» Articles » PMID: 28042917

Profiling and Identification of (-)-epicatechin Metabolites in Rats Using Ultra-high Performance Liquid Chromatography Coupled with Linear Trap-Orbitrap Mass Spectrometer

Overview
Journal Drug Test Anal
Specialties Chemistry
Pharmacology
Date 2017 Jan 3
PMID 28042917
Citations 9
Authors
Affiliations
Soon will be listed here.
Abstract

(-)-Epicatechin (EC), an optical antipode of (+)-catechin (C), possesses many potential significant health benefits. However, the in vivo metabolic pathway of EC has not been clarified yet. In this study, an efficient strategy based on ultra-high performance liquid chromatography coupled with a linear ion trap-Orbitrap mass spectrometer was developed to profile and characterize EC metabolites in rat urine, faeces, plasma, and various tissues. Meanwhile, post-acquisition data-mining methods including high-resolution extracted ion chromatogram (HREIC), multiple mass defect filters (MMDFs), and diagnostic product ions (DPIs) were utilized to screen and identify EC metabolites from HR-ESI-MS to ESI-MS stage. Finally, a total of 67 metabolites (including parent drug) were tentatively identified based on standard substances, chromatographic retention times, accurate mass measurement, and relevant drug biotransformation knowledge. The results demonstrated that EC underwent multiple in vivo metabolic reactions including methylation, dehydration, hydrogenation, glucosylation, sulfonation, glucuronidation, ring-cleavage, and their composite reactions. Among them, methylation, dehydration, glucosylation, and their composite reactions were observed only occurring on EC when compared with C. Meanwhile, the distribution of these detected metabolites in various tissues including heart, liver, spleen, lung, kidney, and brain were respectively studied. The results demonstrated that liver and kidney were the most important organs for EC and its metabolites elimination. In conclusion, the newly discovered EC metabolites significantly expanded the understanding on its pharmacological effects and built the foundation for further toxicity and safety studies. Copyright © 2017 John Wiley & Sons, Ltd.

Citing Articles

Comprehensive Metabolite Identification of Genipin in Rats Using Ultra-High-Performance Liquid Chromatography Coupled with High Resolution Mass Spectrometry.

Cui Z, Li Z, Dong W, Qiu L, Zhang J, Wang S Molecules. 2023; 28(17).

PMID: 37687136 PMC: 10489007. DOI: 10.3390/molecules28176307.


Metabolomics Technologies for the Identification and Quantification of Dietary Phenolic Compound Metabolites: An Overview.

Lopez-Yerena A, Dominguez-Lopez I, Vallverdu-Queralt A, Perez M, Jauregui O, Escribano-Ferrer E Antioxidants (Basel). 2021; 10(6).

PMID: 34070614 PMC: 8229076. DOI: 10.3390/antiox10060846.


Identification of Metabolites of Aurantio-Obtusin in Rats Using Ultra-High-Performance Liquid Chromatography-Q-Exactive Orbitrap Mass Spectrometry with Parallel Reaction Monitoring.

Qin S, Xu Y, Li K, Gong K, Peng J, Shi S J Anal Methods Chem. 2021; 2021:6630604.

PMID: 33936838 PMC: 8062173. DOI: 10.1155/2021/6630604.


Mechanisms Modified by (-)-Epicatechin and Taxifolin Relevant for the Treatment of Hypertension and Viral Infection: Knowledge from Preclinical Studies.

Bernatova I, Liskova S Antioxidants (Basel). 2021; 10(3).

PMID: 33809620 PMC: 8002320. DOI: 10.3390/antiox10030467.


Identifying potential anti-COVID-19 pharmacological components of traditional Chinese medicine Lianhuaqingwen capsule based on human exposure and ACE2 biochromatography screening.

Chen X, Wu Y, Chen C, Gu Y, Zhu C, Wang S Acta Pharm Sin B. 2020; 11(1):222-236.

PMID: 33072499 PMC: 7547831. DOI: 10.1016/j.apsb.2020.10.002.