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首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Microwave extraction optimization using the response surface methodology of Fructus Meliae Toosendan polysaccharides and its antioxidant activity
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Microwave extraction optimization using the response surface methodology of Fructus Meliae Toosendan polysaccharides and its antioxidant activity

机译:微波萃取优化使用Fruce Meliae Toosendan多糖的响应表面方法及其抗氧化活性

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摘要

Polysaccharides are the main active component of the Mongolian medicine Fructus Meliae Toosendan, but their effective extraction and antioxidant effects have not been reported. Therefore, the optimization of the microwave extraction of polysaccharides from Fructus Meliae Toosendan (FMTP) using the response interface method was carried out. Single-factor tests on four main factors (the solid-liquid ratio, microwave power, extraction time, and number of extractions) affecting the polysaccharide extraction rate in the microwave extraction process were carried out. Then, using the FMTP content as a response index, central composite tests on the four factors were conducted, and an optimization analysis using the response surface method was completed. Consequently, we obtained the optimum conditions for FMTP microwave extraction: a solvent-material ratio of 30.00 mL/mg, extraction power of 700 W, extraction time of 20 min, and two extractions. The FMTP extraction rate was 15.75% at the optimum conditions, consistent with the theoretical predictions. The crude polysaccharide was further purified to obtain high-purity FMTP polysaccharide, having a weight-average molecular mass of 1288 Da. The antioxidant activities of FMTP were evaluated using the hydroxyl superoxide anion, 2,2-diphenyl-1-picrylhydrazyl (DPPH), and nitrite free radical scavenging assays and reducing power assay. The data show that FMTP has considerable antioxidant activity. Thus, polysaccharides from Fructus Meliae Toosendan could be used as a potential antioxidant agent in medicine or as a functional food. (C) 2018 Elsevier B.V. All rights reserved.
机译:多糖是蒙古医药梅梅雷Toosendan的主要活性成分,但尚未报告其有效的提取和抗氧化作用。因此,进行了使用响应界面方法从果甜点Toosendan(FMTP)的微波萃取多糖的微波萃取。进行了影响微波提取过程中多糖提取率的四个主要因素(固液比,微波功率,提取时间和萃取次数)的单因素试验。然后,使用FMTP内容作为响应指数,进行了四个因子的中央复合测试,完成了使用响应面法的优化分析。因此,我们获得了FMTP微波萃取的最佳条件:溶剂材料比为30.00ml / mg,提取功率为700W,提取时间为20分钟,两种萃取。在最佳条件下,FMTP提取率为15.75%,与理论预测一致。进一步纯化粗多糖以获得高纯度的FMTP多糖,其重均分子量为1288Da。使用羟基超氧化物阴离子,2,2-二苯基-1-富铬酰基(DPPH)和亚硝酸盐自由基清除测定和降低功率测定来评估FMTP的抗氧化活性。数据显示FMTP具有相当大的抗氧化活动。因此,来自Fruceus Meliae Toosendan的多糖可以用作药物中的潜在抗氧化剂或作为功能性食物。 (c)2018年elestvier b.v.保留所有权利。

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