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Design and syntheses of hyaluronan oligosaccharide conjugates as inhibitors of CD44-Hyaluronan binding

机译:透明质酸寡糖缀合物作为CD44-透明质酸结合抑制剂的设计与合成

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摘要

Hyaluronan (HA) is an integral component of the extracellular matrix. Its interactions with a cell surface receptor CD44 has been shown to play important roles in a variety of biological events including cell proliferation and metastasis. As multivalent CD44-HA binding is critical for downstream signaling, compounds that can selectively disrupt the complex formation of HA polysaccharide with CD44 can serve as useful probes of CD44 mediated cellular events as well as potential leads for novel therapeutics. Herein, we report the synthesis of several series of HA conjugates to target the HA binding pocket of CD44. As a small library of HA disaccharide derivatives failed to exhibit any inhibitory activities, we focused on HA tetrasaccharide based analogs. Traditional synthetic strategies towards HA oligosaccharides involve the construction of backbone from the corresponding monosaccharide building blocks, which can be quite tedious. In order to expedite the synthesis, we designed a new synthetic route taking advantage of the ability of hyaluronidase to generate large quantities of HA tetrasaccharide through digestion of HA polysaccharides. The HA tetrasaccharide obtained was utilized to prepare multiple S-linked HA analogs bearing aromatic groups at the reducing end glycan. One such compound containing an m-benzyl phenyl moiety exhibited significant inhibition of CD44-HA binding. Our approach provides a new direction towards the design of HA based CD44 antagonists.
机译:透明质酸(HA)是细胞外基质的组成部分。它与细胞表面受体CD44的相互作用已显示在包括细胞增殖和转移在内的多种生物学事件中起重要作用。由于多价CD44-HA结合对于下游信号传导至关重要,因此可以选择性破坏HA多糖与CD44形成复杂复合物的化合物可以用作CD44介导的细胞事件的有用探针以及新疗法的潜在先导。在本文中,我们报道了几种靶向CD44的HA结合口袋的HA结合物系列的合成。由于HA二糖衍生物的小型文库无法显示任何抑制活性,因此我们重点研究基于HA四糖的类似物。针对HA低聚糖的传统合成策略涉及从相应的单糖结构单元构建骨架,这可能是非常乏味的。为了加速合成,我们设计了一条新的合成途径,利用透明质酸酶通过消化HA多糖产生大量HA四糖的能力。将获得的HA四糖用于制备在还原末端聚糖上带有芳族基团的多个S-连接的HA类似物。一种含有间苄基苯基部分的此类化合物表现出对CD44-HA结合的显着抑制。我们的方法为基于HA的CD44拮抗剂的设计提供了新的方向。

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