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首页> 外文期刊>Bioorganic and medicinal chemistry >Synthesis of beta-(1-->6)-branched beta-(1-->3) glucohexaose and its analogues containing an alpha-(1-->3) linked bond with antitumor activity.
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Synthesis of beta-(1-->6)-branched beta-(1-->3) glucohexaose and its analogues containing an alpha-(1-->3) linked bond with antitumor activity.

机译:β-(1-> 6)-支链的β-(1-> 3)葡萄糖己糖及其类似物的合成,该类似物包含具有抗肿瘤活性的α-(1-> 3)连接的键。

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    摘要

    A beta-(1-->6)-branched beta-(1-->3)-glucohexaose, present in many biologically active polysaccharides from traditionally herbal medicines such as Ganoderma lucidum, Schizophyllum commune and Lentinus edodes, was synthesized as its lauryl glycoside 32, and its analogues 18, 20 and 33 containing an alpha-(1-->3) linked bond were synthesized. It is interesting to find that coupling of a 3,6-branched acylated trisaccharide trichloroacetimidate donor 9 with 3,6-branched acceptors 13 and 16 with 3'-OH gave the alpha-(1--> 3)-linked hexasaccharides 17 and 19, respectively, in spite of the presence of C-2 ester capable of neighboring group participation. However, coupling of 9 with 4-methoxyphenyl 4,6-O-benzylidene-beta-D-glucopyranoside (27) selectively gave beta-(1-->3)-linked tetrasaccharide 28. Simple chemical transformation of the tetrasaccharide 28 gave acylated tetrasaccharide trichloroacetimidate 29. Coupling of 29 with lauryl (1-->6)-linked disaccharide 26 with 3-OH gave beta-(1-->3)-linked hexasaccharide 30 as the major product. Bioassay showed that in combination with the chemotherapeutic agent cyclophospamide (CPA), the hexaose 18 at a dose of 0.5-1mg/kg substantially increased the inhibition of S(180) for CPA, but decreased the toxicity caused by CPA. Some of these oligosaccharides also inhibited U(14) noumenal tumor in mice effectively.
    机译:β-(1-> 6)分支的β-(1-> 3)-葡萄糖己糖存在于许多传统草药中的生物活性多糖中,如灵芝,裂殖酵母和香菇,作为其月桂基。合成了含有α-(1→3)键的糖苷32及其类似物18、20和33。有趣的是,发现3,6-支链的酰化三糖三氯乙酰亚氨酸酯供体9与3,6-支链的受体13和16与3'-OH的偶联产生了α-(1→3)连接的六糖17和尽管存在能够相邻基团参与的C-2酯,但它们分别为19。然而,将9与4-甲氧基苯基4,6-O-亚苄基-β-D-吡喃葡萄糖苷(27)偶联选择性地产生β-(1-> 3)连接的四糖28。四糖28的简单化学转化产生了酰化的四糖三氯乙酰亚胺酸酯29。将29与月桂基(1→6)连接的二糖26与3-OH偶联,得到以β-(1→3)连接的六糖30作为主要产物。生物测定法表明,与化学治疗剂环磷酰胺(CPA)结合,剂量为0.5-1mg / kg的六糖18大大增加了S(180)对CPA的抑制作用,但降低了CPA引起的毒性。这些寡糖中的一些还可以有效抑制小鼠的U(14)本体肿瘤。

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