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基于 UPLC-Orbitrap-MS 的AGASTACHE RUGOSA 主要活性成分的代谢产物鉴定:作为单一成分和多成分提取物成分代谢的差异比较。

Metabolites identification for major active components of Agastache rugosa in rat by UPLC-Orbitap-MS: Comparison of the difference between metabolism as a single component and as a component in a multi-component extract.

机构信息

Center for Advanced Biomolecular Recognition, Korea Institute of Science and Technology, Seoul 02792, South Korea; College of Pharmacy, Kyung Hee University, Seoul 02453, South Korea.

Department of Oncology, Lombardi Comprehensive Cancer Center, Georgetown University Medical Center, Washington DC, USA.

出版信息

J Pharm Biomed Anal. 2022 Oct 25;220:114976. doi: 10.1016/j.jpba.2022.114976. Epub 2022 Jul 29.

Abstract

Agastache rugosa (fisch. & C.A. Mey.) Kuntze (A. rugosa) is used in traditional medicine in Korea since it has variety of medicinal activities, such as antioxidant, anti-inflammatory, anti-photoaging. Acacetin, tilianin, and rosmarinic acid are the active components of A. rugosa but their metabolites have not yet been fully identified. The purpose of this study was to identify the metabolites of A. rugosa after oral administration in Sprague-Dawley rats. For this study, active components (acacetin, tilianin, rosmarinic acid) and A. rugosa extract were dissolved in 0.5% carboxymethyl cellulose sodium solution respectively and treated by oral gavage at a dose of 50 mg/kg (for single compounds) and 200 mg/kg (for A. rugosa extract). For metabolite identification, plasma, urine, and fecal samples were collected after oral administration and analyzed using liquid chromatography coupled with Orbitrap mass spectrometry (UPLC-Orbitrap-MS) for data acquisition and metabolite identification. Metabolite identification was performed by considering the mass difference of the metabolites from the parent compounds and using their exact m/z and MS/MS fragments. The main biotransformation of the major components of A. rugosa was hydrolysis to acacetin, followed by demethylation, methylation, and conjugation. That of rosmarinic acid is methylated and conjugated. There were differences in metabolism between the treatment of single active components and extract; some sulfate-conjugated metabolites or metabolic intermediates were only detected in the treatment of single active components. The reason for this is thought to be the low content of the active components in the extract, which react competitively with the components present in the extract in the metabolic process. This study provides valuable evidence for a comprehensive understanding of the metabolism of A. rugosa.

摘要

藿香(fisch. & C.A. Mey.)昆茨(A. rugosa)在韩国传统医学中被广泛应用,因为它具有多种药用活性,如抗氧化、抗炎、抗光老化。芹黄素、丁香苷和迷迭香酸是藿香的活性成分,但它们的代谢物尚未被完全鉴定。本研究旨在鉴定藿香灌胃给药后在 Sprague-Dawley 大鼠体内的代谢物。为此,将活性成分(芹黄素、丁香苷、迷迭香酸)和藿香提取物分别溶解于 0.5%羧甲基纤维素钠溶液中,以 50mg/kg(单一组分)和 200mg/kg(藿香提取物)的剂量灌胃给药。为了鉴定代谢物,在灌胃给药后收集血浆、尿液和粪便样本,并用液相色谱-轨道阱质谱联用(UPLC-Orbitrap-MS)进行分析,以获取数据并鉴定代谢物。代谢物的鉴定是通过考虑代谢物与母体化合物的质量差异,并利用其精确的 m/z 和 MS/MS 片段来进行的。藿香主要成分的主要生物转化是水解生成芹黄素,然后是去甲基化、甲基化和结合。迷迭香酸的生物转化是甲基化和结合。单一活性成分和提取物处理之间的代谢存在差异;一些硫酸结合的代谢物或代谢中间产物仅在单一活性成分处理中检测到。其原因可能是提取物中活性成分的含量低,在代谢过程中与提取物中存在的成分竞争反应。本研究为全面了解藿香的代谢提供了有价值的证据。

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