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A Method for the Parallel Synthesis of Multiply Substituted Oxazolidinones

机译:平行取代的多重恶唑烷酮的合成方法

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摘要

There are many examples of both naturally occurring and synthetic molecules containing a 2-oxazolidinone ring that have significant biological activity. The oxazolidinone ring potentially has three sites for attachment of diversity elements. A synthesis that can provide for inclusion of diversity elements at all three positions should be a powerful method for the preparation of oxazolidinone libraries. In this paper we present the preparation of a 3 * 3 * 3 array yielding 27 different products with minimal workup, high yields, and, most importantly, high purity. Using an intramolecular acylnitrene-mediated aziridination reaction, we have prepared (triphenylmethoxymethyl)-3-oxa-1-azabicyclo[3.1.0]hexan-2-one as a starting material for library generation. The first substitution involves opening the aziridine ring of the azabicyclo[3.1.0]hexane ring system using a Grignard reagent. The nitrogen of the oxazolidinone is now ready for substitution via alkylation or arylation. Removing the trityl protecting group via esterification under mildly acidic conditions accomplishes the final substitution.
机译:含有2-恶唑烷酮环的天然存在的分子和合成的分子都有许多实例,它们具有显着的生物学活性。恶唑烷酮环可能具有三个连接多样性元素的位点。可以在所有三个位置包含多样性元素的合成方法应该是制备恶唑烷酮文库的有力方法。在本文中,我们介绍了制备3 * 3 * 3阵列的方法,该阵列可产生27种不同的产品,且所需的后处理量最少,产率高,最重要的是高纯度。使用分子内酰基亚硝基介导的叠氮化反应,我们制备了(三苯甲氧基甲基)-3-氧杂-1-氮杂双环[3.1.0]己-2-酮作为生成文库的起始原料。第一取代涉及使用格氏试剂打开氮杂双环[3.1.0]己烷环系统的氮丙啶环。恶唑烷酮的氮现在准备通过烷基化或芳基化取代。在弱酸性条件下通过酯化除去三苯甲基保护基团即可完成最终取代。

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