Faleva Anna V, Falev Danil I, Onuchina Aleksandra A, Ulyanovskii Nikolay V, Kosyakov Dmitry S
Laboratory of Natural Product Chemistry and Bioanalytics, Core Facility Center "Arktika", Northern (Arctic) Federal University, Arkhangelsk, Russia.
Phytochem Anal. 2025 Jan;36(1):307-316. doi: 10.1002/pca.3443. Epub 2024 Sep 2.
European aspen (Populus tremula L.) knotwood contains large amounts of polyphenolic metabolites, mainly flavonoids, and can be considered as a promising industrial-scale source of valuable bioactive compounds. Valorization of knotwood extractives requires detailed information on their chemical composition and a relevant analytical methodology.
This study proposes combined analytical strategy for non-targeted screening and identification of polyphenolic plant metabolites and is aimed at comprehensive characterization of knotwood extractives.
Aspen knotwood acetone extract with determined antioxidant activity was an object of the study. Two-dimensional NMR spectroscopy with Structure Elucidator expert system was used for preliminary search of major components and specific structures. Liquid chromatography-high-resolution mass spectrometry (HPLC-HRMS) with data-dependent MS/MS spectra acquisition was used as a complementary technique providing molecular-level characterization and identification of the detected metabolites.
Twenty-eight phenolic metabolites were found and identified. Among them, flavonoids, aromadendrin and naringenin, as well as their glycosylated derivatives (mainly O-glucosides) and methyl ethers, dominated. Taxifolin and its 7-O-glucoside were detected as minor components. Other detected compounds are represented by p-coumaric acid and its rutinoside and small amounts of glycosylated ferulic acid. Nineteen of the detected compounds were discovered in aspen knotwood for the first time. The results were confirmed by preparative isolation of individual compounds and NMR studies.
The proposed analytical strategy based on 2D NMR and HPLC-HRMS can be considered a powerful tool in the analysis of plant extractives and allowed for the identification and semi-quantification of a large number of polyphenols in aspen knotwood.
欧洲山杨(Populus tremula L.)的节木含有大量多酚类代谢产物,主要是黄酮类化合物,可被视为有价值的生物活性化合物的一个有前景的工业规模来源。节木提取物的增值需要有关其化学成分的详细信息和相关的分析方法。
本研究提出了一种用于非靶向筛选和鉴定多酚类植物代谢产物的联合分析策略,旨在全面表征节木提取物。
具有确定抗氧化活性的山杨节木丙酮提取物是本研究的对象。使用带有结构解析专家系统的二维核磁共振光谱对主要成分和特定结构进行初步搜索。采用具有数据依赖型串联质谱(MS/MS)谱采集功能的液相色谱-高分辨率质谱(HPLC-HRMS)作为补充技术,对检测到的代谢产物进行分子水平的表征和鉴定。
发现并鉴定了28种酚类代谢产物。其中,黄酮类化合物、香豆素和柚皮素及其糖基化衍生物(主要是O-葡萄糖苷)和甲基醚占主导。紫杉叶素及其7-O-葡萄糖苷被检测为次要成分。其他检测到的化合物有对香豆酸及其芸香糖苷以及少量糖基化阿魏酸。所检测到的化合物中有19种是首次在山杨节木中发现。通过单个化合物的制备分离和核磁共振研究证实了结果。
所提出的基于二维核磁共振和HPLC-HRMS的分析策略可被视为分析植物提取物的有力工具,并能够对山杨节木中的大量多酚进行鉴定和半定量。