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首页> 外文期刊>Journal of Carbohydrate Chemistry >An extensive review of studies on mycobacterium cell wall polysaccharide-related oligosaccharides - part I: Synthetic studies on arabinofuranosyl oligosaccharides
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An extensive review of studies on mycobacterium cell wall polysaccharide-related oligosaccharides - part I: Synthetic studies on arabinofuranosyl oligosaccharides

机译:对细胞壁壁多糖相关寡糖研究的广泛综述 - 第一部分:阿拉伯呋喃糖基糖苷的合成研究

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Lipoarabinomannan (LAM), mannosyl LAM (ManLAM), and mycolyl-arabinogalactan (mAG) are unique and ubiquitous cell wall constituents of Mycobacterium tuberculosis (M. tb), the bacterium causing tuberculosis (TB), one of the deadliest diseases worldwide. It has been well documented that LAM, ManLAM, and mAG play an important role in mycobacterial infections and in the elicitation of specific immune responses against M. tb in the host. Therefore, LAM, ManLAM, mAG, and related molecules are attractive targets for the development of novel diagnostic and therapeutic strategies for TB. Accordingly, great research efforts have been spent on the chemical synthesis and biological studies of mycobacterium-related arabinofuranosyl oligosaccharides and their mimetics and conjugates. This article provides an extensive review about the progresses in this area. Due to the page limit of the journal, this review is published separately in three parts. Part I is focused on various glycosylation methods or strategies and protection tactics for stereoselective and stereospecific construction of alpha- and beta-arabinofuranosyl linkages, as well as their applications to the synthesis of simple to highly complex mycobacterium-related arabinofuranosyl oligosaccharides containing only alpha-linked or both alpha- and beta-linked arabinofuranosyl residues.
机译:Lipoarabinomannan(Lam),Mannosyl Lam(Manlam)和Mycolyl-Arabinogalactan(Mag)是结核分枝杆菌(M.TB)的独特且无处不在的细胞壁成分,导致结核病(TB),全球最致命的疾病之一。林,曼兰和莫均已妥善记录,在分枝杆菌感染中发挥着重要作用,并在宿主中针对M. TB引发的特定免疫应答。因此,林,澳门州,莫和相关分子是有吸引力的TB开发新型诊断和治疗策略的诱导目标。因此,已经花了巨大的研究努力对与其与基因分枝杆菌相关的阿拉伯呋喃糖基寡糖及其模拟物和缀合物的化学合成和生物学研究。本文提供了关于该领域进展的广泛审查。由于期刊限制,本综述分别在三个部分中公布。第一部分专注于各种糖基化方法或策略和保护策略,用于α-和β-阿拉伯呋喃糖基胶质瘤的立体选择性和立体结构构建,以及它们对含有仅α-连接的高度复杂的分枝杆菌相关的阿拉伯瓜糖基寡糖的合成的应用或α-和β连接的阿拉伯呋喃糖基残留物。

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