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首页> 外文期刊>Phytochemical Analysis >Design of experiment approach for the process optimisation of microwave assisted extraction of lupeol from Ficus racemosa leaves using response surface methodology.
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Design of experiment approach for the process optimisation of microwave assisted extraction of lupeol from Ficus racemosa leaves using response surface methodology.

机译:响应面分析法设计了微波辅助从总榕叶中提取紫杉醇的工艺优化实验方法。

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摘要

Introduction - Triterpenoids are a group of important phytocomponents from Ficus racemosa (syn. Ficus glomerata Roxb.) that are known to possess diverse pharmacological activities and which have prompted the development of various extraction techniques and strategies for its better utilisation. Objective - To develop an effective, rapid and ecofriendly microwave-assisted extraction (MAE) strategy to optimise the extraction of a potent bioactive triterpenoid compound, lupeol, from young leaves of Ficus racemosa using response surface methodology (RSM) for industrial scale-up. Material and Method - Initially a Plackett-Burman design matrix was applied to identify the most significant extraction variables amongst microwave power, irradiation time, particle size, solvent:sample ratio loading, varying solvent strength and pre-leaching time on lupeol extraction. Among the six variables tested, microwave power, irradiation time and solvent-sample/loading ratio were found to have a significant effect (P<0.05) on lupeol extraction and were fitted to a Box-Behnken-design-generated quadratic polynomial equation to predict optimal extraction conditions as well as to locate operability regions with maximum yield. Results - The optimal conditions were microwave power of 65.67% of 700 W, extraction time of 4.27 min and solvent-sample ratio loading of 21.33 mL/g. Confirmation trials under the optimal conditions gave an experimental yield (18.52 micro g/g of dry leaves) close to the RSM predicted value of 18.71 micro g/g. Conclusion - Under the optimal conditions the mathematical model was found to be well fitted with the experimental data. The MAE was found to be a more rapid, convenient and appropriate extraction method, with a higher yield and lower solvent consumption when compared with conventional extraction techniques.Digital Object Identifier http://dx.doi.org/10.1002/pca.2403
机译:简介-三萜类化合物是一类来自榕树(Ficus racemosa)(同花榕(Ficus glomerata Roxb。))的重要植物成分,已知具有多种药理活性,并促进了各种提取技术和策略的开发,以更好地利用它。目的-开发一种有效,快速且生态友好的微波辅助提取(MAE)策略,以响应面方法(RSM)从总榕树的幼叶中优化提取有效生物活性三萜类化合物羽扇豆酚,从而扩大规模。材料和方法-最初使用Plackett-Burman设计矩阵来确定最有效的提取变量,其中包括微波功率,辐照时间,粒径,溶剂:样品比的上样量,变化的溶剂强度和卢比欧尔提取的预浸出时间。在测试的六个变量中,发现微波功率,辐照时间和溶剂-样品/负载比对卢比欧醇的提取有显着影响(P <0.05),并与Box-Behnken设计生成的二次多项式方程拟合,以预测最佳的提取条件,并以最大的产量定位可操作区域。结果-最佳条件是微波功率为700 W的65.67%,提取时间为4.27分钟,溶剂-样品比上样量为21.33 mL / g。在最佳条件下进行的确认试验得出的实验产量(18.52微克/克干叶)接近RSM预测值18.71微克/克。结论-在最佳条件下,该数学模型与实验数据非常吻合。与传统的提取技术相比,MAE被发现是一种更快,更方便,更合适的提取方法,具有更高的收率和更低的溶剂消耗。Digital Object Identifier http://dx.doi.org/10.1002/pca.2403

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