首页> 美国卫生研究院文献>Molecules >Comparison of the Partition Efficiencies of Multiple Phenolic Compounds Contained in Propolis in Different Modes of Acetonitrile–Water-Based Homogenous Liquid–Liquid Extraction
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Comparison of the Partition Efficiencies of Multiple Phenolic Compounds Contained in Propolis in Different Modes of Acetonitrile–Water-Based Homogenous Liquid–Liquid Extraction

机译:乙腈-水基均相液-液萃取模式中蜂胶中多种酚类化合物分配效率的比较

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摘要

Homogeneous liquid–liquid extraction (HLLE) has attracted considerable interest in the sample preparation of multi-analyte analysis. In this study, HLLEs of multiple phenolic compounds in propolis, a polyphenol-enriched resinous substance collected by honeybees, were performed for improving the understanding of the differences in partition efficiencies in four acetonitrile–water-based HLLE methods, including salting-out assisted liquid–liquid extraction (SALLE), sugaring-out assisted liquid–liquid extraction (SULLE), hydrophobic-solvent assisted liquid–liquid extraction (HSLLE), and subzero-temperature assisted liquid–liquid extraction (STLLE). Phenolic compounds were separated in reversed-phase HPLC, and the partition efficiencies in different experimental conditions were evaluated. Results showed that less-polar phenolic compounds (kaempferol and caffeic acid phenethyl ester) were highly efficiently partitioned into the upper acetonitrile (ACN) phase in all four HLLE methods. For more-polar phenolic compounds (caffeic acid, p-coumaric acid, isoferulic acid, dimethoxycinnamic acid, and cinnamic acid), increasing the concentration of ACN in the ACN–H2O mixture could dramatically improve the partition efficiency. Moreover, results indicated that NaCl-based SALLE, HSLLE, and STLLE with ACN concentrations of 50:50 (ACN:H2O, v/v) could be used for the selective extraction of low-polarity phenolic compounds. MgSO4-based SALLE in the 50:50 ACN–H2O mixture (ACN:H2O, v/v) and the NaCl-based SALLE, SULLE, and STLLE with ACN concentrations of 70:30 (ACN:H2O, v/v) could be used as general extraction methods for multiple phenolic compounds.
机译:均相液液萃取(HLLE)在多分析物样品制备中引起了相当大的兴趣。在这项研究中,进行了蜂胶中多种酚类化合物的HLLE,蜂胶是蜜蜂收集的富含多酚的树脂物质,以增进对四种乙腈-水基HLLE方法(包括盐析辅助液体)的分配效率差异的理解。 –液体萃取(SALLE),糖化辅助的液体-液体萃取(SULLE),疏水性溶剂辅助的液体-液体萃取(HSLLE)和零下温度辅助的液体-液体萃取(STLLE)。在反相HPLC中分离酚类化合物,并评估了不同实验条件下的分配效率。结果表明,在所有四种HLLE方法中,极性较小的酚类化合物(山奈酚和咖啡酸苯乙酯)都可以高效地分配到上乙腈(ACN)相中。对于极性更大的酚类化合物(咖啡酸,对香豆酸,异阿魏酸,二甲氧基肉桂酸和肉桂酸),增加ACN-H2O混合物中ACN的浓度可以显着提高分配效率。此外,结果表明,ACN浓度为50:50(ACN:H2O,v / v)的NaCl基SALLE,HSLLE和STLLE可用于选择性萃取低极性酚类化合物。在50:50的ACN–H2O混合物(ACN:H2O,v / v)和基于NaCl的SALLE,SULLE和STLLE中,ACN浓度为70:30(ACN:H2O,v / v)可以使用基于MgSO4的SALLE用作多种酚类化合物的常规提取方法。

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