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来自[具体来源未提及]的两种新型多糖:其分离、结构及生物活性 。

Two Novel Polysaccharides From : Their Isolation, Structures, and Bioactivities.

作者信息

Guo Dongdong, Lei Jiayu, Xu Lijing, Cheng Yanfen, Feng Cuiping, Meng Junlong, Chang Mingchang, Geng Xueran

机构信息

College of Food Science and Engineering, Shanxi Agricultural University, Taigu, China.

Shanxi Key Laboratory of Edible Fungi for Loess Plateau, Taigu, China.

出版信息

Front Nutr. 2022 Jun 30;9:934769. doi: 10.3389/fnut.2022.934769. eCollection 2022.

Abstract

The crude polysaccharides from the fruiting bodies of (CSFP) were isolated by hot-water extraction. Two novel polysaccharides, CSFP1-β and CSFP2-α, were further purified by DEAE-52 anion exchange and Sephacryl S-400 gel filtration chromatography, and the purities reached 98.44 and 97.83%, respectively. The structural characteristics and bioactivities of CSFP, CSFP1-β, and CSFP2-α were identified by the combination of chemical and instrumental analysis. Results showed that CSFP was formed by the aggregation of honeycomb spherical materials; CSFP1-β and CSFP2-α were interwoven by reticular and fibrous structures, respectively. Purified components of both CSFP1-β and CSFP2-α showed typical infrared absorption peaks of polysaccharides, and contents of nucleic acid and protein decreased significantly. Simultaneously, CSFP with a molecular weight (Mw) of 1.948 × 10 Da were composed mainly of glucose, mannose, galactose, and rhamnose. CSFP1-β was composed mainly of glucose, galactose, and mannose, while CSFP2-α was composed of glucose, and both their distributions were uneven. Compared with CSFP, the antioxidant activities of CSFP1-β and CSFP2-α were significantly improved ( < 0.05), and they both showed good abilities to bind free cholesterol and bile acid salts . The binding abilities of the two compounds were found to be 68.62 and 64.43%, and 46.66 and 45.05 mg/g, respectively. CSFP, CSFP1-β, and CSFP2-α had good bacteriostatic effects with a linear increasing relationship to increasing concentration. In addition, CSFP promoted the growth of RAW264.7 cells and has potential immunomodulatory, anti-inflammatory, and anti-tumor activities.

摘要

通过热水提取法从(某种菌)子实体中分离出粗多糖(CSFP)。通过DEAE - 52阴离子交换和Sephacryl S - 400凝胶过滤色谱进一步纯化得到两种新型多糖CSFP1 - β和CSFP2 - α,纯度分别达到98.44%和97.83%。通过化学分析和仪器分析相结合的方法鉴定了CSFP、CSFP1 - β和CSFP2 - α的结构特征和生物活性。结果表明,CSFP由蜂窝状球形物质聚集形成;CSFP1 - β和CSFP2 - α分别由网状结构和纤维状结构交织而成。CSFP1 - β和CSFP2 - α的纯化组分均显示出多糖典型的红外吸收峰,且核酸和蛋白质含量显著降低。同时,分子量(Mw)为1.948×10 Da的CSFP主要由葡萄糖、甘露糖、半乳糖和鼠李糖组成。CSFP1 - β主要由葡萄糖、半乳糖和甘露糖组成,而CSFP2 - α由葡萄糖组成,且二者的分布均不均匀。与CSFP相比,CSFP1 - β和CSFP2 - α的抗氧化活性显著提高(P < 0.05),且二者均表现出良好的结合游离胆固醇和胆酸盐的能力。两种化合物的结合能力分别为68.62%和64.43%,以及46.66和45.05 mg/g。CSFP、CSFP1 - β和CSFP2 - α具有良好的抑菌作用,且抑菌效果与浓度呈线性增加关系。此外,CSFP促进RAW264.7细胞的生长,具有潜在的免疫调节、抗炎和抗肿瘤活性。 (注:原文中“1.948 × 10 Da”表述似乎有误,推测可能是“1.948 × 10⁵ Da”之类,这里按原文翻译。)

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6ce3/9280651/5991886c15b4/fnut-09-934769-g001.jpg

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