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基于 UHPLC-Q-Exactive Orbitrap 质谱仪对环黄芪醇及其代谢物的综合研究。

Comprehensive Study of and Metabolites of Cycloastragenol Based on UHPLC-Q-Exactive Orbitrap Mass Spectrometer.

机构信息

School of Pharmacy, Binzhou Medical University, Yantai 264003, China.

School of Pharmacy, Shandong University of Traditional Chinese Medicine, Jinan 250300, China.

出版信息

Curr Drug Metab. 2023;23(14):1090-1114. doi: 10.2174/1389200224666230202150436.

Abstract

BACKGROUND

Cycloastragenol (CAG) is a sapogenin derived from the main bioactive constituents of Astragali Radix (AR). However, the current research on CAG metabolism in vivo and in vitro is still inadequate, and the metabolite cluster is incomplete due to incomplete analysis strategy.

OBJECTIVE

The objective of this study was to screen and identify the metabolic behavior of CAG in vivo and in vitro.

METHODS

A simple and rapid analysis strategy based on UHPLC-Q-Exactive Orbitrap mass spectrometry combined with data-mining processing technology was developed and used to screen and identify CAG metabolites in rat body fluids and tissues after oral administration.

RESULTS

As a result, a total of 82 metabolites were fully or partially characterized based on their accurate mass, characteristic fragment ions, retention times, corresponding Clog P values, and so on. Among the metabolites, 61 were not been reported in previous reports. These metabolites (6 metabolites in vitro and 91 in vivo) were generated through reactions of hydroxylation, glucuronidation, sulfation, hydrogenation, hydroxylation, demethylation, deisopropylation, dehydroxylation, ring cleavage, and carboxyl substitution and their composite reactions, and the hydroxylation might be the main metabolic reaction of CAG. In addition, the characteristic fragmentation pathways of CAG were summarized for the subsequent metabolite identification.

CONCLUSION

The current study not only clarifies the metabolite cluster-based and metabolic regularity of CAG in vivo and in vitro, but also provides ideas for metabolism of other saponin compounds.

摘要

背景

环黄芪醇(CAG)是从黄芪主要生物活性成分中提取的一种甾体皂甙元。然而,目前关于 CAG 体内和体外代谢的研究仍然不足,由于分析策略不完善,代谢物簇还不完整。

目的

本研究旨在筛选和鉴定 CAG 在体内和体外的代谢行为。

方法

建立了一种基于 UHPLC-Q-Exactive Orbitrap 质谱结合数据挖掘处理技术的简单、快速分析策略,用于筛选和鉴定口服 CAG 后大鼠体内和组织中的代谢产物。

结果

共基于精确质量、特征碎片离子、保留时间、相应的 Clog P 值等,对 82 个代谢物进行了全面或部分特征描述。其中,有 61 个代谢物在以前的报道中没有被报道过。这些代谢物(6 个体外代谢物和 91 个体内代谢物)是通过羟基化、葡萄糖醛酸化、硫酸化、氢化、羟基化、去甲基化、去异丙基化、去羟基化、环裂解和羧基取代及其复合反应生成的,其中羟基化可能是 CAG 的主要代谢反应。此外,还总结了 CAG 的特征断裂途径,为后续的代谢物鉴定提供了思路。

结论

本研究不仅阐明了 CAG 体内和体外的代谢物簇和代谢规律,还为其他皂苷类化合物的代谢提供了思路。

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