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Deep Eutectic Solvent-Based Microwave-Assisted Method for Extraction of Hydrophilic and Hydrophobic Components from Radix Salviae miltiorrhizae

机译:基于低共熔溶剂的微波辅助提取丹参中的亲水和疏水成分

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摘要

Deep eutectic solvents (DESs) have attracted significant attention as a promising green media. In this work, twenty-five kinds of benign choline chloride-based DESs with microwave-assisted methods were applied to quickly extract active components from Radix Salviae miltiorrhizae. The extraction factors, including temperature, time, power of microwave, and solid/liquid ratio, were investigated systematically by response surface methodology. The hydrophilic and hydrophobic ingredients were extracted simultaneously under the optimized conditions: 20 vol% of water in choline chloride/1,2-propanediol (1: 1, molar ratio) as solvent, microwave power of 800 W, temperature at 70 degrees C, time at 11.11 min, and solid/liquid ratio of 0.007 g.mL(-1). The extraction yield was comparable to, or even better than, conventional methods with organic solvents. The microstructure alteration of samples before and after extraction was also investigated. The method validation was tested as the linearity of analytes (r(2) > 0.9997 over two orders of magnitude), precision (intra-day relative standard deviation (RSD) < 2.49 and inter-day RSD < 2.96), and accuracy (recoveries ranging from 95.04% to 99.93%). The proposed DESs combined with the microwave-assisted method provided a prominent advantage for fast and efficient extraction of active components, and DESs could be extended as solvents to extract and analyze complex environmental and pharmaceutical samples.
机译:作为一种有前途的绿色介质,深共熔溶剂(DES)已引起了广泛的关注。在这项工作中,采用微波辅助方法对25种基于氯化胆碱的良性DES进行了提取,从丹参中快速提取了活性成分。采用响应面法对萃取因子进行了系统的研究,包括温度,时间,微波功率和固液比。在最佳条件下同时提取亲水性和疏水性成分:氯化胆碱/ 1,2-丙二醇(摩尔比)中20vol%的水作为溶剂,微波功率800 W,温度70℃,时间为11.11分钟,固/液比为0.007 g.mL(-1)。提取产率与使用有机溶剂的常规方法相当甚至更好。还研究了提取前后样品的微观结构变化。测试方法验证的方法包括分析物的线性(r(2)> 0.9997,超过两个数量级),精度(日内相对标准偏差(RSD)<2.49和日间RSD <2.96)和准确性(回收率)范围从95.04%到99.93%)。拟议的DES与微波辅助方法相结合,为快速,有效地提取活性成分提供了显着优势,并且DES可以扩展为溶剂,以提取和分析复杂的环境和药物样品。

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