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Effect of ultrasonic treatment on the recovery and DPPH radical scavenging activity of polysaccharides from longan fruit pericarp

机译:超声波处理对龙眼果皮多糖回收和DPPH自由基清除活性的影响

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摘要

Ultrasonic technique was employed to extract polysaccharides from longan fruit pericarp (PLFP). The optimal conditions for ultrasonic extraction of PLFP were determined by response surface methodology. Box-Behnken design was applied to evaluate the effects of three independent variables (ultrasonic power, time and temperature) on the recovery and l,l'-diphenyl-2-picrylhydrazyl (DPPH) radical scavenging activity of PLFP. The correlation analysis of two mathematical-regression models indicated that quadratic polynomial model could be employed to optimize the ultrasonic extraction of PLFP. From response surface plots, ultrasonic power, time and temperature exhibited independent and interactive effects on the extraction of PLFP. The DPPH radical scavenging activity of PLFP could be improved by application of various ultrasonic power, time and temperature, which was possible due to the degradation of polysaccharides to different extent. The optimal conditions to obtain the highest recovery and the strongest DPPH radical scavenging activity of PLFP were 120 W, 22 min and 60℃, as well as 241 W, 18 min and 51℃, respectively. Under these optimal conditions, the experimental values agreed with the predicted ones by analysis of variance. It indicated high fitness of two models used and the success of response surface methodology for optimizing PLFP extraction.
机译:采用超声波技术从龙眼果皮(PLFP)中提取多糖。通过响应面法确定了超声提取PLFP的最佳条件。应用Box-Behnken设计来评估三个独立变量(超声功率,时间和温度)对PLFP的回收率和1,,l'-二苯基-2-吡啶并肼基(DPPH)自由基清除活性的影响。两种数学回归模型的相关性分析表明,可以采用二次多项式模型对PLFP的超声提取进行优化。从响应表面图可以看出,超声功率,时间和温度对PLFP的提取具有独立和交互作用。通过施加不同的超声功率,时间和温度可以提高PLFP的DPPH自由基清除活性,这可能是由于多糖降解程度不同所致。获得PLFP的最高回收率和最强DPPH自由基清除活性的最佳条件分别为120 W,22 min和60℃,以及241 W,18 min和51℃。在这些最佳条件下,通过方差分析,实验值与预测值一致。它表明了所使用的两个模型的高度适用性,以及用于优化PLFP提取的响应面方法的成功。

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