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首页> 外文期刊>BMC Complementary and Alternative Medicine >Polysaccharides from Agaricus bisporus and Agaricus brasiliensis show similarities in their structures and their immunomodulatory effects on human monocytic THP-1 cells
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Polysaccharides from Agaricus bisporus and Agaricus brasiliensis show similarities in their structures and their immunomodulatory effects on human monocytic THP-1 cells

机译:双孢蘑菇和巴西姬松茸的多糖在结构上及其对人单核细胞THP-1细胞的免疫调节作用均显示相似性

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Background Mushroom polysaccharides have traditionally been used for the prevention and treatment of a multitude of disorders like infectious illnesses, cancers and various autoimmune diseases. Crude mushroom extracts have been tested without detailed chemical analyses of its polysaccharide content. For the present study we decided to chemically determine the carbohydrate composition of semi-purified extracts from 2 closely related and well known basidiomycete species, i.e. Agaricus bisporus and A. brasiliensis and to study their effects on the innate immune system, in particular on the in vitro induction of pro-inflammatory cytokines, using THP-1 cells. Methods Mushroom polysaccharide extracts were prepared by hot water extraction and precipitation with ethanol. Their composition was analyzed by GC-MS and NMR spectroscopy. PMA activated THP-1 cells were treated with the extracts under different conditions and the production of pro-inflammatory cytokines was evaluated by qPCR. Results Semi-purified polysaccharide extracts of A. bisporus and A. brasiliensis (= blazei) were found to contain (1→6),(1→4)-linked α-glucan, (1→6)-linked β-glucan, and mannogalactan. Their proportions were determined by integration of 1H-NMR signs, and were considerably different for the two species. A. brasiliensis showed a higher content of β-glucan, while A. bisporus presented mannogalactan as its main polysaccharide. The extracts induced a comparable increase of transcription of the pro-inflammatory cytokine genes IL-1β and TNF-α as well as of COX-2 in PMA differentiated THP-1 cells. Pro-inflammatory effects of bacterial LPS in this assay could be reduced significantly by the simultaneous addition of A. brasiliensis extract. Conclusions The polysaccharide preparations from the closely related species A. bisporus and A. brasiliensis show major differences in composition: A. bisporus shows high mannogalactan content whereas A. brasiliensis has mostly β-glucan. Semi-purified polysaccharide extracts from both Agaricus species stimulated the production of pro-inflammatory cytokines and enzymes, while the polysaccharide extract of A. brasiliensis reduced synthesis of these cytokines induced by LPS, suggesting programmable immunomodulation.
机译:背景技术蘑菇多糖传统上已用于预防和治疗多种疾病,例如传染病,癌症和各种自身免疫病。未经粗制蘑菇提取物的测试,未对其多糖含量进行详细的化学分析。在本研究中,我们决定化学确定2种紧密相关且广为人知的担子菌属物种(姬松茸和巴西假单胞菌)的半纯化提取物的碳水化合物组成,并研究其对先天免疫系统的影响,特别是对先天免疫系统的影响。使用THP-1细胞体外诱导促炎性细胞因子。方法采用热水提取,乙醇沉淀法制备香菇多糖。通过GC-MS和NMR光谱分析它们的组成。用提取物在不同条件下处理PMA活化的THP-1细胞,并通过qPCR评估促炎细胞因子的产生。结果发现半纯化的双孢曲霉和巴西曲霉的多糖提取物含有(1→6),(1→4)连接的α-葡聚糖,(1→6)连接的β-葡聚糖,和甘露半乳聚糖。它们的比例通过 1 H-NMR信号的积分来确定,并且在两个物种中有很大不同。巴西假单胞菌显示出较高的β-葡聚糖含量,而双孢假单胞菌则以甘露半乳聚糖为其主要多糖。提取物在PMA分化的THP-1细胞中诱导促炎性细胞因子基因IL-1β和TNF-α以及COX-2的转录增加。同时加入巴西曲霉提取物可大大降低细菌LPS在该试验中的促炎作用。结论密切相关的物种A. bisporus和A. brasiliensis的多糖制剂在组成上存在主要差异:A. bisporus的甘露半乳聚糖含量高,而A. brasiliensis的β-葡聚糖含量最高。来自两种蘑菇的半纯化多糖提取物刺激促炎性细胞因子和酶的产生,而巴西假单胞菌的多糖提取物减少了LPS诱导的这些细胞因子的合成,表明可编程的免疫调节。

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