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使用基于倒千里光裂碱的非靶向代谢组学方法分析吡咯里西啶生物碱,并结合超高效液相色谱-四极杆飞行时间质谱法对药用植物中倒千里光裂碱核心成分进行定量分析。

Profiling of pyrrolizidine alkaloids using a retronecine-based untargeted metabolomics approach coupled to the quantitation of the retronecine-core in medicinal plants using UHPLC-QTOF.

作者信息

Tsiokanos Evangelia, Tsafantakis Nikolaos, Obé Hélène, Beuerle Till, Leti Mathieu, Fokialakis Nikolas, Grondin Antonio

机构信息

Department of Pharmacognosy and Natural Products Chemistry, Faculty of Pharmacy, National and Kapodistrian University of Athens, 15771 Athens, Greece.

Pierre Fabre Research Institute, Green Mission Department, Herbal Products Laboratory, 3, Avenue Hubert Curien, BP 13562, 31035 Toulouse, France.

出版信息

J Pharm Biomed Anal. 2023 Feb 5;224:115171. doi: 10.1016/j.jpba.2022.115171. Epub 2022 Nov 21.

Abstract

Pyrrolizidine alkaloids (PA) are secondary metabolites of high toxicological relevance. Several PA quantitative methodologies were developed based on a limited number of certified standards, including time consuming solid phase extraction (SPE) purification steps. Herein, we shed light on the variability of PA in herbal extracts and propose a quantification methodology based on ultra-high-performance liquid chromatography high-resolution mass spectrometry (UHPLC-HRMS) for the evaluation of the total PA content as retronecine-equivalents (RE) directly from crude matrices. Particularly in the focus of the investigation were Alkanna spp. (Boraginaceae), which possess a wide range of pharmaceutical properties. In addition, a comparative PA screening of crude and SPE enriched extracts was performed and PA-containing plants from Fabaceae and Compositae families were included to demonstrate universal applicability. In total, 105 PA were identified using HRMS experiments, specific MS/MS fragmentation PA patterns, a customized in-house library and literature data. Among them, 18 glycosidic PA derivatives were reported for the first time in literature. Using a hierarchical clustering approach, PA distribution in herbal extracts was shown to be family-dependent and significantly different among species. This was further supported by the results of the total PA concentrations, obtained using a retronecine/heliotridine/internal standard-based targeted UHPLC-HRMS quantification method, which varied from 8.64 ± 0.08-3096.28 ± 273.72 μg RE/g extract dry weight in shoots extracts of Alkanna spp. and leaves extracts of Crotalaria retusa L. respectively. Worth mentioning is that the procedure allowed to quantify PA in Alkanna spp. If the procedure based on 35 specific PA recommended by European regulations had been used, results would have been equal to zero for the four species since none were observed in Alkanna spp. Finally, by combining the RE results with the corresponding dereplication results, a customized correction factor for each extract (ranging from 2.12 to 2.48) was assessed leading to a more accurate estimate of the PA content regardless of the molecular weight of each PA. The present methodology will facilitate PA quantification directly from crude extracts and avoid the underestimation the real PA content due to limited availabilty of authentic reference compounds in botanical extracts used in phytomedicines or food supplements/cosmetics.

摘要

吡咯里西啶生物碱(PA)是具有高度毒理学相关性的次生代谢产物。基于有限数量的认证标准开发了几种PA定量方法,其中包括耗时的固相萃取(SPE)纯化步骤。在此,我们揭示了草药提取物中PA的变异性,并提出了一种基于超高效液相色谱-高分辨率质谱(UHPLC-HRMS)的定量方法,用于直接从粗基质中评估总PA含量,以瑞替宁当量(RE)表示。研究重点尤其放在了紫朱草属植物(紫草科)上,该属植物具有广泛的药用特性。此外,还对粗提物和SPE富集提取物进行了PA比较筛选,并纳入了豆科和菊科含PA的植物以证明其普遍适用性。通过HRMS实验、特定的MS/MS碎片PA模式、定制的内部库和文献数据,共鉴定出105种PA。其中,18种糖苷类PA衍生物为首次在文献中报道。使用层次聚类方法,结果表明草药提取物中PA的分布因植物家族而异,且在不同物种间存在显著差异。使用基于瑞替宁/天芥菜定/内标的靶向UHPLC-HRMS定量方法获得的总PA浓度结果进一步支持了这一点,紫朱草属植物地上部分提取物和猪屎豆叶提取物中的总PA浓度分别为8.64±0.08 - 3096.28±273.72μg RE/g提取物干重。值得一提的是,该方法能够对紫朱草属植物中的PA进行定量。如果使用欧洲法规推荐的基于35种特定PA的程序,这四个物种的结果将为零,因为在紫朱草属植物中未观察到这些PA。最后,通过将RE结果与相应的去重复结果相结合,评估了每种提取物的定制校正因子(范围为2.12至2.48),从而无论每种PA的分子量如何,都能更准确地估计PA含量。本方法将有助于直接从粗提物中对PA进行定量,并避免由于植物药或食品补充剂/化妆品中使用的植物提取物中真实参考化合物的可用性有限而导致对实际PA含量的低估。

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