够调节生物系统的物质的影响在药物设计和开发中仍未得到很好的利用。在此背景下,本发明描述了该结构性质在不同类别的生物活性化合物或治疗剂的药物化学中的重要性,强调了对位异构现象可能如何影响靶标生物受体对配体或原型的分子识别。

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