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Synthesis and biological activity of α-l-fucosyl ceramides, analogues of the potent agonist, α-d-galactosyl ceramide KRN7000

机译:强效激动剂α-d-半乳糖基神经酰胺KRN7000的类似物α-1-岩藻糖基神经酰胺的合成和生物学活性

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摘要

Several L-fucoglycolipids are associated with diseases such as cancer, cystic fibrosis and rheumatoid arthritis. Activation of iNKT cells is known to lead to the production of cytokines that can help alleviate or exacerbate these conditions. a-Galactosyl ceramide (a-GalCer) is a known agonist of iNKT cells and it is believed that its fucosyl counterpart might have similar immunogenic properties. We herein report the synthesis of a-L-fucosyl ceramide derivatives and describe their biological evaluation. The key challenge in the synthesis of the target molecules involved the stereoselective synthesis of the a-glycosidic linkage. Of the methods examined, the per-TMS-protected glycosyl iodide donor was completely aselective,and could be scaled up to provide gram quantities of the azide precursor 11, from which a range of N-acylated a-L-fucosyl ceramides were readily obtained and evaluated for ex vivo expansion of human iNKT cells.
机译:几种L-岩藻糖脂与癌症,囊性纤维化和类风湿关节炎等疾病有关。已知iNKT细胞的激活会导致细胞因子的产生,从而有助于减轻或加剧这些疾病。 α-半乳糖基神经酰胺(α-GalCer)是iNKT细胞的已知激动剂,据信其岩藻糖基对应物可能具有相似的免疫原性。我们在此报告了α-L-岩藻糖基神经酰胺衍生物的合成,并描述了其生物学评估。靶分子合成中的关键挑战涉及α-糖苷键的立体选择性合成。在所检查的方法中,每-TMS保护的糖基碘碘供体是完全选择性的,可以按比例放大以提供克量的叠氮化物前体11,从中可以轻松获得并评估一系列N-酰化的aL-岩藻糖基神经酰胺。用于人iNKT细胞的离体扩增。

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