Mandal Vivekananda, Mohan Yogesh, Hemalatha Siva
Pharmacognosy Research Laboratory, Department of Pharmaceutics, Institute of Technology, Banaras Hindu University, Varanasi 221005, UP, India.
J Pharm Biomed Anal. 2008 Jan 22;46(2):322-7. doi: 10.1016/j.jpba.2007.10.020.
The present work reports on a novel extraction method using microwaves based on solvent-sample duo-heating synergism, for the extraction of curcumin from Curcuma longa L. The duo-heating mechanism is based on simultaneous heating of sample matrix and extracting solvent under microwave energy. Methanol soaked plant material was used as a modifier to bring about selective and effective heating of the sample under microwave. Acetone was used as the extracting solvent, which has excellent curcumin solubilizing capacity and heats up under microwave owing to its good dissipation factor. Extraction conditions, namely microwave power, irradiation time, particle size and modifier volume were optimized using Taguchi design approach and curcumin was quantified using high performance thin layer chromatography. The optimum conditions as obtained from signal-to-noise ratio analysis and interaction studies between factors were as follows: 20% microwave power, 4 min irradiation time, particles screened through sieve 20 and 8 ml of modifier. Microwave assisted extraction (MAE) under the influence of dual heating mechanism showed better precision and dramatically higher yield with significant reduction in extraction time under optimum extraction conditions, when compared to conventional approaches.
本研究报道了一种基于溶剂 - 样品双热协同作用的新型微波提取方法,用于从姜黄中提取姜黄素。双热机制基于在微波能量下同时加热样品基质和提取溶剂。用甲醇浸泡的植物材料作为改性剂,以在微波作用下实现对样品的选择性和有效加热。丙酮用作提取溶剂,其具有优异的姜黄素溶解能力,并且由于其良好的耗散因子而在微波下升温。使用田口设计方法优化了提取条件,即微波功率、辐照时间、粒度和改性剂体积,并使用高效薄层色谱法定量姜黄素。通过信噪比分析和因素间相互作用研究获得的最佳条件如下:20% 的微波功率、4 分钟辐照时间、通过 20 号筛的颗粒以及 8 毫升改性剂。与传统方法相比,在双热机制影响下的微波辅助提取(MAE)在最佳提取条件下显示出更好的精密度、显著更高的产率以及提取时间的大幅减少。