Exploration of plant metabolomics variation and absorption characteristics of water‐extracted Rheum tanguticum and ethanol‐extracted Rheum tanguticum by UHPLC‐Q‐TOF‐MS/MS

Author:

Bai Shanshan1,Luo Dewei1,Zhong Guoyue2,Yang Shilin1,Ouyang Hui1ORCID,Rao Xiaoyong1,Feng Yulin13

Affiliation:

1. Jiangxi University of Chinese Medicine Nanchang P. R. China

2. Research Centre of Natural Resources of Chinese Medicinal and Ethnic Medicine Jiangxi University of Chinese Medicine Nanchang P. R. China

3. National Engineering Research Centre for Manufacturing Technology of Traditional Chinese Medicine Solid Preparations Jiangxi University of Chinese Medicine Nanchang P. R. China

Abstract

AbstractBackground and objectiveThe herb Rheum tanguticum (RT), a member of the Polygonaceae family, is listed in the Chinese Pharmacopoeia and has been widely used to treat cardiovascular and gastrointestinal disease. The research aimed to identify the different substances from two kinds of RT extraction methods and the in vivo biotransformation of RT components.MethodsIn this study, by using ultrahigh‐performance liquid chromatography coupled with quadrupole‐time‐of‐flight tandem mass spectrometry (UHPLC‐Q‐TOF‐MS/MS), we have investigated the metabolomic variation and the in vivo metabolism of RT. A post‐acquisition data processing software, PeakView, was applied to an accurate qualitative analysis of the chemical components in RT.ResultsThrough plant metabolomics analysis, 24 related, differentially expressed metabolites of RT water extract and alcohol extract were obtained. Combined with novel identification strategies and systematic in vivo metabolism analysis, a total of 101 compounds were discovered or tentatively identified in rat serum (including 15 prototype compounds and 86 metabolites).ConclusionIn this study, a combination of extraction methods, liquid chromatography–mass spectrometry (LC–MS) technology, and in vivo animal metabolism studies have been established for the screening, identification, and research of chemical active components of natural medicines. LC–MS analysis combined with plant metabolomics was used to study the differential metabolites between different extraction methods of RT. Based on UHPLC‐Q‐TOF‐MS/MS technology, the composition and metabolism of rat plasma before and after RT administration were analysed in vivo, and 15 prototype components and 86 metabolites were detected.

Funder

National Key Research and Development Program of China

Publisher

Wiley

Subject

Complementary and alternative medicine,Drug Discovery,Plant Science,Molecular Medicine,General Medicine,Biochemistry,Food Science,Analytical Chemistry

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