响应面法优化人参莓有效成分同时提取条件的研究

Hee Kyoung Go, Junseong Park
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摘要

以人参果为原料,研究了提取人参皂苷含量高、抗氧化活性高的最佳工艺条件。经搅拌、超声和微波法提取后,以70%乙醇和蒸馏水为溶剂,综合考虑人参皂苷Re和Rb1的含量、总多酚含量、抗氧化活性,以及是否是一种环保的制造方法,证实微波法采用蒸馏水提取是较好的提取方法。利用响应面法(RSM)对微波法提取条件进行了优化。以微波功率(50 ~ 200 W, X1)、溶剂与人参果比(5 ~ 20倍,X2)和提取时间(30 ~ 120 s, X3)为自变量。模型拟合良好,回归方程的决定系数大于等于0.9,p值小于0.05。微波功率为200 w,溶剂和人参果比为20倍,提取时间为90 s时,人参皂苷含量和总多酚的提取效果最佳。在最佳条件下的预测值为总多酚6.23 mg GAE/g,人参皂苷Re 17.69 mg/g,人参皂苷Rb1 16.01 mg/g。在对实际测量值的验证中,得到的值分别为6.33 mg GAE/g、17.79 mg/g和15.59 mg/g,与预测值吻合较好。
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Study of Optimized Simultaneous Extraction Conditions for Active Component of Ginseng Berry using Response Surface Methodology
This study was conducted to find out the optimal extraction conditions to obtain extracts with a high content of ginsenosides and antioxidant activity using the ginseng berry. After extraction by stirring, ultrasound and microwave method using 70% ethanol and distilled water as solvents, the results of considering the content of ginsenoside Re and Rb1, total polyphenol content, antioxidant activity, and whether it is an environmentally friendly manufacturing method, it was confirmed that the microwave method using distilled water is good method of extraction. The optimization of extraction conditions for microwave method were made by response surface methodology (RSM). Microwave power (50 ∼ 200 W, X1), solvent and ginseng berry ratio (5 ∼ 20 times, X2) and the extraction time (30 ∼ 120 s, X3) were used as independent variables. The model showed a good fit having a determination coefficient of the regression equation of 0.9 or more and a p-value less than 0.05. Estimated conditions for the maximized extraction of ginsenoside contents and total polyphenols were 200 w in microwave power, 20 times in solvent and ginseng berry ratio, and 90 s in extraction time. Predicted values at the optimum conditions were total polyphenols of 6.23 mg GAE/g, ginsenoside Re of 17.69 mg/g, and ginsenoside Rb1 of 16.01 mg/g. In the verification of the actual measurement the obtained values showed 6.33 mg GAE/g, 17.79 mg/g, and 15.59 mg/g, respectively, in good agreement with predicted values.
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