Kim Ji-Sang
Department of Food and Nutrition, Kyungnam University, Gyeongnam 51767, Korea.
Prev Nutr Food Sci. 2022 Sep 30;27(3):315-322. doi: 10.3746/pnf.2022.27.3.315.
This study's aim is to apply response surface methodology (RSM) to model and optimize the accelerated solvent extraction (ASE) technique for extracting the sum of ginsenosides (Rg1, Rb1, and Rg3) and total ginsenosides from cultivated wild ginseng. To extract ginsenosides from cultivated wild ginseng, a new ASE-based method, combined with RSM modeling and optimization, was developed. The RSM method, which was based on a five-level, three-factor central composite design, was used to obtain the optimal combination of extraction conditions. Briefly, the optimal extraction conditions for the sum of ginsenosides (Rg1, Rb1, and Rg3) and total ginsenoside were as follows: 88.64% ethanol for each extraction solvent, 105.98°C and 129.66°C of extraction temperature, 28.77 and 15.92 min of extraction time, extraction pressure of 1,500 psi, nitrogen purge of 60 s, flush volume of 60%, and one extraction cycle. A 3D response surface plot and contour plot derived from the mathematical models were applied to obtain the optimal conditions. Under the above conditions, the experimental extraction yields of the sum of ginsenosides (Rg1, Rb1, and Rg3) and total ginsenoside content were 7.45 and 32.82 mg/g, respectively, which closely agrees with the model's prediction values.
本研究的目的是应用响应面法(RSM)对加速溶剂萃取(ASE)技术进行建模和优化,以从人工种植的林下参中提取人参皂苷(Rg1、Rb1和Rg3)总和及总人参皂苷。为了从人工种植的林下参中提取人参皂苷,开发了一种基于ASE的新方法,并结合RSM建模和优化。基于五水平、三因素中心复合设计的RSM方法用于获得萃取条件的最佳组合。简而言之,人参皂苷(Rg1、Rb1和Rg3)总和及总人参皂苷的最佳萃取条件如下:每次萃取溶剂为88.64%乙醇,萃取温度为105.98℃和129.66℃,萃取时间为28.77和15.92分钟,萃取压力为1500 psi,氮气吹扫60秒,冲洗体积为60%,萃取一个循环。应用从数学模型得出的三维响应面图和等高线图来获得最佳条件。在上述条件下,人参皂苷(Rg1、Rb1和Rg3)总和及总人参皂苷含量的实验萃取产率分别为7.45和32.82 mg/g,这与模型预测值非常吻合。