Department of Pharmacognosy, Semmelweis University, Budapest, Hungary.
Phytochem Anal. 2021 Jul;32(4):474-481. doi: 10.1002/pca.2995. Epub 2020 Sep 14.
The root of the Ononis species has been used internally and externally in ethnomedicine for centuries and contains biologically valuable isoflavonoid compounds. Therefore, it is important to obtain quantitative information about the isoflavonoid profile of these plants.
In this article we aimed to develop an optimised sample preparation protocol alongside a validated method for the quantitative measurement of isoflavones, isoflavanones and pterocarpans in the form of glucosides and aglycones, in order to compare the specialised metabolites of Ononis spinosa L. and O. arvensis L.
Quantitative determination was carried out by the means of ultra-performance liquid chromatography coupled with ultraviolet diode-array detection (UPLC-UV-DAD).
An optimised sample preparation method was developed to transform malonyl glucosides to their glucosidic forms. Chromatographic methods were created for the baseline separation of isoflavones, isoflavanones and pterocarpans alongside with their glucosides. Altogether 12 compounds were evaluated quantitatively in samples of O. spinosa and O. arvensis.
As a result, no characteristic change could be observed between the two species regarding their isoflavonoid pattern.
金雀花属植物的根部在传统医学中已被使用了数个世纪,其具有生物价值的异黄酮类化合物。因此,获得有关这些植物异黄酮谱的定量信息非常重要。
本文旨在开发一种优化的样品制备方案以及一种经过验证的方法,用于定量测量金雀花苷和糖苷形式的异黄酮、异黄酮烷酮和紫檀烷,以比较 O. spinosa L. 和 O. arvensis L. 的特征代谢物。
采用超高效液相色谱-紫外二极管阵列检测(UPLC-UV-DAD)进行定量测定。
开发了一种优化的样品制备方法,将丙二酰葡萄糖转化为葡萄糖苷形式。创建了色谱方法,可实现异黄酮、异黄酮烷酮和紫檀烷及其糖苷的基线分离。总共对 O. spinosa 和 O. arvensis 的样品进行了 12 种化合物的定量评估。
结果表明,两种物种在异黄酮模式方面没有明显差异。