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A New and Efficient Approach to Prepare N-Acetyl GM3 Ganglioside via Trisaccharide [1 →4] Lactone

机译:一种通过三糖[1→4]内酯制备N-乙酰GM3神经节苷脂的高效新方法

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摘要

The N-acetyl GM3 ganglioside (NAcGM3) is an important glycosphingolipid currently used to prepare a new therapeutic cancer vaccine. Some quantities of this ganglioside were obtained by using [1→4] lactone as the trisaccharide protective function. Thus, sialylation of hexabenzyllactose acceptor with S-acetyl neuraminylthiophenyl donor afforded the (2→ 3) trisaccharide as an α/β (3:1) mixture. The α-anomer was isolated through selective [1→4] lactone formation followed by chromatography. The lactone was hydrogenolyzed, per-O-acetylated, and selectively deacetylated, and a trichloroacetimidate donor was synthesized from the obtained compound. Azidosphingosine glycosyiation, followed by azide group reduction and acylation of the resulting amino glycoside with stearic acid provided the protected ganglioside, which was finally subjected to the Zemplen's procedure, before saponification, to obtain the NAcGM3 in an overall yield of 11.5% at multigram scale.
机译:N-乙酰基GM3神经节苷脂(NAcGM3)是一种重要的糖鞘脂,目前用于制备新的治疗性癌症疫苗。通过使用[1→4]内酯作为三糖的保护功能,可以获得一定量的神经节苷脂。因此,用S-乙酰基神经氨酸基硫代苯基供体对六苄基乳糖受体进行唾液酸化,得到(2→3)三糖,为α/β(3:1)混合物。通过选择性的[1→4]内酯形成,然后进行色谱分离,分离出α-端基异构体。内酯被氢解,过-O-乙酰化和选择性地脱乙酰,并且由所获得的化合物合成三氯乙亚氨酸酯供体。叠氮基神经鞘氨醇糖基化,然后叠氮化物基团还原并用硬脂酸酰化所得的氨基糖苷提供了受保护的神经节苷脂,在皂化之前将其最终进行Zemplen程序,以多克级的总收率获得11.5%的NAcGM3。

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