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微波辅助萃取芫荽酚类抗氧化剂的优化——响应面法

Optimization of microwave-assisted extraction (MAE) of coriander phenolic antioxidants - response surface methodology approach.

作者信息

Zeković Zoran, Vladić Jelena, Vidović Senka, Adamović Dušan, Pavlić Branimir

机构信息

Faculty of Technology, University of Novi Sad, Bulevar Cara Lazara 1, 21000, Novi Sad, Serbia.

Institute of Field and Vegetable Crops, Maksima Gorkog 30, 21000, Novi Sad, Serbia.

出版信息

J Sci Food Agric. 2016 Oct;96(13):4613-22. doi: 10.1002/jsfa.7679. Epub 2016 Mar 31.

Abstract

BACKGROUND

Microwave-assisted extraction (MAE) of polyphenols from coriander seeds was optimized by simultaneous maximization of total phenolic (TP) and total flavonoid (TF) yields, as well as maximized antioxidant activity determined by 1,1-diphenyl-2-picrylhydrazyl and reducing power assays. Box-Behnken experimental design with response surface methodology (RSM) was used for optimization of MAE. Extraction time (X1 , 15-35 min), ethanol concentration (X2 , 50-90% w/w) and irradiation power (X3 , 400-800 W) were investigated as independent variables. Experimentally obtained values of investigated responses were fitted to a second-order polynomial model, and multiple regression analysis and analysis of variance were used to determine fitness of the model and optimal conditions.

RESULTS

The optimal MAE conditions for simultaneous maximization of polyphenol yield and increased antioxidant activity were an extraction time of 19 min, an ethanol concentration of 63% and an irradiation power of 570 W, while predicted values of TP, TF, IC50 and EC50 at optimal MAE conditions were 311.23 mg gallic acid equivalent per 100 g dry weight (DW), 213.66 mg catechin equivalent per 100 g DW, 0.0315 mg mL(-1) and 0.1311 mg mL(-1) respectively.

CONCLUSION

RSM was successfully used for multi-response optimization of coriander seed polyphenols. Comparison of optimized MAE with conventional extraction techniques confirmed that MAE provides significantly higher polyphenol yields and extracts with increased antioxidant activity. © 2016 Society of Chemical Industry.

摘要

背景

通过同时最大化总酚(TP)和总黄酮(TF)产量以及通过1,1-二苯基-2-苦基肼自由基清除法和还原力测定法测定的最大抗氧化活性,对微波辅助提取(MAE)芫荽籽中的多酚进行了优化。采用响应面法(RSM)的Box-Behnken实验设计对MAE进行优化。将提取时间(X1,15 - 35分钟)、乙醇浓度(X2,50 - 90% w/w)和辐照功率(X3,400 - 800瓦)作为自变量进行研究。将实验获得的各响应值拟合到二阶多项式模型,并使用多元回归分析和方差分析来确定模型的拟合优度和最佳条件。

结果

同时最大化多酚产量和提高抗氧化活性的最佳MAE条件为:提取时间19分钟、乙醇浓度63%、辐照功率570瓦,而在最佳MAE条件下TP、TF、IC50和EC50的预测值分别为每100克干重311.23毫克没食子酸当量、每100克干重213.66毫克儿茶素当量、0.0315毫克/毫升和0.1311毫克/毫升。

结论

RSM成功用于芫荽籽多酚的多响应优化。将优化后的MAE与传统提取技术进行比较,证实MAE能显著提高多酚产量,并提取出抗氧化活性增强的提取物。© 2016化学工业协会。

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