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首页> 外文期刊>Journal of pharmaceutical investigation >Optimized supercritical fluid extraction and effect of ionic liquids on picroside I and picroside II recovery from Picrorhiza scrophulariiflora rhizomes
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Optimized supercritical fluid extraction and effect of ionic liquids on picroside I and picroside II recovery from Picrorhiza scrophulariiflora rhizomes

机译:优化的超临界流体萃取和离子液体对从美人鱼根茎中的美山梨苷I和美山梨苷II回收的影响

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摘要

The supercritical carbon dioxide-assisted extraction (SC CO2E) process was optimized for extracting picroside I and picroside II from Picrorhiza scrophulariiflora rhizomes. The picroside I and picroside II content was determined using validated LC-MS methodology. The response surface methodology (RSM) was employed to study quantitative effects of extraction parameters viz. operating pressure, temperature, modifier concentration and extraction time using Box-Behnken design. The experimental data were fitted to second-order polynomial equation using multiple regression analysis and analyzed using the appropriate statistical method. By solving the regression equation and analyzing 3D plots, the optimum extraction conditions were found to be: extraction pressure, 25 MPa; temperature, 40 °C; modifier concentration, 15 % and extraction time, 90 min. The effect of four different ionic liquids (IL) as a modifier additive has been investigated using optimized SC CO2E conditions. None of the IL showed equivalent or enhanced recovery of analytes of interest. The conventional hot percolation of P. scrophulariiflora powder resulted in 23.69 ± 1.02 and 10.22 ± 0.71 mg g-1 picroside I and II, respectively, after an extraction period of 6 h whereas SC CO2E with methanol as modifier showed 33.14 ± 1.23 and 16.77 ± 0.82 mg g-1 recovery of picroside I and II, respectively in 90 min. The comparison of yield and extraction time demonstrated that SC CO2E using methanol as modifier is more efficient than conventional hot percolation method.
机译:优化了超临界二氧化碳辅助萃取(SC CO2E)工艺,用于从玄参中提取苦瓜苷I和苦瓜苷II。使用验证的LC-MS方法确定了苦瓜苷I和苦瓜苷II的含量。响应面方法(RSM)被用来研究提取参数的定量影响。使用Box-Behnken设计获得的工作压力,温度,改性剂浓度和提取时间。使用多元回归分析将实验数据拟合到二阶多项式方程,并使用适当的统计方法进行分析。通过求解回归方程并分析3D图,发现最佳萃取条件为:萃取压力为25 MPa;萃取压力为25 MPa。温度40°C;改性剂浓度为15%,提取时间为90分钟。已使用优化的SC CO2E条件研究了四种不同的离子液体(IL)作为改性剂添加剂的效果。 IL均未显示出等效或增强的目标分析物回收率。在萃取6小时后,传统的玄参粉末热渗滤分别得到23.69±1.02和10.22±0.71 mg g-1苦味菜苷I和II,而以甲醇为改性剂的SC CO2E分别为33.14±1.23和16.77±在90分钟内分别回收了0.82 mg g-1的苦味甙I和II。产量和萃取时间的比较表明,使用甲醇作为改性剂的SC CO2E比常规的热渗滤方法更有效。

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