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中国精品科技期刊2020
王晶, 费爽, 孟煜晗, 孙天玉, 侯晓强, 付亚娟, 杜娟, 吴智艳. 鳞柄小奥德蘑多糖提取工艺的优化及抗氧化活性[J]. 食品工业科技, 2017, (19): 172-176. DOI: 10.13386/j.issn1002-0306.2017.19.032
引用本文: 王晶, 费爽, 孟煜晗, 孙天玉, 侯晓强, 付亚娟, 杜娟, 吴智艳. 鳞柄小奥德蘑多糖提取工艺的优化及抗氧化活性[J]. 食品工业科技, 2017, (19): 172-176. DOI: 10.13386/j.issn1002-0306.2017.19.032
WANG Jing, FEI Shuang, MENG Yu-han, SUN Tian-yu, HOU Xiao-qiang, FU Ya-juan, DU Juan, WU Zhi-yan. Extraction and antioxidant activity of polysaccharides from Oudemansiella furfuracea[J]. Science and Technology of Food Industry, 2017, (19): 172-176. DOI: 10.13386/j.issn1002-0306.2017.19.032
Citation: WANG Jing, FEI Shuang, MENG Yu-han, SUN Tian-yu, HOU Xiao-qiang, FU Ya-juan, DU Juan, WU Zhi-yan. Extraction and antioxidant activity of polysaccharides from Oudemansiella furfuracea[J]. Science and Technology of Food Industry, 2017, (19): 172-176. DOI: 10.13386/j.issn1002-0306.2017.19.032

鳞柄小奥德蘑多糖提取工艺的优化及抗氧化活性

Extraction and antioxidant activity of polysaccharides from Oudemansiella furfuracea

  • 摘要: 研究鳞柄小奥德蘑多糖的最佳提取工艺及其体外抗氧化活性。采用正交实验法优化提取工艺,蒽酮-硫酸法和3,5-二硝基水杨酸法(DNS法)测定多糖含量,分别采用普鲁士蓝法、水杨酸法和邻苯三酚自氧化法测定鳞柄小奥德蘑多糖的抗氧化能力。研究结果显示,影响鳞柄小奥德蘑粗多糖得率的主次因素为:料液比>提取时间>提取温度>提取次数,多糖的最佳提取工艺为:料液比1∶40,提取时间1 h,提取温度90℃,提取次数3次。在最佳提取工艺条件下,水提法提取鳞柄小奥德蘑粗多糖的得率约8.84%。体外抗氧化活性测定结果表明,鳞柄小奥德蘑粗多糖对·OH的清除效果比较明显,随着质量浓度的升高,清除效果越发显著(p<0.05),4 mg/m L的粗多糖对·OH的清除率达48.94%±12.32%;鳞柄小奥德蘑粗多糖具有一定的还原能力;对O-2·的清除能力较弱。因此,鳞柄小奥德蘑中粗多糖的含量较高且具有一定的抗氧化能力,可用于开发研制多糖药物和保健性食品等深加工产品。 

     

    Abstract: To investigate the optimum extracting process of polysaccharides from Oudemansiella furfuracea and its antioxidant activity in vitro.Extraction process of polysaccharides from Oudemansiella furfuracea was optimised by orthogonal test. And the concentration of total sugar and reducing sugar in water extraction was determined by anthrone-sulfuric acid method and DNS method, respectively. The antioxidant properties were tested by prussian blue method, salicylic acid method and pyrogallol method, respectively.The results showed that the impact sequence of the factors on the extraction rate of polysaccharide from Oudemansiella furfuracea was as follows: solid-liquid ratio > extraction time > extraction temperature > extraction times. The optimal extraction condition was solid-liquid ratio of 1∶ 40, extraction time of 1h, extraction temperature of 80 ℃, and extracted three times, and under this conditions, the extraction rates of polysaccharide from Oudemansiella furfuracea was 8.84%. In addition, crude polysaccharides from Oudemansiella furfuracea could obviously scavenge hydroxyl radicals in a dose-dependent manner ( p < 0.05) , and at the concentration of 4 mg/m L, crude polysaccharides was observed to possess strong free radicalscavenging effects against scavenge hydroxyl radicals, with a value of 48.94% ± 12.32%. In addition, crude polysaccharides from Oudemansiella furfuracea had a certain reducing power lower and its scavenging effects on superoxide anion radical was ineffective.So crude polysaccharides from Oudemansiella furfuracea had certain antioxidant activity and could be used for polysaccharide drugs and health food.

     

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