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Regioselective monodeprotection of peracetylated carbohydrates

机译:过乙酰化碳水化合物的区域选择性单脱保护

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摘要

This protocol describes the regioselective deprotection of single hydroxyls in peracetylated monosaccharides and disaccharides by enzymatic or chemoenzymatic strategies. The introduction of a one-pot enzymatic step by using immobilized biocatalysts obviates the requirement to carry out tedious workups and time-consuming purifications. By using this straightforward protocol, different per-O-acetylated glycopyranosides (mono- or disaccharides, 1-substituted or glycals) can be transformed into a whole set of differentially monodeprotected 1-alcohols, 3-alcohols, 4-alcohols and 6-alcohols in high yields. These tailor-made glycosyl acceptors can then be used for stereoselective glycosylation for oligosaccharide and glycoderivative synthesis. They have been successfully used as building blocks to synthesize tailor-made di- and trisaccharides involved in the structure of lacto-N-neo-tetraose and precursors of the tumor-associated carbohydrate antigen T and the antitumoral drug peracetylated β-naphtyl-lactosamine. We are able to prepare a purified monoprotected carbohydrate in between 1 and 4 d. With this protocol, the small library of monodeprotected products can be synthesized in 1-2 weeks.
机译:该协议描述了通过酶促或化学酶促策略在过乙酰化单糖和二糖中单羟基的区域选择性去保护。通过使用固定化的生物催化剂引入一锅法酶促步骤,消除了进行乏味的后处理和费时的纯化的需求。通过使用这种简单的协议,可以将不同的过-O-乙酰化的吡喃葡萄糖苷(单糖或双糖,1-取代的或糖基的)转化为一整套不同的单脱保护的1-醇,3-醇,4-醇和6-醇。高产。这些定制的糖基受体然后可以用于寡糖的立体选择性糖基化和糖基衍生物的合成。它们已成功地用作合成特定的二糖和三糖的结构单元,这些糖和二糖和三糖参与了乳酸-N-新四糖的结构以及与肿瘤相关的碳水化合物抗原T和抗肿瘤药物过乙酰化的β-萘基-乳糖胺的前体。我们能够在1-4天内制备纯化的单保护碳水化合物。使用此协议,可以在1-2周内合成小型的单脱保护产品库。

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