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Practical Glucosylations and Mannosylations Using Anomeric Benzoyloxy as a Leaving Group Activated by Sulfonium Ion

机译:实际的糖基化和甘露糖基化使用端基苯甲酰氧基作为S离子活化的离去基团

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One obstacle for practical glycosylations is the high cost of promoters and low-temperature equipment. This problem has been at least partially solved by using MeSCH_(2)Cl/KI as a low-cost promoter system. MeSCH_(2)Cl has an estimated cost of <$1/mol compared with $1741/mol for AgOTf and $633/mol for TMSOTf. This new promoter system is capable of activating various leaving groups including anomeric Cl, F, trichloroacetimidate, and acyloxy groups. Stable and easy-to-prepare anomeric benzoloxy carbohydrate donors were investigated in the glycosylations of carbohydrates, aliphatic alcohols, amino acids, steroids, and nucleoside acceptors. Most of these glycosylations were operationally simple with fast reaction rates and moderate yields of 35–79%. In addition, direct glycosylations of nucleosides using less than 2 equiv of anomeric benzoloxy donors and high stereoselective mannosylation have been achieved. From an economic point of view, this glycosylation method should be highly applicable to industrial processes.
机译:实际糖基化的一个障碍是启动子和低温设备的高成本。通过使用MeSCH_(2)Cl / KI作为低成本启动子系统,至少已部分解决了此问题。 MeSCH_(2)Cl的估计成本<$ 1 / mol,而AgOTf为$ 1741 / mol,TMSOTf为$ 633 / mol。这种新的启动子系统能够激活各种离去基团,包括异头Cl,F,三氯乙酰亚胺酸酯和酰氧基。在碳水化合物,脂肪族醇,氨基酸,类固醇和核苷受体的糖基化过程中,研究了稳定且易于制备的异头苯甲酰氧基碳水化合物供体。这些糖基化大多数操作简单,反应速度快,产率中等,为35-79%。另外,已经实现了使用少于2当量的异头苯甲酰氧基供体的核苷直接糖基化和高立体选择性甘露糖基化。从经济角度来看,这种糖基化方法应高度适用于工业过程。

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