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Two-Step Functionalization of Oligosaccharides Using Glycosyl Iodide and Trimethylene Oxide and Its Applications to Multivalent Glycoconjugates

机译:使用糖基碘和三亚甲基氧化物对寡糖进行两步功能化及其在多价糖缀合物中的应用

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摘要

Oligosaccharide conjugates, such as glycoproteins and glycolipids, are potential chemotherapeutics and also serve as useful tools for understanding the biological roles of carbohydrates. With many modern isolation and synthetic technologies providing access to a wide variety of free sugars, there is increasing need for general methodologies for carbohydrate functionalization. Herein, we report a two-step methodology for the conjugation of per-O-acetylated oligosaccharides to functionalized linkers that can be used for various displays. Oligosaccharides obtained from both synthetic and commercial sources were converted to glycosyl iodides and activated with I2 to form reactive donors that were subsequently trapped with trimethylene oxide to form iodopropyl conjugates in a single step. The terminal iodide served as a chemical handle for further modification. Conversion into the corresponding azide followed by copper-catalyzed azide–alkyne cycloaddition afforded multivalent glycoconjugates of Gb3 for further investigation as anti-cancer therapeutics.
机译:寡糖共轭物,例如糖蛋白和糖脂,是潜在的化学疗法,并且也用作了解碳水化合物的生物学作用的有用工具。随着许多现代的分离和合成技术提供了各种游离糖的使用,对碳水化合物功能化的一般方法的需求日益增长。在这里,我们报告了两步方法,用于将过O-乙酰化寡糖与可用于各种展示的功能化接头缀合。从合成来源和商业来源获得的寡糖均被转化为碘化糖基,并用I2活化形成反应性供体,随后将其用三氧化二氮捕获,从而在一个步骤中形成碘丙基共轭物。末端碘化物用作进一步修饰的化学处理。转化为相应的叠氮化物,然后进行铜催化的叠氮化物-炔烃环加成反应,得到了Gb3的多价糖缀合物,作为抗癌治疗剂有待进一步研究。

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