Cuyckens Filip, Claeys Magda
University of Antwerp (UIA), Department of Pharmaceutical Sciences, Universiteitsplein 1, 2610 Antwerp, Belgium.
Rapid Commun Mass Spectrom. 2002;16(24):2341-8. doi: 10.1002/rcm.861.
Different reversed-phase liquid chromatography (LC) columns of conventional dimensions were coupled to an ultraviolet photodiode array detector (UV-DAD) and a magnetic sector-type spectrometer, equipped with an electrospray ionization (ESI) source, by a laboratory-made flow splitter. A mixture of three flavonoid-O-glycosides was employed to examine the effects of the solvent composition, the flow rate, the stationary phase, the pH and the organic acid added, on the chromatographic separation, the UV-DAD detection, the ESI process and the entire LC system with ESI-MS and UV-DAD detection. In the positive ion mode, methanol containing 1% acetic acid was by far the most sensitive in ESI-MS analysis, whereas an acetonitrile/water mobile phase containing 0.5% formic acid was proved to give the best sensitivity in LC/ESI-MS/UV-DAD analysis. In the negative ion mode, the highest sensitivity was obtained with a mobile phase containing 0.1% formic acid, while addition of bases decreased the sensititvity. The optimal flow rate was higher in negative ESI (20-50 micro L/min) than in positive ESI (5 micro L/min), and the percentage of organic phase had an influence on the sensitivity of ESI-MS detection. With regard to the selection of a suitable C(18) reversed-phase LC column, a column which is well end-capped is to be preferred, because residual silanol groups appear to impair the separation of flavonoid glycosides. The optimized LC/ESI-MS/UV-DAD method was applied to a commercial Crataegus extract, which is used in phytomedicine to treat cardiovascular problems and is known to be rich in flavonoids. It is demonstrated how UV spectra and first-order ESI mass spectra allow a fast characterization of flavonoids, even if reference compounds are not available or at hand.
通过实验室自制的分流器,将常规尺寸的不同反相液相色谱(LC)柱与紫外光电二极管阵列检测器(UV-DAD)以及配备电喷雾电离(ESI)源的磁扇形光谱仪相连。采用三种黄酮-O-糖苷的混合物,考察溶剂组成、流速、固定相、pH值以及添加的有机酸对色谱分离、UV-DAD检测、ESI过程以及带有ESI-MS和UV-DAD检测的整个LC系统的影响。在正离子模式下,含1%乙酸的甲醇在ESI-MS分析中灵敏度最高,而含0.5%甲酸的乙腈/水流动相在LC/ESI-MS/UV-DAD分析中灵敏度最佳。在负离子模式下,含0.1%甲酸的流动相灵敏度最高,而添加碱会降低灵敏度。负离子ESI模式下的最佳流速(20 - 50微升/分钟)高于正离子ESI模式(5微升/分钟),有机相的比例对ESI-MS检测的灵敏度有影响。关于合适的C(18)反相LC柱的选择,优选封尾良好的柱,因为残留的硅醇基似乎会损害黄酮糖苷的分离。将优化后的LC/ESI-MS/UV-DAD方法应用于一种商业山楂提取物,该提取物用于植物医学治疗心血管问题,且已知富含黄酮类化合物。结果表明,即使没有或手头没有参考化合物,UV光谱和一级ESI质谱也能快速表征黄酮类化合物。