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中国精品科技期刊2020
张京良,孙彦庆,江晓路,等. 灵芝菌丝体多糖提取工艺优化及其对HSF细胞氧化损伤的保护作用J. 食品工业科技,2026,47(10):1−13. doi: 10.13386/j.issn1002-0306.2025040366.
引用本文: 张京良,孙彦庆,江晓路,等. 灵芝菌丝体多糖提取工艺优化及其对HSF细胞氧化损伤的保护作用J. 食品工业科技,2026,47(10):1−13. doi: 10.13386/j.issn1002-0306.2025040366.
ZHANG Jingliang, SUN Yanqing, JIANG Xiaolu, et al. Optimization of Extraction Process of Polysaccharides from Ganoderma lucidum Mycelium and Its Protective Effect Against Oxidative Damage in HSF CellsJ. Science and Technology of Food Industry, 2026, 47(10): 1−13. (in Chinese with English abstract). doi: 10.13386/j.issn1002-0306.2025040366.
Citation: ZHANG Jingliang, SUN Yanqing, JIANG Xiaolu, et al. Optimization of Extraction Process of Polysaccharides from Ganoderma lucidum Mycelium and Its Protective Effect Against Oxidative Damage in HSF CellsJ. Science and Technology of Food Industry, 2026, 47(10): 1−13. (in Chinese with English abstract). doi: 10.13386/j.issn1002-0306.2025040366.

灵芝菌丝体多糖提取工艺优化及其对HSF细胞氧化损伤的保护作用

Optimization of Extraction Process of Polysaccharides from Ganoderma lucidum Mycelium and Its Protective Effect Against Oxidative Damage in HSF Cells

  • 摘要: 为优化灵芝菌丝体多糖(Ganoderma lucidum mycelium polysaccharides, GLP)的提取工艺,探究其抗氧化性能及对皮肤细胞损伤的保护作用。本研究以灵芝CZDG10菌丝体为原料,采用单因素实验结合响应面试验优化了高压破碎联合复合酶法提取GLP的工艺条件,分析其抗氧化活性,并建立H2O2诱导的人皮肤成纤维细胞(Human skin fibroblasts, HSF)损伤模型,考察GLP在防护细胞损伤方面的作用效果。结果表明,GLP的最佳提取条件为:破碎压力100 MPa,料液比1:40 g/mL,复合酶添加量2.40%、酶解温度50.0 ℃,酶解pH5.5,酶解时间2.25 h,在此条件下GLP得率达到9.69%±0.32%。GLP主要由甘露糖、葡萄糖、半乳糖和岩藻糖组成,且能够有效清除DPPH、OH和ABTS+自由基,其IC50值分别为0.30、0.36和1.59 mg/mL,提示其具有良好的抗氧化能力。此外,在H2O2诱导的HSF细胞中,GLP随浓度递增而显著提高细胞活力,1.0 mg/mL GLP可使损伤的HSF细胞存活率提高22.33%,经进一步分析发现GLP可通过上调细胞内超氧化物歧化酶(Superoxide dismutase, SOD)和谷胱甘肽过氧化物酶(Glutathione peroxidase, GSH-Px)活力,降低活性氧(Reactive oxygen species, ROS)和丙二醛(Malondialdehyde, MDA)含量,从而降低氧化应激损伤;同时,GLP还能够通过降低细胞内基质金属蛋白酶-1(Matrix metalloproteinase-1, MMP-1)含量、促进I型胶原蛋白(Collagen I, Col I)的分泌,从而增加细胞内胶原蛋白的含量,维持细胞健康状态。因此,GLP对H2O2诱导的HSF细胞损伤具有显著的保护作用,本研究将为灵芝菌丝体多糖的开发及应用提供理论依据。

     

    Abstract: The purpose of this study was to optimize the extraction of Ganoderma lucidum mycelium polysaccharides (GLP) derived from the mycelium of Ganoderma lucidum CZDG10 and to explore its antioxidant properties and protective effect on skin cell damage. The extraction of GLP was optimized using a combination of single factor experiments and the response surface method, with high-pressure crushing assistance and compound enzyme treatment. The antioxidant activity of GLP was analyzed, and the injury model of human skin fibroblasts (HSF) induced by H2O2 was evaluated to assess the efficacy of GLP in preventing cell damage. The optimal extraction conditions of GLP included a crushing pressure of 100 MPa, solid-liquid ratio of 1:40 g/mL, compound enzyme content of 2.40%, enzymatic temperature of 50.0 ℃, enzymatic pH of 5.5, and enzymatic reaction time of 2.25 h. Under these conditions, GLP was obtained in 9.69%±0.32% yield. GLP primarily comprised mannose, glucose, galactose, and fucose and effectively scavenged DPPH, OH, and ABTS free radicals, with IC50 values of 0.30, 0.36, and 1.59 mg/mL, respectively, demonstrating its antioxidant capacity. Models of H2O2-induced HSF oxidative stress showed that GLP could improve the cell survival rate in a concentration-dependent manner and increase cell viability by 22.33% at a concentration of 1.0 mg/mL. GLP also up-regulated the activity of superoxide dismutase (SOD) and glutathione peroxidase (GSH-Px) in HSF cells under oxidative stress induced by H2O2 and reduced the content of reactive oxygen species (ROS) and malondialdehyde (MDA), thereby reducing oxidative stress damage. In addition, GLP increased the content of collagen in HSF cells by reducing the matrix metalloproteinase-1 (MMP-1) content and promoting the secretion of collagen I in HSF cells, thereby maintaining the healthy state of the skin cells. Therefore, GLP exhibited a significant protective effect against H2O2-induced HSF cell damage. This study provides a theoretical basis for the development and application of polysaccharides from Ganoderma lucidum mycelium.

     

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