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采用毛细管区带电泳法分离和分析甘草根中的甘草酸、18β-甘草次酸和18α-甘草次酸。

Separation and analysis of glycyrrhizin, 18beta-glycyrrhetic acid and 18alpha-glycyrrhetic acid in liquorice roots by means of capillary zone electrophoresis.

作者信息

Sabbioni Cesare, Mandrioli Roberto, Ferranti Anna, Bugamelli Francesca, Saracino Maria Addolorata, Forti Giorgio Cantelli, Fanali Salvatore, Raggi Maria Augusta

机构信息

Department of Pharmaceutical Sciences, Faculty of Pharmacy, Alma Mater Studiorum, University of Bologna, Via Belmeloro 6, 40126 Bologna, Italy.

出版信息

J Chromatogr A. 2005 Jul 15;1081(1):65-71. doi: 10.1016/j.chroma.2005.03.044.

Abstract

Glycyrrhizin is the main active compound of Glycyrrhiza glabra root extracts; according to recent studies, glycyrrhizin and its aglycon, glycyrrhetic acid, have interesting therapeutic properties. A new capillary electrophoretic method has been developed for the separation and quantification of glycyrrhizin, beta-glycyrrhetic acid and its isomer a-glycyrrhetic acid. Separation of the analytes was achieved in less than 3 min on a fused silica capillary, by injecting the samples at the short end of the capillary (effective length: 8.5 cm). The background electrolyte was composed of pH 10.0 carbonate buffer, methanol and ethylene glycol (80/10/10) and contained 0.4% beta-cyclodextrin; indomethacin was used as the internal standard. Diode array detection was used, with quantitative assays carried out at 254 nm. Linearity was found over the 5-200 and 2.5-100 microg mL(-1) concentration ranges for glycyrrhizin and glycyrrhetic acid, respectively. This method has been applied to the determination of the analytes in different matrices (liquorice roots and commercial confectionery products), and to the purity control of beta-glycyrrhetic acid obtained from the hydrolysis of glycyrrhizin. When analysing beta-glycyrrhetic acid and its epimer in roots, the samples were purified by means of a suitable solid-phase extraction (SPE) procedure with Oasis HLB cartridges, which granted good selectivity, eliminating matrix interference.

摘要

甘草甜素是光果甘草根提取物的主要活性成分;根据最近的研究,甘草甜素及其苷元甘草次酸具有有趣的治疗特性。已开发出一种新的毛细管电泳方法,用于分离和定量甘草甜素、β-甘草次酸及其异构体α-甘草次酸。在熔融石英毛细管上,通过在毛细管短端进样(有效长度:8.5 cm),不到3分钟即可实现分析物的分离。背景电解质由pH 10.0的碳酸盐缓冲液、甲醇和乙二醇(80/10/10)组成,并含有0.4%的β-环糊精;吲哚美辛用作内标。采用二极管阵列检测,在254 nm处进行定量测定。甘草甜素和甘草次酸的线性范围分别为5 - 200和2.5 - 100 μg mL⁻¹。该方法已应用于不同基质(甘草根和市售糖果产品)中分析物的测定,以及甘草甜素水解得到的β-甘草次酸的纯度控制。在分析根中的β-甘草次酸及其差向异构体时,样品通过使用Oasis HLB柱的合适固相萃取(SPE)程序进行纯化,该程序具有良好的选择性,可消除基质干扰。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0749/7125616/ea6d498bd49c/gr1.jpg

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