Potential efficacious materials investigation of Yi-Yi Mixture based on Metabolome-oriented network pharmacology strategy

代谢组 化学 大黄素 代谢组学 色谱法 代谢物 药理学 生物化学 生物
作者
Guanwen Gong,Weihong Tang,Zhuo Zhou,Yanwen Jiang,Cui-zhong Wang,Hui Cheng,Yuan Cao,Zhiwei Jiang
出处
期刊:Journal of Chromatography B [Elsevier]
卷期号:1197: 123199-123199 被引量:4
标识
DOI:10.1016/j.jchromb.2022.123199
摘要

Yi-Yi Mixture, an efficient Chinese medicine preparation composed of four herbal medicines, has been used in clinical practice in China for the treatment of acute pancreatitis over twenty years. However, its functional materials against acute pancreatitis remains unclear, which is a huge obstacle for quality control. In this study, a metabolome-oriented network pharmacology strategy was proposed to clarify its potential substances and further screen out quality markers. Firstly, an Ultra-High performance liquid chromatography coupled with quadrupole time-of-flight mass spectrometry method was utilized to profile the chemical constituents in Yi-Yi Mixture. Secondly, metabolic exposure of chemical constituents as well as their global metabolites produced in biological systems were profiled and defined as metabolome of Yi-Yi Mixture. Then, the metabolome targets were predicted based on network analysis. As a result, a total of 66 chemical components were characterized, including 6 stilbenes, 21 anthraquinones, 7 phenols, 13 neolignans, 3 naphthalenes and 16 other types. Moreover, metabolic profiles of YYM (32 prototypes and 37 metabolites) were analyzed in rat bio-samples. Among them, resveratrol, emodin, chrysophanol, rhein and their derivatives were detected in multiple tissues/organs, revealing their potential as key pharmacodynamic substances. These were further confirmed by metabolome-oriented network analysis and molecular docking techniques. This is the first comprehensive investigation on chemical and metabolic profiles of Yi-Yi Mixture, and the results provided scientific foundation for further research on quality control and clinical-safe medication administration.
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