Cargando…

Anxiolytic effect of YangshenDingzhi granules: Integrated network pharmacology and hippocampal metabolomics

Anxiety disorder is one of the most common mental diseases. It is mainly characterized by a sudden, recurring but indescribable panic, fear, tension and/or anxiety. Yangshendingzhi granules (YSDZ) are widely used in the treatment of anxiety disorders, but its active ingredients and underlying mechan...

Descripción completa

Detalles Bibliográficos
Autores principales: Lv, Shimeng, Dai, Weibo, Zheng, Yan, Dong, Ping, Yu, Yihong, Zhao, Yifan, Sun, Shiguang, Bi, Dezhong, Liu, Chuanguo, Han, Fabin, Wu, Jibiao, Zhao, Tingting, Ma, Yuexiang, Zheng, Feng, Sun, Peng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9659911/
https://www.ncbi.nlm.nih.gov/pubmed/36386232
http://dx.doi.org/10.3389/fphar.2022.966218
_version_ 1784830305852456960
author Lv, Shimeng
Dai, Weibo
Zheng, Yan
Dong, Ping
Yu, Yihong
Zhao, Yifan
Sun, Shiguang
Bi, Dezhong
Liu, Chuanguo
Han, Fabin
Wu, Jibiao
Zhao, Tingting
Ma, Yuexiang
Zheng, Feng
Sun, Peng
author_facet Lv, Shimeng
Dai, Weibo
Zheng, Yan
Dong, Ping
Yu, Yihong
Zhao, Yifan
Sun, Shiguang
Bi, Dezhong
Liu, Chuanguo
Han, Fabin
Wu, Jibiao
Zhao, Tingting
Ma, Yuexiang
Zheng, Feng
Sun, Peng
author_sort Lv, Shimeng
collection PubMed
description Anxiety disorder is one of the most common mental diseases. It is mainly characterized by a sudden, recurring but indescribable panic, fear, tension and/or anxiety. Yangshendingzhi granules (YSDZ) are widely used in the treatment of anxiety disorders, but its active ingredients and underlying mechanisms are not yet clear. This study integrates network pharmacology and metabolomics to investigate the potential mechanism of action of YSDZ in a rat model of anxiety. First, potential active ingredients and targets were screened by network pharmacology. Then, predictions were verified by molecular docking, molecular dynamics and western blotting. Metabolomics was used to identify differential metabolites and metabolic pathways. All results were integrated for a comprehensive analysis. Network pharmacology analysis found that Carotene, β-sitosterol, quercetin, Stigmasterol, and kaempferol in YSDZ exert anxiolytic effects mainly by acting on IL1β, GABRA1, PTGS1, ESR1, and TNF targets. Molecular docking results showed that all the affinities were lower than −5 kcal/mol, and the average affinities were −7.7764 kcal/mol. Molecular dynamics simulation results showed that RMSD was lower than 2.5 A, and the overall conformational changes of proteins were small, indicating that the small molecules formed stable complexes with proteins. The results of animal experiments showed that YSDZ exerts anxiolytic effects by regulating GABRA1 and TNF-α, ameliorating pathological damage in hippocampal CA1, and regulating metabolic pathways such as thiamine, cysteine and methionine metabolism, lysine biosynthesis and degradation. Altogether, we reveal multiple mechanisms through which YSDZ exerts its anti-anxiety effects, which may provide a reference for its clinical application and drug development.
format Online
Article
Text
id pubmed-9659911
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-96599112022-11-15 Anxiolytic effect of YangshenDingzhi granules: Integrated network pharmacology and hippocampal metabolomics Lv, Shimeng Dai, Weibo Zheng, Yan Dong, Ping Yu, Yihong Zhao, Yifan Sun, Shiguang Bi, Dezhong Liu, Chuanguo Han, Fabin Wu, Jibiao Zhao, Tingting Ma, Yuexiang Zheng, Feng Sun, Peng Front Pharmacol Pharmacology Anxiety disorder is one of the most common mental diseases. It is mainly characterized by a sudden, recurring but indescribable panic, fear, tension and/or anxiety. Yangshendingzhi granules (YSDZ) are widely used in the treatment of anxiety disorders, but its active ingredients and underlying mechanisms are not yet clear. This study integrates network pharmacology and metabolomics to investigate the potential mechanism of action of YSDZ in a rat model of anxiety. First, potential active ingredients and targets were screened by network pharmacology. Then, predictions were verified by molecular docking, molecular dynamics and western blotting. Metabolomics was used to identify differential metabolites and metabolic pathways. All results were integrated for a comprehensive analysis. Network pharmacology analysis found that Carotene, β-sitosterol, quercetin, Stigmasterol, and kaempferol in YSDZ exert anxiolytic effects mainly by acting on IL1β, GABRA1, PTGS1, ESR1, and TNF targets. Molecular docking results showed that all the affinities were lower than −5 kcal/mol, and the average affinities were −7.7764 kcal/mol. Molecular dynamics simulation results showed that RMSD was lower than 2.5 A, and the overall conformational changes of proteins were small, indicating that the small molecules formed stable complexes with proteins. The results of animal experiments showed that YSDZ exerts anxiolytic effects by regulating GABRA1 and TNF-α, ameliorating pathological damage in hippocampal CA1, and regulating metabolic pathways such as thiamine, cysteine and methionine metabolism, lysine biosynthesis and degradation. Altogether, we reveal multiple mechanisms through which YSDZ exerts its anti-anxiety effects, which may provide a reference for its clinical application and drug development. Frontiers Media S.A. 2022-10-31 /pmc/articles/PMC9659911/ /pubmed/36386232 http://dx.doi.org/10.3389/fphar.2022.966218 Text en Copyright © 2022 Lv, Dai, Zheng, Dong, Yu, Zhao, Sun, Bi, Liu, Han, Wu, Zhao, Ma, Zheng and Sun. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Pharmacology
Lv, Shimeng
Dai, Weibo
Zheng, Yan
Dong, Ping
Yu, Yihong
Zhao, Yifan
Sun, Shiguang
Bi, Dezhong
Liu, Chuanguo
Han, Fabin
Wu, Jibiao
Zhao, Tingting
Ma, Yuexiang
Zheng, Feng
Sun, Peng
Anxiolytic effect of YangshenDingzhi granules: Integrated network pharmacology and hippocampal metabolomics
title Anxiolytic effect of YangshenDingzhi granules: Integrated network pharmacology and hippocampal metabolomics
title_full Anxiolytic effect of YangshenDingzhi granules: Integrated network pharmacology and hippocampal metabolomics
title_fullStr Anxiolytic effect of YangshenDingzhi granules: Integrated network pharmacology and hippocampal metabolomics
title_full_unstemmed Anxiolytic effect of YangshenDingzhi granules: Integrated network pharmacology and hippocampal metabolomics
title_short Anxiolytic effect of YangshenDingzhi granules: Integrated network pharmacology and hippocampal metabolomics
title_sort anxiolytic effect of yangshendingzhi granules: integrated network pharmacology and hippocampal metabolomics
topic Pharmacology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9659911/
https://www.ncbi.nlm.nih.gov/pubmed/36386232
http://dx.doi.org/10.3389/fphar.2022.966218
work_keys_str_mv AT lvshimeng anxiolyticeffectofyangshendingzhigranulesintegratednetworkpharmacologyandhippocampalmetabolomics
AT daiweibo anxiolyticeffectofyangshendingzhigranulesintegratednetworkpharmacologyandhippocampalmetabolomics
AT zhengyan anxiolyticeffectofyangshendingzhigranulesintegratednetworkpharmacologyandhippocampalmetabolomics
AT dongping anxiolyticeffectofyangshendingzhigranulesintegratednetworkpharmacologyandhippocampalmetabolomics
AT yuyihong anxiolyticeffectofyangshendingzhigranulesintegratednetworkpharmacologyandhippocampalmetabolomics
AT zhaoyifan anxiolyticeffectofyangshendingzhigranulesintegratednetworkpharmacologyandhippocampalmetabolomics
AT sunshiguang anxiolyticeffectofyangshendingzhigranulesintegratednetworkpharmacologyandhippocampalmetabolomics
AT bidezhong anxiolyticeffectofyangshendingzhigranulesintegratednetworkpharmacologyandhippocampalmetabolomics
AT liuchuanguo anxiolyticeffectofyangshendingzhigranulesintegratednetworkpharmacologyandhippocampalmetabolomics
AT hanfabin anxiolyticeffectofyangshendingzhigranulesintegratednetworkpharmacologyandhippocampalmetabolomics
AT wujibiao anxiolyticeffectofyangshendingzhigranulesintegratednetworkpharmacologyandhippocampalmetabolomics
AT zhaotingting anxiolyticeffectofyangshendingzhigranulesintegratednetworkpharmacologyandhippocampalmetabolomics
AT mayuexiang anxiolyticeffectofyangshendingzhigranulesintegratednetworkpharmacologyandhippocampalmetabolomics
AT zhengfeng anxiolyticeffectofyangshendingzhigranulesintegratednetworkpharmacologyandhippocampalmetabolomics
AT sunpeng anxiolyticeffectofyangshendingzhigranulesintegratednetworkpharmacologyandhippocampalmetabolomics