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Optimization of Microwave-Assisted Extraction for the Determination of Glycyrrhizin in Menthazin Herbal Drug by Experimental Design Methodology

机译:实验设计方法优化微波辅助提取法测定薄荷脑苷中甘草甜素的含量

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摘要

In the present study, a microwave-assisted extraction (MAE) method has been investigated for the extraction of glycyrrhizin from Menthazin herbal drug. The extracted samples have been analyzed by a developed reversed-phase liquid chromatography with ultraviolet detection. The separation was performed by a Eurospher-100 C reversed-phase column (250 × 4.6 mm i.d., 5 μm) and the mobile phase consisted of methanol:acetonitrile:water:glacial acetic acid (30:30:40:1  ) with a flow rate of 0.8 mL min . The extraction procedure has been screened by a two level full factorial design for determination of statistically significant parameters. Thereafter, the identified parameters, extraction temperature, time and solvent volume were optimized by a Box–Behnken design. The proposed mathematical model was based on analysis of variance results and correctly explained the behavior of the response in the experimental domain. value adjusted for numbers of degrees of freedom was 0.9915 and -value for lack of fit, 0.8499 at the 95% confidence level,  > 0.05. The optimal condition identified were extraction temperature, 70 °C, time, 13.8 min and solvent volume 2.0 mL. To evaluate the applicability of the proposed MAE method, results were compared with those obtained with the liquid extraction method. Extraction efficiency and precision were higher when MAE has been used. The proposed method allows extracting the glycyrrhizin in a small quantity of solvent and faster than the liquid extraction method.
机译:在本研究中,已经研究了微波辅助提取(MAE)方法从薄荷脑草药中提取甘草甜素的方法。提取的样品已通过开发的具有紫外检测的反相液相色谱进行了分析。分离采用Eurospher-100 C反相柱(250×4.6 mm内径,5μm)进行,流动相由甲醇:乙腈:水:冰醋酸(30:30:40:1)和流速为0.8mL / min。提取程序已通过两级全因子设计进行筛选,以确定统计学上重要的参数。此后,通过Box–Behnken设计优化了确定的参数,萃取温度,时间和溶剂量。所提出的数学模型基于对方差结果的分析,并正确解释了实验域中响应的行为。 在95%置信度下,针对自由度数调整的值是0.9915,对于缺乏拟合度的值-0.8499,> 0.05。确定的最佳条件是提取温度,70°C,时间,13.8min和溶剂体积2.0mL。为了评估所提出的MAE方法的适用性,将结果与采用液体萃取方法获得的结果进行了比较。使用MAE时,提取效率和精度更高。所提出的方法允许以少量溶剂和比液体提取方法更快地提取甘草甜素。

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