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首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Structure and immunoregulatory activity of beta-D-galactofuranose-containing polysaccharides from the medicinal fungus Shiraia bambusicola
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Structure and immunoregulatory activity of beta-D-galactofuranose-containing polysaccharides from the medicinal fungus Shiraia bambusicola

机译:来自药用真菌Shiraia Bambusicola的含β-D-半乳硫脲多糖的结构和免疫调节活性

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To explore bioactive polysaccharides from medicinal fungi, a homogeneous heteropolysaccharide SB1-1 was extracted from the stroma of Shiraia bambusicola by enzyme assisted extraction, ethanol precipitation, anion exchange and size-exclusion chromatographies. Chemical and spectroscopic analyses showed that SB1-1 was a neutral polysaccharide composed of mannose, glucose and galactose at a molar ratio of 1.1:1.9:1.0, and had a molecular weight of 18.3 kDa. SB1-1 was composed of a mannan core and glucose and galactose side chains. The mannan core was composed of (1 -> 2)-alpha-Manp substituted by the side chains (1 -> 6)-alpha-D-Manp, (1 -> 4)-alpha-D-Glcp and (1 -> 6)-alpha-d-Glcp with different degrees of polymerization at the C-6. The galactose side chains had the backbone of (1 -> 6)-beta-D-Galf. There were two branch sites on every five sugars on average at the 0-2 of -> 6)-beta-Galf(1 ->, and the branches consisted of -> 2)-beta-D-Galf(1 -> and terminal beta-D-Galf(1 ->. The potential immunomodulatory activities of SB1-1 on RAW264.7 macrophages were investigated. The results showed that SB1-1 could activate macrophage and significantly improve its phagocytic ability by neutral red uptake assay. Additionally, SB1-1 enhanced the productions of IL-1, IL-6, IL-12 and TNF-alpha in the RAW264.7 macrophages by stimulation of SB1-1, while significantly increased the production of inducible nitric oxide synthase (iNOS) production. This study demonstrated that the galactofuranose-containing polysaccharide SB1-1 from S. bambusicola which is a novel mannogalactoglucan, could enhance the activation of macrophages. (C) 2019 Published by Elsevier B.V.
机译:为了通过酶辅助提取,乙醇沉淀,阴离子交换和尺寸排除色谱,从Shiraia Bambusicola的基质中提取均相杂多糖SB1-1。化学和光谱分析表明,Sb1-1是由甘露糖,葡萄糖和半乳糖组成的中性多糖,其摩尔比为1.1:1.9:1.0,并具有18.3kDa的分子量。 SB1-1由甘露核心和葡萄糖和半乳糖侧链组成。甘露核心由由侧链(1 - > 6) - alpha-d-manp,(1 - > 4)-alpha-d-glcp和(1 - > 6) - 在C-6处具有不同聚合度的-Alpha-D-Glcp。半乳糖侧链具有(1 - > 6)-beta-d-glf的骨架。每五个糖平均每五个糖的分支部位 - > 6) - β-加热(1 - >,和分支组成) - > 2)-beta-d-galf(1 - >和终端β-D-GALF(1 - >。SB1-1对RAW264.7巨噬细胞的潜在免疫调节活性。结果表明,SB1-1可以通过中性红色摄取测定激活巨噬细胞并显着提高其吞噬能力。此外,Sb1-1通过刺激SB1-1,增强了Raw264.7巨噬细胞中IL-1,IL-6,IL-12和TNF-α的产量,同时显着增加了诱导型一氧化氮合酶(INOS)生产的产生。本研究表明,含半乳硫脲的多糖Sb1-1来自S. bambusicola,这是一种新型甘露糖葡聚糖,可增强巨噬细胞的激活。(c)2019年由elsevier bv发布

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