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An efficient microwave-assisted extraction process of stevioside and rebaudioside-A from Stevia rebaudiana (Bertoni)

机译:微波辅助从甜叶菊中提取甜菊糖苷和莱鲍迪苷-A的高效方法

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INTRODUCTION: Stevioside and rebaudioside-A are major low-calorie diterpene steviol glycosides in the leaves of Stevia rebaudiana. They are widely used as natural sweeteners for diabetic patients, but the long extraction procedures required and the optimisation of product yield present challenging problems. OBJECTIVE: To develop a rapid and effective methodology for the extraction of stevioside and rebaudioside-A from S. rebaudiana leaves and to compare yields using different extraction techniques. METHODOLOGY: Dried and powdered leaves of S. rebaudiana were extracted by conventional, ultrasound and microwave-assisted extraction techniques using methanol, ethanol and water as single solvents as well as in binary mixtures. Conventional cold extraction was performed at 25 degrees C for 12 h while ultrasound extraction was carried out at temperature of 35 +/- 5 degrees C for 30 min. Microwave-assisted extraction (MAE) was carried out at a power level of 80 W for 1 min at 50 degrees C. RESULTS: MAE yielded 8.64 and 2.34% of stevioside and rebaudioside-A, respectively, while conventional and ultrasound techniques yielded 6.54 and 1.20%, and 4.20 and 1.98% of stevioside and rebaudioside-A, respectively. CONCLUSION: A rapid and efficient method has been developed for the extraction of stevioside and rebaudioside-A in optimum yields using MAE procedure. This method has the advantage of rapid extraction and fast screening of a large number of S. rebaudiana samples for assessment of planting material. MAE saves considerable time, energy and has implications in the quality assessment of stevioside and rebaudioside-A prior to their industrial production from the leaves of S. rebaudiana.
机译:简介:甜菊糖和莱鲍迪甙-A是甜叶菊中低热量的主要二萜二萜甜菊醇糖苷。它们被广泛用作糖尿病患者的天然甜味剂,但是所需的长时间提取程序和产品收率的优化带来了难题。目的:开发一种快速有效的方法,从甜叶葡萄球菌叶中提取甜菊糖苷和莱鲍迪苷-A,并比较不同提取方法的产量。方法:采用常规,超声和微波辅助提取技术,使用甲醇,乙醇和水作为单一溶剂以及二元混合物,提取干燥的沙棘叶粉末。常规冷提取在25摄氏度下进行12小时,而超声提取则在35 +/- 5摄氏度下进行30分钟。微波辅助萃取(MAE)在50摄氏度下于80 W的功率水平下进行1分钟。结果:MAE分别产生甜菊糖苷和莱鲍迪苷A的8.64%和2.34%,而常规技术和超声技术分别产生6.54%和6.54%。甜菊糖苷和莱鲍迪苷-A分别为1.20%,4.20和1.98%。结论:已开发出一种快速有效的方法,采用MAE方法以最佳收率提取甜菊糖苷和莱鲍迪苷A。该方法的优点是可以快速提取和快速筛选大量沙棘葡萄球菌样品,以评估种植材料。 MAE可以节省大量的时间,能源,并且可以在从甜叶链球菌的叶子中进行工业生产之前,对甜菊糖苷和莱鲍迪苷-A的质量评估产生影响。

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