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通过克脑文格尔缩合和分子内环化的全合成:天然产物的通用途径。

Total synthesis of flocoumafen via knoevenagel condensation and intramolecular ring cyclization: general access to natural products.

机构信息

Department of Neuroscience and Medical Research Institute, School of Medicine, Ewha Womans University, Seoul 158-710, Korea.

出版信息

Molecules. 2012 Feb 21;17(2):2091-102. doi: 10.3390/molecules17022091.

Abstract

The total synthesis and structure determination of cis- and trans-flocoumafen was described. The key synthetic steps involve Knoevenagel condensation with p-methoxybenzaldehyde, in situ decarboxylation and intramolecular ring cyclization to construct the tetralone skeleton. Stereospecific reduction of the O-alkylated ketone 13 afforded good yield of precusor alcohol 5. Final coupling of alcohol 5 with 4-hydroxy-coumarin yielded flocoumafen (1). Separation and structure determination of cis- and trans-flocoumafen through 2D NMR analyses-assisted computer simulation techniques for the evaluation of anticoagulant activities are reported for the first time. This method is useful for generating the core tetralone skeleton of 4-hydroxycoumarin derivatives and provides a generalized access to various warfarin type anticoagulants.

摘要

顺式和反式氟虫酰胺的全合成及结构确定。关键的合成步骤包括与对甲氧基苯甲醛的 Knoevenagel 缩合、原位脱羧和分子内环化以构建四氢萘酮骨架。O-烷基化酮 13 的立体特异性还原提供了前体醇 5 的高产率。最后,醇 5 与 4-羟基香豆素偶联得到氟虫酰胺(1)。通过二维 NMR 分析辅助计算机模拟技术对顺式和反式氟虫酰胺进行分离和结构确定,首次报道了它们的抗凝活性评估。该方法可用于生成 4-羟基香豆素衍生物的核心四氢萘酮骨架,并为各种华法林型抗凝剂提供了通用的途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1360/6268178/46444515d32a/molecules-17-02091-g001.jpg

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