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首页> 外文期刊>LWT-Food Science & Technology >Optimization of dynamic microwave-assisted extraction of Armillaria polysaccharides using RSM, and their biological activity
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Optimization of dynamic microwave-assisted extraction of Armillaria polysaccharides using RSM, and their biological activity

机译:RSM动态微波辅助提取蜜环菌多糖及其生物活性

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摘要

We used the Box Behnken design to optimize polysaccharide extraction from Armillaria luteo-virens (Alb. et Schw. Fr.) Sacc. The independent factors included extraction time (X-1), microwave power (X-2) and water to raw material ratio (X-3). The experimental values were fitted to a second-order polynomial equation using multiple regression analysis and a statistical method. Analysis of Variance results indicated that all factors including X-1 X-3 had an impact on Armillaria luteo-virens (Alb. et Schw. Fr.) Sacc. polysaccharide extraction, The optimal conditions for efficient yield of polysaccharide, giving a maximum yield of 8.43%, were: X-1 = 30.24 min, X-2 = 600.6 W and X-3 = 40 mL/g. The model was verified by modifying the optimal conditions (X-1 = 30 min, X-2 = 601 Wand X-3 = 40 mL/g) for practical application. A pilot scale test was also carried out under optimal conditions. The obtained yields 8.40 +/- 0.12% and 8.34 +/- 0.25% were comparable with the optimized condition, which indicated that our model is accurate. Fourier transform infrared spectroscopy characterization revealed that the extracted polysaccharide produced typical absorption peaks. Oxygen radical absorbance capacity results showed the polysaccharides had good potential as an antioxidant. Moreover, the polysaccharide showed relatively strong inhibitory activity on the growth of NCI-H446 cells. (C) 2015 Elsevier Ltd. All rights reserved.
机译:我们使用Box Behnken设计来优化从黄蜜环孢菌(Alb。et Schw。Fr.)Sacc。提取的多糖。独立因素包括提取时间(X-1),微波功率(X-2)和水与原料之比(X-3)。使用多元回归分析和统计方法将实验值拟合到二阶多项式方程。方差分析结果表明,包括X-1 X-3在内的所有因素均对黄果蜜环菌(Alb。et Schw。Fr.)Sacc。影响。多糖的有效产率的最佳条件是X-1 = 30.24分钟,X-2 = 600.6 W和X-3 = 40 mL / g,多糖的有效产率为8.43%。通过修改实际应用的最佳条件(X-1 = 30分钟,X-2 = 601 W和X-3 = 40 mL / g)来验证模型。在最佳条件下也进行了中试规模测试。获得的产率8.40 +/- 0.12%和8.34 +/- 0.25%与优化条件相当,这表明我们的模型是准确的。傅立叶变换红外光谱表征表明,提取的多糖产生典型的吸收峰。氧自由基吸收能力结果表明该多糖具有良好的抗氧化剂潜力。此外,多糖对NCI-H446细胞的生长表现出较强的抑制活性。 (C)2015 Elsevier Ltd.保留所有权利。

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