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Isoxazolidine: A Privileged Scaffold for Organic and Medicinal Chemistry

机译:异恶唑烷:有机和药物化学的特权支架

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摘要

The isoxazolidine ring represents one of the privileged structures in medicinal chemistry, and there have been an increasing number of studies on isoxazolidine and isoxazolidine-containing compounds. Optimization of the 1,3-dipolar cycloaddition (1,3-DC), original methods including electrophilic or palladium-mediated cyclization of unsaturated hydroxylamine, has been developed to obtain isoxazolidines. Novel reactions involving the isoxazolidine ring have been highlighted to accomplish total synthesis or to obtain bioactive compounds, one of the most significant examples being probably the thermic ring contraction applied to the total synthesis of (+)-Gelsemoxonine. The unique isoxazolidine scaffold also exhibits an impressive potential as a mimic of nucleosides, carbohydrates, PNA, amino acids, and steroid analogs. This review aims to be a comprehensive and general summary of the different isoxazolidine syntheses, their use as starting building blocks for the preparation of natural compounds, and their main biological activities.
机译:异恶唑烷环代表药物化学中的优先结构之一,并且对异恶唑烷和含异恶唑烷的化合物的研究越来越多。 1,3-偶极环加成(1,3-DC)的最优化方法,包括亲电或钯介导的不饱和羟胺环化的原始方法,已得到开发以获得异恶唑烷。已经强调了涉及异恶唑烷环的新反应以完成总合成或获得生物活性化合物,最重要的例子之一可能是将热环收缩应用于(+)-Gelsemoxonine的总合成。独特的异恶唑烷支架还具有模仿核苷,碳水化合物,PNA,氨基酸和类固醇类似物的潜力。这篇综述旨在对不同的异恶唑烷合成方法,它们作为制备天然化合物的起始组成部分及其主要生物学活性的全面概括性概述。

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