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采用液相色谱、蒸发光散射检测和质谱法分析高报春和报春花(报春花根)中的酚苷和皂苷。

Analysis of phenolic glycosides and saponins in Primula elatior and Primula veris (primula root) by liquid chromatography, evaporative light scattering detection and mass spectrometry.

作者信息

Müller Andrea, Ganzera Markus, Stuppner Hermann

机构信息

Institute of Pharmacy, University of Innsbruck, Innrain 52, 6020 Innsbruck, Austria.

出版信息

J Chromatogr A. 2006 Apr 21;1112(1-2):218-23. doi: 10.1016/j.chroma.2005.10.067. Epub 2005 Nov 17.

Abstract

This paper describes the first liquid chromatographic method suitable for the simultaneous determination of bioactive compounds, saponins and phenolic glycosides, present in Primula elatior and Primula veris, including the NMR data of primulaverin and primeverin. Optimum separations were obtained with a Synergi 4mum Fusion RP 80A column, using 0.025% TFA in water and 5% acetonitrile in methanol as mobile phase. Saponins were detected by evaporative light scattering detection (ELSD), whereas the phenolic glycosides were monitored by UV at 210 nm. The method was validated for repeatability (sigma(rel) <or=4.5%), precision (intra- and inter-day variation <or=5.0%), accuracy (recovery >or=97.1%) and sensitivity (LOD <or=22 ng (UV) and <or=38 ng (ELSD) on-column, respectively). LC-MS experiments in negative APCI mode allowed a final peak assignment. Both Primula species could easily be differentiated by their saponin pattern. The total saponin content was highest in P. veris roots (max. 14.9%), the aerial parts or P. elatior contained significantly less amounts; primeverin (0.64-1.42%) showed to be the most dominant phenolic glycoside.

摘要

本文描述了首个适用于同时测定高报春和报春花中生物活性化合物、皂苷和酚糖苷的液相色谱方法,包括报春苷和樱草糖的核磁共振数据。使用Synergi 4μm Fusion RP 80A色谱柱,以0.025%三氟乙酸水溶液和5%乙腈的甲醇溶液作为流动相,可实现最佳分离效果。皂苷采用蒸发光散射检测(ELSD)进行检测,而酚糖苷则在210 nm处通过紫外进行监测。该方法在重复性(相对标准偏差σ(rel)≤4.5%)、精密度(日内和日间变化≤5.0%)、准确度(回收率≥97.1%)和灵敏度(柱上检测限分别为≤22 ng(紫外)和≤38 ng(蒸发光散射检测))方面得到了验证。在负离子大气压化学电离(APCI)模式下进行的液相色谱-质谱联用(LC-MS)实验实现了最终的峰归属。两种报春花属植物可通过其皂苷模式轻松区分。报春花根中的总皂苷含量最高(最高可达14.9%),高报春地上部分的皂苷含量则显著较低;樱草糖(0.64 - 1.42%)是最主要的酚糖苷。

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