Wang Lanying, Lian Junhui, Zheng Qinhua, Wang Liang, Wang Yanzhen, Yang Dongsheng
College of Pharmacy and Food Science, Zhuhai College of Science and Technology, Zhuhai, China.
Front Microbiol. 2023 Jan 12;13:1077322. doi: 10.3389/fmicb.2022.1077322. eCollection 2022.
In this paper, Lepista sordida polysaccharides (LSP) were separated from () mainly using the Ultrasonic-Micro Wave Synergy Extraction (UMSE) method and purified by graded alcohol precipitation. Three polysaccharide components: 40%-LSP-UMSE, 60%-LSP-UMSE, and 80%-LSP-UMSE were obtained and further analyzed the physicochemical properties, structural characteristics, and antioxidant activity. And the effects on the proliferation of of three polysaccharide components were studied. The characteristic absorption peaks and the β-glycosidic bond of three polysaccharide components were the direct expression at UV 200 nm using UV and FT-IR spectroscopy. The three polysaccharide components were mainly composed of glucose, mannose, galactose, and ribose using high-performance liquid chromatography (HPLC) analysis. The antioxidant activity study revealed that the polysaccharides obtained by the UMSE method had better antioxidant activity compared to the traditional "Hot Water Extraction (HWE)" method. In addition, the polysaccharide components promoted the proliferation of to some extent. 40%-LSP-UMSE, 80%-LSP-UMSE as the carbon source had better acid production than the control inulin. Three LSP-UMSE used as a carbon source compared with glucose for culturing could significantly improve its tolerance to bile salts. Results are helpful to develop the bioactive polysaccharides from and beneficial to develop a unique health and functional product in the future.
本文主要采用超声-微波协同萃取(UMSE)法从()中分离出灰盖鬼伞多糖(LSP),并通过分级乙醇沉淀进行纯化。得到了三种多糖组分:40%-LSP-UMSE、60%-LSP-UMSE和80%-LSP-UMSE,并进一步分析了它们的理化性质、结构特征和抗氧化活性。同时研究了三种多糖组分对()增殖的影响。利用紫外光谱(UV)和傅里叶变换红外光谱(FT-IR)在200nm波长下直接表征了三种多糖组分的特征吸收峰和β-糖苷键。通过高效液相色谱(HPLC)分析表明,三种多糖组分主要由葡萄糖、甘露糖、半乳糖和核糖组成。抗氧化活性研究表明,与传统的“热水提取(HWE)”方法相比,UMSE法得到的多糖具有更好的抗氧化活性。此外,多糖组分在一定程度上促进了()的增殖。以40%-LSP-UMSE、80%-LSP-UMSE作为碳源时产酸效果优于对照菊粉。三种LSP-UMSE作为碳源与葡萄糖相比用于培养()时,能显著提高其对胆盐的耐受性。研究结果有助于开发灰盖鬼伞生物活性多糖,为未来开发独特的健康功能性产品提供有益参考。