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Short synthesis of skeleton-modified cyclodextrin derivatives with unique inclusion ability

机译:具有独特包容能力的骨架修饰环糊精衍生物的短合成

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[GRAPHICS]Skeleton-modified cyclodextrin (CD) derivatives, in which an alpha-(1,4)-glucosidic bond is converted into a beta-(1,4)-glucosidic bond, were conveniently synthesized by cleavage of a single glucosidic bond in permethylated and 2,6-di-O-methylated alpha- and beta-CDs and subsequent recyclization via the trichloroacetoimidate intermediates. The selective cleavage of an alpha-(1,4)-glucosidic bond of permethylated alpha- and beta-CDs was accomplished by stirring in 30% aq HClO4 at 25 degreesC to give the corresponding maltohexaose and maltoheptaose derivatives, respectively. The cleavage of a glucosidic bond of hexakis(3-O-benzyl-2,6-di-O-methyl)-alpha-CD was successfully carried out in a mixed 60% aq HClO4 and 1,4-dioxane solution (1:20). In the case of heptakis(3-O-benzyl-2,6-di-O-methyl)-beta-CD, the solvent-free reaction with beta-toluenesulfonic acid was found to be effective for selective cleavage of one glucosidic bond. The permethylated beta-CD derivative with a beta-(1,4)-glucosidic bond (4b) exhibited higher inclusion ability toward sodium m-nitrobenzoate than the parent permethylated beta-CD, while these hosts showed the same inclusion ability toward sodium p-nitrobenzoate. On the other hand, the beta-(1,4)-type permethylated alpha-CD derivative 4a exhibited lower inclusion ability toward sodium p- and m-nitrobenzoates than the parent permethylated alpha-CD. Interestingly, host molecules 4a and 4b showed inclusion selectivity for sodium m-nitrobenzoate as compared with the corresponding para-isomer, in contrast to permethylated CDs which possessed para-isomer selectivity. On the other hand, host molecules 4a and 4b showed para-isomer selectivity toward sodium nitrophenoxide guests, indicating that the inclusion selectivity was remarkably influenced by the guest hydrophilic groups. H-1 NMR studies on complexes of those beta-(1,4)-type CD derivatives with p- and m-nitrobenzoates and p- and m-nitrophenolates were carried out to estimate their structures.
机译:[GRAPHICS]骨架的环糊精(CD)衍生物,其中一个α-(1,4)-糖苷键转换为β-(1,4)-糖苷键,可以通过单个糖苷键的裂解方便地合成在全甲基化和2,6-二-O-甲基化的α-和β-CD中,随后通过三氯乙酰亚氨酸酯中间体进行再循环。通过在25℃在30%HClO4水溶液中搅拌,分别制得全甲基化的α-和β-CD的α-(1,4)-葡糖苷键,分别得到相应的麦芽六糖和麦芽七糖衍生物。六(3-O-苄基-2,6-二-O-甲基)-α-CD的糖苷键的裂解成功在60%HClO4和1,4-二恶烷水溶液中进行(1: 20)。在七(3-O-苄基-2,6-二-O-甲基)-β-CD的情况下,发现与β-甲苯磺酸的无溶剂反应可有效地选择性切割一个糖苷键。具有β-(1,4)-葡糖苷键(4b)的全甲基化β-CD衍生物对间硝基苯甲酸钠的亲和力高于母体全甲基化β-CD,而这些主体对p-钠的亲和力也相同。硝基苯甲酸酯另一方面,与母体全甲基化的α-CD相比,β-(1,4)型全甲基化的α-CD衍生物4a对p-和间硝基苯甲酸钠的包合能力低。有趣的是,与具有对位异构体选择性的全甲基化CD相反,宿主分子4a和4b与相应的对位异构体相比,对间硝基苯甲酸钠显示出包合物选择性。另一方面,主体分子4a和4b显示出对硝基苯酚钠客体的对-异构体选择性,表明夹杂物选择性受到客体亲水基团的显着影响。对那些β-(1,4)型CD衍生物与对硝基苯甲酸酯和间硝基苯甲酸酯以及对硝基苯酚和间硝基苯酚酸酯的配合物进行H-1 NMR研究,以估算其结构。

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