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Thiol-ene Click Synthesis and Pharmacological Evaluation of C-Glycoside sp2-Iminosugar Glycolipids

机译:C-糖苷sp2-氨基糖糖脂的巯基-烯点击合成及药理学评价

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摘要

The unique stereoelectronic properties of sp2-iminosugars enable their participation in glycosylation reactions, thereby behaving as true carbohydrate chemical mimics. Among sp2-iminosugar conjugates, the sp2-iminosugar glycolipids (sp2-IGLs) have shown a variety of interesting pharmacological properties ranging from glycosidase inhibition to antiproliferative, antiparasitic, and anti-inflammatory activities. Developing strategies compatible with molecular diversity-oriented strategies for structure–activity relationship studies was therefore highly wanted. Here we show that a reaction sequence consisting in stereoselective C-allylation followed by thiol-ene “click” coupling provides a very convenient access to α-C-glycoside sp2-IGLs. Both the glycone moiety and the aglycone tail can be modified by using sp2-iminosugar precursors with different configurational profiles (d-gluco or d-galacto in this work) and varied thiols, as well as by oxidation of the sulfide adducts (to the corresponding sulfones in this work). A series of derivatives was prepared in this manner and their glycosidase inhibitory, antiproliferative and antileishmanial activities were evaluated in different settings. The results confirm that the inhibition of glycosidases, particularly α-glucosidase, and the antitumor/leishmanicidal activities are unrelated. The data are also consistent with the two later activities arising from the ability of the sp2-IGLs to interfere in the immune system response in a cell line and cell context dependent manner.
机译:sp 2 -亚氨基糖的独特立体电子性质使其能够参与糖基化反应,从而成为真正的碳水化合物化学模拟物。在sp 2 -亚氨基糖缀合物中,sp 2 -亚氨基糖糖脂(sp 2 -IGLs)表现出多种有趣的药理特性,从抑制糖苷酶的抗增殖,抗寄生虫和抗炎活性。因此,迫切需要开发与面向分子多样性的策略相适应的结构-活性关系研究策略。在这里,我们显示了由立体选择性C-烯丙基化然后硫醇-烯“点击”偶联组成的反应序列,提供了非常方便的α-C-糖苷sp 2 -IGLs通道。可以通过使用具有不同构型(在本研究中为d-葡萄糖或d-半乳糖)和不同硫醇的sp 2 -亚氨基糖前体来修饰糖基部分和糖苷配基尾基,以及通过氧化硫化物加成物(在这项工作中为相应的砜)。以这种方式制备了一系列衍生物,并在不同环境下评估了它们对糖苷酶的抑制,抗增殖和抗菌活性。该结果证实糖苷酶,特别是α-葡糖苷酶的抑制作用与抗肿瘤/杀菌作用无关。数据还与sp 2 -IGLs以细胞系和细胞背景依赖方式干扰免疫系统反应的能力引起的后两个活动一致。

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