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Access to a Key Building Block for the Prostaglandin Family via Stereocontrolled Organocatalytic Baeyer-Villiger Oxidation

机译:通过立体控制有机催化Baeyer-Villiger氧化,进入前列腺素家族的关键构建块

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摘要

A new protocol for the construction of a crucial bicyclic lactone of prostaglandins using a stereocontrolled organocatalytic Baeyer-Villiger (B-V) oxidation was developed. The key B-V oxidation of a racemic cyclobutanone derivative with aqueous hydrogen peroxide has enabled an early-stage construction of a bicyclic lactone skeleton in high enantiomeric excess (up to 95%). The generated bicyclic lactone is fully primed with two desired stereocenters and enabled the synthesis of the entire family of prostaglandins according to Corey's route. Furthermore, the reactivity and enantioselectivity of B-V oxidation of racemic bicyclic cyclobutanones were evaluated and 90-99% ee was obtained, representing one of the most efficient routes to chiral lactones. This study further facilitates the synthesis of prostaglandins and chiral lactone-containing natural products to promote drug discovery.
机译:开发了使用立体控制有机催化Baeyer-Villiger(B-V)氧化的前列腺素的施工新的新型方案。 与过氧化氢水性环丁酮衍生物的关键B-V氧化具有高映体过量的双环内酯骨架的早期构建(高达95%)。 产生的双环内酯完全用两种所需的立体封闭器灌注并根据Corey的路线使整个前列腺素的合成。 此外,评价外消旋双环丁酮的B-V氧化的反应性和对辅助性,并获得90-99%EE,代表手性内酯的最有效途径之一。 本研究进一步促进了前列腺素和含手肾内酯的天然产物的合成,以促进药物发现。

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