首页> 外文期刊>The Journal of Organic Chemistry >Stereoselective synthesis of polyhydroxylated indolizidines based on pyridinium salt photochemistry and ring rearrangement metathesis
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Stereoselective synthesis of polyhydroxylated indolizidines based on pyridinium salt photochemistry and ring rearrangement metathesis

机译:基于吡啶鎓盐光化学和环重排易位的多羟基吲哚并咪唑立体选择性合成

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摘要

Ruthenium-catalyzed ring rearrangement metathesis (RRM) reactions of stereochemically diverse, differentially protected 4-N-allylacetamidocyclopenten-3,5-diols, prepared by using pyridinium salt photochemistry, have been explored as part of a program to develop novel routes for the synthesis of polyhydroxylated indolizidines. The RRM reactions, which produce selectively protected 1-acetyl-2-allyl-3-hydroxy-1,2,3,6-tetrahydropyridines, were found to take in high yields and with high levels of regaoselectivity. The significance of RRM reactions of 4-N-allylacetamidocyclopenten-3,5-diols in the context of polyhydroxylated indolizidine synthesis is demonstrated by an application to the concise preparation of the potent glycosidase inhibitor, (-)-swainsonine.
机译:已开发了使用吡啶鎓盐光化学方法制备的立体化学多样的,差异保护的4-N-烯丙基乙酰胺基环戊烯-3,5-二醇的钌催化的环重排复分解(RRM)反应,该程序是开发新颖合成途径的计划的一部分多羟基吲哚并dol啶。发现产生选择性保护的1-乙酰基-2-烯丙基-3-羟基-1,2,3,6-四氢吡啶的RRM反应具有高收率和高水平的重选择性。通过在强力糖苷酶抑制剂(-)-swainsonine的简明制备中的应用,证明了在多羟基化吲哚并咪唑合成中4-N-烯丙基乙酰胺基环戊烯-3,5-二醇的RRM反应的重要性。

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