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使用超高效液相色谱-Q Exactive 混合型四极杆-轨道阱高分辨精确质谱法检测和鉴定大鼠血浆、尿液和粪便中的梓醇代谢物

Detection and Identification of Catalpol Metabolites in the Rat Plasma, Urine and Faeces Using Ultra-high Performance Liquid Chromatography-Q Exactive Hybrid Quadrupole-orbitrap High-resolution Accurate Mass Spectrometry.

作者信息

Xiang Zedong, Wang Shaoping, Li Haoran, Dong Pingping, Dong Fan, Li Zhen, Dai Long, Zhang Jiayu

机构信息

College of Pharmaceutical Science, Shandong University of Traditional Chinese Medicine, Jinan, China.

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

出版信息

Curr Drug Metab. 2021;22(3):173-184. doi: 10.2174/1389200221999201125205515.

Abstract

BACKGROUND

Catalpol, an iridoid glycoside, is one of the richest bioactive components present in Rehmannia glutinosa. More and more metabolites of drugs have exhibited various pharmacological effects, thus providing guidance for clinical application. However, few researches have paid attention to the metabolism of catalpol.

OBJECTIVE

This study aimed to establish a rapid and effective method to identify catalpol metabolites and evaluate the biotransformation pathways of catalpol in rats.

METHODS

In this study, catalpol metabolites in rat urine, plasma and faeces were analyzed by UHPLC-Q-Exactive MS for the characterization of the metabolism of catalpol. Based on high-resolution extracted ion chromatograms (HREICs) and parallel reaction monitoring mode (PRM), metabolites of catalpol were identified by comparing the diagnostic product ions (DPIs), chromatographic retention times, neutral loss fragments (NLFs) and accurate mass measurement with those of catalpol reference standard.

RESULTS

A total of 29 catalpol metabolites were detected and identified in both negative and positive ion modes. Nine metabolic reactions, including deglycosylation, hydroxylation, dihydroxylation, hydrogenation, dehydrogenation, oxidation of methylene to ketone, glucuronidation, glycine conjugation and cysteine conjugation, were proposed.

CONCLUSION

A rapid and effective method based on UHPLC-Q-Exactive MS was developed to mine the metabolism information of catalpol. Results of metabolites and biotransformation pathways of catalpol suggested that when orally administrated, catalpol was firstly metabolized into catalpol aglycone, after which phase I and phase II reactions occurred. However, hydrophilic chromatography-mass spectrometry is still needed to further find the polar metabolites of catalpol.

摘要

背景

梓醇是一种环烯醚萜苷,是地黄中含量最为丰富的生物活性成分之一。越来越多的药物代谢产物展现出了多种药理作用,为临床应用提供了指导。然而,针对梓醇代谢的研究却很少。

目的

本研究旨在建立一种快速有效的方法来鉴定梓醇的代谢产物,并评估梓醇在大鼠体内的生物转化途径。

方法

在本研究中,采用超高效液相色谱-四极杆-静电场轨道阱高分辨质谱(UHPLC-Q-Exactive MS)分析大鼠尿液、血浆和粪便中的梓醇代谢产物,以表征梓醇的代谢情况。基于高分辨提取离子色谱图(HREICs)和平行反应监测模式(PRM),通过将诊断产物离子(DPIs)、色谱保留时间、中性丢失碎片(NLFs)以及精确质量测定结果与梓醇对照品进行比较,来鉴定梓醇的代谢产物。

结果

在负离子和正离子模式下共检测并鉴定出29种梓醇代谢产物。提出了9种代谢反应,包括去糖基化、羟基化、二羟基化、氢化、脱氢、亚甲基氧化为酮、葡萄糖醛酸化、甘氨酸结合和半胱氨酸结合。

结论

建立了一种基于UHPLC-Q-Exactive MS的快速有效方法来挖掘梓醇的代谢信息。梓醇代谢产物及生物转化途径的结果表明,梓醇口服给药后首先代谢为梓醇苷元,随后发生I相和II相反应。然而,仍需要亲水色谱-质谱联用进一步寻找梓醇的极性代谢产物。

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