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Regioselective Silyl/Acetate Exchange of Disaccharides Yields Advanced Glycosyl Donor and Acceptor Precursors

机译:二糖的区域选择性甲硅烷基/乙酸酯交换产生高级糖基供体和受体前体

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摘要

Glycoconjugates are comprised of carbohydrate building blocks linked together in a multitude of ways giving rise to diverse biological functions. Carbohydrates are especially difficult to synthetically manipulate due to the similar reactivity of their numerous and largely equivalent hydroxyl groups. Hence, methodologies for both the efficient protection and selective modification of carbohydrate alcohols are considered important synthetic tools in organic chemistry. When per-O-TMS protected mono- or disaccharides in a mixture of pyridine and acetic anhydride are treated with acetic acid, regioselective exchange of silicon for acetate protecting groups occurs. Acid concentration, thermal conditions and microwave assistance mediate the silyl/acetate exchange reaction. Regiocontrol is achieved by limiting the equivalents of acetic acid and microwave irradiation hastens the process. We coined the term Regioselective Silyl Exchange Technology (ReSET) to describe this process, which essentially sets the protecting groups anew. To demonstrate the scope of the reaction, the conditions were applied to lactose, melibiose, cellobiose and trehalose. ReSET provided rapid access to a wide range of orthogonally protected disaccharides that would otherwise require multiple synthetic steps to acquire. The resulting bi-functional molecules are poised to serve as modular building blocks for more complex glycoconjugates.
机译:糖缀合物由以多种方式连接在一起的碳水化合物结构单元组成,从而引起多种生物学功能。碳水化合物由于其众多且基本等效的羟基具有相似的反应性,因此特别难于合成处理。因此,有效保护和选择性修饰糖醇的方法被认为是有机化学中重要的合成工具。当用乙酸处理在吡啶和乙酸酐的混合物中被O-O-TMS保护的单糖或二糖时,会发生硅对乙酸盐保护基的区域选择性交换。酸浓度,热条件和微波辅助介导甲硅烷基/乙酸酯交换反应。通过限制乙酸的当量来实现区域控制,并且微波辐射加速了该过程。我们创造了术语区域选择性甲硅烷基交换技术(ReSET)来描述此过程,该过程实质上重新设置了保护基。为了证明反应的范围,将条件应用于乳糖,蜜二糖,纤维二糖和海藻糖。 ReSET提供了快速访问多种正交保护的二糖的功能,否则将需要多个合成步骤来获取。所形成的双功能分子准备用作更复杂的糖缀合物的模块化构件。

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