食品科学 ›› 2023, Vol. 44 ›› Issue (22): 39-48.doi: 10.7506/spkx1002-6630-20230217-161

• 食品化学 • 上一篇    下一篇

富硒蛹虫草多糖的结构表征及体外免疫调节活性

姚艳婷, 杨小兵, 陈旭洁, 陈忠正, 林晓蓉, 张媛媛, 向杰, 陈少丹, 焦春伟, 李斌, 高雄   

  1. (1.华南农业大学食品学院,广东 广州 510642;2.广东省科学院微生物研究所,华南应用微生物国家重点实验室,广东省微生物安全与健康重点实验室,广东 广州 510070;3.广东粤微食用菌技术有限公司,广东 广州 510663;4.广东粤微生物科技有限公司,广东 肇庆 526000)
  • 出版日期:2023-11-25 发布日期:2023-12-13
  • 基金资助:
    广东省基础与应用基础研究基金项目(2023A1515012155,2023A1515030151); 广州高新技术产业开发区国际合作项目(2020GH07);肇庆高新区创新团队项目(2019ZHQ10); 广东省现代农业产业技术体系创新团队建设项目(2023KJ103)

Structural Characterization and in Vitro Immunomodulatory Activity of Polysaccharides from Selenium-Enriched Cordyceps militaris

YAO Yanting, YANG Xiaobing, CHEN Xujie, CHEN Zhongzheng, LIN Xiaorong, ZHANG Yuanyuan, XIANG Jie, CHEN Shaodan, JIAO Chunwei, LI Bin, GAO Xiong   

  1. (1. College of Food Science, South China Agricultural University, Guangzhou 510642, China;2. Institute of Microbiology, State Key Laboratory of Applied Microbiology Southern China, Guangdong Provincial Key Laboratory of Microbial Safety and Health, Guangdong Academy of Sciences, Guangzhou 510070, China; 3. Guangdong Yuewei Edible Fungi Technology Co. Ltd., Guangzhou 510663, China; 4. Guangdong Yuewei Biotechnology Co. Ltd., Zhaoqing 526000, China)
  • Online:2023-11-25 Published:2023-12-13

摘要: 为探究富硒蛹虫草多糖的结构特性和生物活性,本研究以富硒蛹虫草子实体为研究材料,通过水提醇沉法,结合阴离子交换层析柱分离纯化,获得均一性好的多糖组分(SeCMP0.2),采用高效渗透凝胶色谱仪、高效液相色谱、核磁共振波谱、原子力显微镜等方法表征SeCMP0.2的结构特性,利用小鼠单核巨噬细胞RAW264.7评价其免疫调节活性。结果表明,SeCMP0.2的重均分子质量为440.7 kDa,硒含量为49.1 μg/g,具有三螺旋结构,在水溶液中会发生聚集现象,同时含有α和β构型糖苷键,是一种以半乳糖(53.1%)、葡萄糖(8.2%)、甘露糖(37.1%)为主的杂多糖,主要包含T-Galp-(1→(16.6%)、→2)-Galp-(1→(29.4%)、→6)-Manp-(1→(26.9%)等残基。体外免疫调节结果显示,SeCMP0.2可通过激活丝裂原活化蛋白激酶、核因子-κB信号通路,上调诱导型一氧化氮合成酶、肿瘤坏死因子-α、白细胞介素-6、白细胞介素-1β mRNA表达,发挥免疫调节作用。本研究可为富硒蛹虫草资源的进一步开发利用奠定研究基础。

关键词: 富硒蛹虫草;多糖;结构表征;免疫调节活性

Abstract: This study aimed to investigate the structural characteristics and biological activity of polysaccharides from selenium-enriched Cordyceps militaris. A homogeneous polysaccharide (SeCMP0.2) was isolated and purified from the fruiting bodies of selenium-enriched C. militaris by water extraction and alcohol precipitation, followed by anion exchange column chromatography. The structural characteristics of SeCMP0.2 were characterized by high-performance gel permeation chromatography (HPGPC), high-performance liquid chromatography (HPLC), nuclear magnetic resonance spectroscopy (NMR), and atomic force microscopy (AFM). The immunoregulatory activity of SeCMP0.2 was evaluated by using RAW264.7 mouse macrophages. Results showed that the weight average molecular mass and selenium content of SeCMP0.2 were 440.7 kDa and 49.1 μg/g, respectively. SeCMP0.2, with a triple-helix conformation, was aggregated in aqueous solution. Moreover, it was a heteropolysaccharide mainly composed of galactose (53.1%), glucose (8.2%), and mannose (37.1%), containing both α- and β-type glycosidic linkages. The dominant residues in SeCMP0.2 including T-Galp-(1→, →2)-Galp-(1→, and →6)-Manp-(1→ accounted for 16.6%, 29.4% and 26.9%, respectively. Additionally, the in vitro immunomodulatory assays showed that SeCMP0.2 could significantly upregulate the mRNA expression levels of inducible nitric oxide synthetase (iNOS), tumor necrosis factor-α (TNF-α), interleukin-6 (IL-6), and interleukin-1β (IL-1β) by activating the mitogen-activated protein kinases (MAPKs) and nuclear factor-κB (NF-κB) signaling pathways, thereby exerting immunoregulatory activity. These results will lay the foundation for further development and utilization of selenium-enriched C. militaris resources.

Key words: selenium-enriched Cordyceps militaris; polysaccharide; structural characteristics; immunoregulatory activity

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