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多糖 VUP80-3 的分离、结构特征分析及其对 GES-1 细胞的体外保护作用。

Isolation, Structural Characteristics Analysis of a Polysaccharide VUP80-3 and Its Protective Effect on GES-1 Cells In Vitro.

机构信息

Department of Landscape Plants, Sichuan Agricultural University, Chengdu 611130, China.

出版信息

Molecules. 2023 Jul 21;28(14):5566. doi: 10.3390/molecules28145566.

Abstract

Cowpea ( is one of the main edible legume vegetables in China, and it can improve spleen and stomach function. A polysaccharide component (VUP80-3) has been isolated from in this study. The average molecular weight of VUP80-3 is 6.43 × 10 Da, and the main monosaccharide group is glucose. The mass ratio of monosaccharide groups in the polysaccharide was glucose:galactose:arabinose:rhamnose:xylose:mannose:fucose = 152.36:24.50:16.53:8.13:1.26:0.97:0.82. NMR analysis showed that VUP80-3 has →4)-α-D-Galp (1→ and →4)-α-D-Glcp(1→ main chain and →3,4)-β-D-Glcp(1→, →4,6)-α-D-Glcp(1→ branch chains, and the terminal sugar is α-D-Glcp(1→. Biological activity test results showed that VUP80-3 at 1000 μg·mL significantly increased the activity of ethanol injured GES-1 cells ( < 0.01) and significantly reduced reactive oxygen species (ROS) in ethanol injured GES-1 cells and inflammatory factors (IL-8, IL-1β and TNF-α,) in GES-1 cells. This compound also reduced the apoptosis rate ( < 0.05), thereby significantly reducing the oxidative damage caused by ethanol in GES-1 cells. Therefore, VUP80-3 is a potential drug to protect the gastric mucosa from damage.

摘要

菜豆(是中国主要的食用豆类蔬菜之一,具有健脾养胃的功效。本研究从菜豆中分离得到一种多糖组分(VUP80-3)。VUP80-3 的平均分子量为 6.43×10 Da,其主要单糖组成为葡萄糖。多糖中单糖组的质量比为葡萄糖:半乳糖:阿拉伯糖:鼠李糖:木糖:甘露糖:岩藻糖=152.36:24.50:16.53:8.13:1.26:0.97:0.82。NMR 分析表明,VUP80-3 具有→4)-α-D-Galp(1→和→4)-α-D-Glcp(1→主链和→3,4)-β-D-Glcp(1→,→4,6)-α-D-Glcp(1→支链,末端糖基为α-D-Glcp(1→。生物活性试验结果表明,VUP80-3 在 1000μg·mL-1时能显著提高乙醇损伤 GES-1 细胞的活性(<0.01),显著降低乙醇损伤 GES-1 细胞中的活性氧(ROS)和炎症因子(IL-8、IL-1β和 TNF-α),降低 GES-1 细胞的凋亡率(<0.05),从而显著减轻乙醇对 GES-1 细胞的氧化损伤。因此,VUP80-3 是一种潜在的胃黏膜保护药物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e35f/10383257/15f9c4851129/molecules-28-05566-g001.jpg

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