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Optimization of selenylation modification for garlic polysaccharide based on immune-enhancing activity

机译:基于免疫增强活性的大蒜多糖硒化修饰的优化

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Garlic polysaccharide (GPS) was modified in selenylation respectively by nitric acid-sodium selenite (NA-SS), glacial acetic acid-selenous acid (GA-SA), glacial acetic acid-sodium selenite (GA-SS) and selenium oxychloride (SOC) methods each under nine modification conditions of L-9 (3(4)) orthogonal design and each to obtain nine selenizing GPSs (sGPSs). Their structures were identified, yields and selenium contents were determined, selenium yields were calculated, and the immune-enhancing activities of four sGPSs with higher selenium yields were compared taking unmodified GPS as control. The results showed that among four methods the selenylation efficiency of NA-SS method were the highest, the activity of sGPS(5) was the strongest and significantly stronger than that of unmodified GPS. This indicates that selenylation modification can significantly enhance the immune-enhancing activity of GPS, NA-SS method is the best method and the optimal conditions are 0.8:1 weight ratio of sodium selenite to GPS, reaction temperature of 70 degrees C and reaction time of 10 h. (C) 2015 Elsevier Ltd. All rights reserved.
机译:大蒜多糖(GPS)分别通过硝酸-亚硒酸钠(NA-SS),冰醋酸-亚硒酸钠(GA-SA),冰醋酸-亚硒酸钠(GA-SS)和三氯氧化硒(SOC)进行硒化修饰)方法分别在L-9(3(4))正交设计的9个修改条件下进行,并各自获得9个硒化GPS(sGPS)。鉴定了它们的结构,确定了产量和硒含量,计算了硒产量,并以未经修饰的GPS为对照,比较了四种硒含量较高的sGPS的免疫增强活性。结果表明,在四种方法中,NA-SS方法的硒化效率最高,sGPS(5)的活性最强,并且明显强于未修饰的GPS。这表明硒化修饰可以显着增强GPS的免疫增强活性,NA-SS法是最佳方法,最佳条件是亚硒酸钠与GPS的重量比为0.8:1,反应温度为70摄氏度,反应时间为70℃。 10小时(C)2015 Elsevier Ltd.保留所有权利。

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