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首页> 外文期刊>Phytochemical Analysis >Microwave-assisted extraction of total bioactive saponin fraction from Gymnema sylvestre with reference to gymnemagenin: a potential biomarker
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Microwave-assisted extraction of total bioactive saponin fraction from Gymnema sylvestre with reference to gymnemagenin: a potential biomarker

机译:微波辅助提取金缕梅中总生物活性皂苷组分的方法-金缕梅苷:潜在的生物标志物

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摘要

Objective - To develop a fast and ecofriendly microwave assisted extraction (MAE) technique for the effective and exhaustive extraction of gymnemagenin as an indicative biomarker for the quality control of Gymnema sylvestre.Methodology - Several extraction parameters such as microwave power, extraction time, solvent composition, pre-leaching time, loading ratio and extraction cycle were studied for the determination of the optimum extraction condition. Scanning electron micrographs were obtained to elucidate the mechanism of extractionResults - The final optimum extraction conditions as obtained from the study were: 40% microwave power, 6 min irradiation time, 85% v/v methanol as the extraction solvent, 15 min pre-leaching time and 25 : 1 (mL/g) as the solvent-to-material loading ratio. The proposed extraction technique produced a maximum yield of 4.3% w/w gymnemagenin in 6 min which was 1.3, 2.5 and 1.95 times more efficient than 6 h of heat reflux, 24 h of maceration and stirring extraction, respectively. A synergistic heat and mass transfer theory was also proposed to support the extraction mechanismConclusion - Comparison with conventional extraction methods revealed that MAE could save considerable amounts of time and energy, whilst the reduction of volume of organic solvent consumed provides an ecofriendly feature. Copyright pb 2009 John Wiley & Sons, Ltd.
机译:目的-开发一种快速,环保的微波辅助提取(MAE)技术,以有效,彻底地提取匙gym藤素,作为对匙Gym藤质量进行控制的指示性生物标志物。方法-若干提取参数,如微波功率,提取时间,溶剂组成为了确定最佳提取条件,研究了预浸出时间,负载比和提取周期。获得扫描电子显微照片以阐明提取机理。结果-从研究中获得的最终最佳提取条件为:40%微波功率,6分钟照射时间,85%v / v甲醇作为提取溶剂,15分钟预浸时间和25:1(mL / g)作为溶剂与材料的负载比。所提出的提取技术在6分钟内产生了最高产率为4.3%w / w的Gymnemagenin,分别比热回流6 h,浸渍和搅拌提取6 h的效率高1.3、2.5和1.95倍。还提出了协同的传热传质理论来支持萃取机理。结论-与常规萃取方法的比较表明,MAE可以节省大量的时间和能量,而减少的有机溶剂消耗量则提供了生态友好的功能。版权所有pb 2009 John Wiley&Sons,Ltd.

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