Plachká Kateřina, Pilařová Veronika, Kosturko Štefan, Škop Jan, Svec Frantisek, Nováková Lucie
Department of Analytical Chemistry, Faculty of Pharmacy in Hradec Králové, Charles University, Heyrovského 1203, 500 05 Hradec Králové, Czech Republic.
Anal Chem. 2024 Feb 1;96(7):2840-8. doi: 10.1021/acs.analchem.3c03599.
Complex analysis of plant extracts usually requires a combination of several analytical approaches. Therefore, in this study, we developed a holistic two-injection approach for plant extract analysis, which is carried out within one instrument without the need for any manual intervention during the analysis. Ultrahigh-performance supercritical fluid chromatography (UHPSFC) was employed for the analysis of 17 volatile terpenes on a porous graphitic carbon column within 7.5 min, followed by analysis on short diol column where flavonoids, phenolic acids, and terpenoic acids were analyzed within 15.5 min. A multimodal ionization source combining electrospray and atmospheric pressure chemical ionization (ESCi) was selected for mass spectrometry detection as a simultaneous ionization of both lipophilic and polar compounds was required. The quantitative aspects of the final UHPSFC-ESI/ESCi-MS/MS two-injection approach were determined, and it was applied to the analysis of extracts prepared by supercritical fluid extraction. Current methods reported in the literature typically require a labor-intensive combination of liquid and gas chromatography for the complex analysis of plant extracts. We present for the first time a new UHPSFC approach requiring only a single instrument that provides an alternative approach to the analysis of complex plant extracts.
对植物提取物进行复杂分析通常需要多种分析方法相结合。因此,在本研究中,我们开发了一种用于植物提取物分析的整体双进样方法,该方法在一台仪器内进行,分析过程无需任何人工干预。采用超高效超临界流体色谱(UHPSFC)在多孔石墨化碳柱上于7.5分钟内分析17种挥发性萜类化合物,随后在短二醇柱上进行分析,在该柱上黄酮类化合物、酚酸和萜酸在15.5分钟内得到分析。选择了一种结合电喷雾和大气压化学电离(ESCi)的多模式电离源用于质谱检测,因为需要同时电离亲脂性和极性化合物。确定了最终UHPSFC - ESI/ESCi - MS/MS双进样方法的定量方面,并将其应用于超临界流体萃取制备的提取物分析。文献中报道的现有方法通常需要液相色谱和气相色谱的劳动密集型组合来对植物提取物进行复杂分析。我们首次提出了一种仅需一台仪器的新型UHPSFC方法,为复杂植物提取物的分析提供了一种替代方法。