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Chemical Characterization and Hypoglycaemic Activities In Vitro of Two Polysaccharides from Inonotus obliquus by Submerged Culture

机译:淹没培养物的两种多糖体外化学表征和低血糖活性

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摘要

Polysaccharides from the fungus Inonotus obliquus have been found to be biologically active. In this study, we carried out a preliminary characterisation and assessment of the hypoglycaemic activities of the polysaccharides (IOEP) from Inonotus obliquus obtained by liquid fermentation. Two polysaccharides, IOEP1 and IOEP2, were isolated from IOEP. IOEP1, with a molecular weight of 20 KDa, was mainly composed of galatose and mannose, while IOEP2, with a molecular weight of 200 KDa, was mainly composed of arabinose. Fourier-transform infrared analysis showed that both IOEP1 and IOEP2 were pyran-type polysaccharides. 1H-NMR spectra showed that the glycosidic bonds of IOEP1 and IOEP2 were both α-type and β-type. In addition, IOEP1 and IOEP2 strongly increased the glucose consumption of HepG2 cells and insulin-resistant HepG2 cells in vitro. These findings provide a theoretical basis that IOEP1 and IOEP2 might be suitable as anti-diabetes agents in functional foods and natural drugs.
机译:已发现来自真菌斜肌的多糖是生物活性的。在这项研究中,我们对通过液体发酵获得的Inonotus倾斜度进行了初步表征和评估多糖(IOp)的低血糖活性。两种多糖,IOep1和IOep2从IOep中分离出来。 IOep1,分子量为20kDa,主要由加拉多糖和甘露糖组成,而Ioep2的分子量为200kDa,主要由阿拉伯糖组成。傅立叶变换红外分析表明,IOEP1和IOEP2都是吡喃型多糖。 1H-NMR光谱表明,IOEP1和IOEP2的糖苷键均为α型和β型。此外,IOEP1和IOEP2在体外强烈增加了HepG2细胞和胰岛素抗性HepG2细胞的葡萄糖消耗。这些发现提供了一种理论基础,即Ioep1和IOep2可能适合作为功能性食品和天然药物的抗糖尿病药剂。

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