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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Extraction and separation of flavonoids from Malus hupehensis using high-speed countercurrent chromatography based on deep eutectic solvent
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Extraction and separation of flavonoids from Malus hupehensis using high-speed countercurrent chromatography based on deep eutectic solvent

机译:基于深凝胶溶剂的高速逆流色谱法从Malus Hupehensis中提取和分离黄酮类化合物

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In the present experiment, a green and highly efficient extraction method for flavonoids established on deep eutectic solvents (DESs) was investigated by using the response surface methodology. The DES-based high-speed countercurrent chromatography (HSCCC) solvent systems were developed for the separation of high purity compounds from the DES extract of Malus hupehensis for the first time. Under the optimal conditions (liquid-to-solid ratio of 26.3 mL/g, water content of 25.5%, and extraction temperature of 77.5 degrees C), the yield of flavonoids was 15.3 +/- 0.1%, which was superior to that of the methanol extraction method. In accordance with the physical property of DES-based HSCCC solvent systems and K values of target compounds, DES-based HSCCC solvent systems composed of choline chloride/glucose-waterethyl acetate (ChCl/Glu-H2O-EAC, 1:1:2, v/v) was selected for the HSCCC separation. Thus, five flavonoids (two novel compounds 1-2, 6 ' '-O-coumaroyl-2 '-O-glucopyranosylphloretin and 3 '' '-methoxy-6 ' '-O-feruloy2 '-O-glucopyranosylphloretin; three know compounds 3-5, namely, avicularin, phloridzin, and sieboldin) were efficiently separated from Malus hupehensis. DESs are the environment friendly and highly efficient solvents as the components of extraction solvent and HSCCC solvent system, and can be re-utilized many times. However, ethyl acetate can be soluble with a few hydrogen bond donors, such as urea, carboxylic acid and polyol, through the shake flask test. It is the great difficulty for the efficient and rapid separation of target compounds from the DESs extract because of the DESs residual in the HSCCC fractions. ChCl and Glu are the great choices of DESs without this problem. In addition, K values increased with the increase of the molar ratio of ChCl/Glu and the content of water, which could effectively guide us to choose the suitable DES-based HSCCC solvent system. The twice HSCCC separation results indicated that DES was the valuable and green solvent for the HSCCC separation of pure compounds from the extract for the first time, and showed the recycle superiority of DES-based HSCCC solvent system. (c) 2021 Elsevier B.V. All rights reserved.
机译:在本实验中,采用响应面法研究了在深共晶溶剂(DESs)上建立的黄酮类化合物的绿色高效提取方法。首次建立了基于DES的高速逆流色谱(HSCCC)溶剂体系,用于从湖北海棠DES提取物中分离高纯度化合物。在最佳条件下(液固比26.3ml/g,含水量25.5%,提取温度77.5℃),黄酮类化合物的收率为15.3+/-0.1%,优于甲醇提取法。根据DES基HSCCC溶剂体系的物理性质和目标化合物的K值,选择氯化胆碱/葡萄糖-水-乙酸乙酯(ChCl/Glu-H2O-EAC,1:1:2,v/v)组成的DES基HSCCC溶剂体系进行HSCCC分离。因此,从湖北海棠中有效分离出五种黄酮类化合物(两种新化合物1-2,6'-O-香豆酰-2'-O-吡喃葡萄糖苷根皮素和3'-甲氧基-6'-O-阿魏酸-2'-O-吡喃葡萄糖苷根皮素;三种已知化合物3-5,即avicularin、根皮苷和sieboldin)。作为萃取溶剂和HSCCC溶剂体系的组成部分,DES是一种环境友好、高效的溶剂,可多次重复利用。然而,通过摇瓶试验,乙酸乙酯可以溶解于一些氢键供体,如尿素、羧酸和多元醇。由于HSCCC馏分中存在DESs残留,因此从DESs萃取物中高效、快速分离目标化合物非常困难。ChCl和Glu是没有这个问题的DES的最佳选择。此外,K值随着ChCl/Glu摩尔比和水含量的增加而增加,这可以有效地指导我们选择合适的DES基HSCCC溶剂体系。两次HSCCC分离结果表明,DES是首次从提取物中分离纯化合物的有价值的绿色溶剂,并显示了基于DES的HSCCC溶剂体系的回收优势。(c)2021爱思唯尔B.V.保留所有权利。

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