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作为P物质拮抗剂关键组分的1,2,3-三取代环戊烷和环己烷的不对称合成

Asymmetric synthesis of 1,2,3-trisubstituted cyclopentanes and cyclohexanes as key components of substance p antagonists.

作者信息

Kuethe Jeffrey T, Wong Audrey, Wu Jimmy, Davies Ian W, Dormer Peter G, Welch Christopher J, Hillier Michael C, Hughes David L, Reider Paul J

机构信息

Department of Process Research, Merck & Co., Inc., P.O. Box 2000, Rahway, New Jersey 07065, USA.

出版信息

J Org Chem. 2002 Aug 23;67(17):5993-6000. doi: 10.1021/jo025883m.

Abstract

An efficient asymmetric synthesis of 1,2,3-trisubstituted cyclopentanes and cyclohexanes is described. Three methods were developed for the preparation of the 2,3-disubstituted cyclopentenones and cyclohexenones, which are key achiral building blocks. These intermediates are reduced catalytically with (R)-2-methyloxazaborolidine in high yield (82-98%) and excellent ee (89-96%). Directed reduction of the chiral allylic alcohols using Red-Al gives exclusively the 1,2-anti stereochemistry (>99:1). Epimerization of the ester center followed by saponification/crystallization affords the desired hydroxyacids in good yield (65-70%) and in high enantiomeric excess (>99%).

摘要

描述了一种高效的1,2,3-三取代环戊烷和环己烷的不对称合成方法。开发了三种制备2,3-二取代环戊烯酮和环己烯酮的方法,它们是关键的非手性构建单元。这些中间体用(R)-2-甲基恶唑硼烷进行催化还原,产率高(82-98%),对映体过量值优异(89-96%)。使用Red-Al对手性烯丙醇进行定向还原,仅得到1,2-反式立体化学产物(>99:1)。酯中心的差向异构化,然后进行皂化/结晶,以良好的产率(65-70%)和高对映体过量(>99%)得到所需的羟基酸。

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