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Chemical Synthesis of beta-(1,3)-Glucan Oligosaccharide and Its Application

机译:β-(1,3)的化学合成 - 葡聚糖寡糖及其应用

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beta-(1,3)-Glucan has been used as an anti-cancer drug owing to its immunostimulatory effects. However, the mechanism of the biological activity has yet to be elucidated. Moreover,beta-(1,3)-glucans used for the mechanistic studies are heterogeneous mixtures extracted from natural sources. Therefore, structure-defined beta-(1,3)-glucans are required to simplify the effect caused by beta-(1,3)-glucans in the study of the biological activity, and this requirement prompts the study of chemical synthesis of beta-(1,3)-glucans. The glycosylation for formation of the beta-(1,3)-linkage is difficult because the reactivity of the 3-hydroxy group is suppressed due to considerable steric hindrance from the protecting group at the 4-position in glucose. Moreover, introduction of protecting groups that can be deprotected selectively on the 3-position as well as the 6-position is required to synthesize beta-(1,3)-glucans with a branch at the 6-position, and the synthetic method should be optimized by considering the influence of the combined protective groups on the glycosylation. Recently, beta-(1,3)-glucan oligosaccharide synthesis using a 4,6-O-benzylidenated glycosyl donor and acceptor has been studied strenuously, and the reactivity of the acceptor and the stereoselectivity of beta-(1,3)-glycosylation were substantially improved. Consequently, linear beta-(1,3)-glucan of up to 16 saccharides could be synthesized. There have been reports of a few promising examples of multiple introductions of branch residues to the linear backbone of beta-(1,3)-glucan. Moreover, some applied studies using synthetic beta-(1,3)-glucan oligosaccharides have already been conducted.
机译:由于其免疫刺激作用,β-(1,3)-Glucan已被用作抗癌药物。然而,生物活性的机制尚未阐明。此外,用于机械研究的β-(1,3)葡聚糖是从天然来源提取的异质混合物。因此,需要结构定义的β-(1,3)葡聚糖来简化由β-(1,3)葡聚糖在生物活性研究中引起的效果,并且该要求促使β的化学合成研究 - (1,3)-glucans。用于形成β-(1,3)-Linkage的糖基化是困难的,因为由于在葡萄糖中4-位的保护基团的相当大的空间障碍,抑制了3-羟基的反应性。此外,可以引入可以在3位和6位上选择性脱保护的保护基团,以合成6-位的分支的β-(1,3)葡聚糖,合成方法应该通过考虑组合保护基团对糖基化的影响来优化。最近,使用4,6-O-苄基化糖基供体和受体的β-(1,3) - 葡聚糖合成已经浓缩,以及受体的反应性和β-(1,3) - 糖基化的立体选择性显着改善。因此,可以合成最多16糖的线性β-(1,3)-Glucan。已经报道了β-(1,3)-Glucan的线性骨架的分支残基的多次介绍的有希望的例子。此外,已经进行了使用合成β-(1,3)葡聚糖寡糖的一些应用研究。

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