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Optimization of dynamic-microwave assisted enzymatic hydrolysis extraction of total ginsenosides from stems and leaves of panax ginseng by response surface methodology

机译:响应面法通过响应面法从Panax人参茎和叶片中的动态微波辅助酶水解提取酶的优化

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摘要

Ginseng stems and leaves (GSAL) are abundant in ginsenosides compounds. For efficient utilization of GSAL and the enhancement of total ginsenosides (TG) compound yields in GSAL, TG from GSAL were extracted, using dynamic-microwave assisted extraction coupled with enzymatic hydrolysis (DMAE-EH) method. The extraction process has been simulated and its main influencing factors such as ethanol concentration, microwave temperature, microwave time and pump flow rate have been optimized by response surface methodology coupled with a Box-Behnken design(BBD). The experimental results indicated that optimal extraction conditions of TG from GSAL were as follows: ethanol concentration of 75%, microwave temperature of 60 degrees C, microwave time of 20min and pump flow rate of 38 r/min. After experimental verification, the experimental yields of TG was 60.62 +/- 0.85mgg(-1), which were well agreement with the predicted by the model. In general, the present results demonstrated that DMAE-EH method was successfully used to extract total ginsenosides in GSAL.
机译:人参茎和叶(GSAL)在人参皂苷化合物中丰富。为了有效利用GSAL和GONENENIDES(TG)化合物在GSAL中的增强,通过与酶水解(DMAE-EH)方法偶联的动态微波辅助提取来提取GSAL的TG。已经模拟了提取过程,并通过响应表面方法与箱Behnken设计(BBD)相结合,优化了其主要影响因素,例如乙醇浓度,微波温度,微波时间和泵流量。实验结果表明,GSAL的TG的最佳提取条件如下:乙醇浓度为75%,微波温度为60℃,微波时间20分钟,泵流速为38升/分钟。实验验证后,TG的实验产量为60.62 +/- 0.85mgg(-1),这与模型预测的吻合很好。通常,本结果表明DMAE-EH方法已成功地用于提取GSAL中的总参皂苷。

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