Material basis and pharmacodynamic mechanism of YangshenDingzhi granules in the intervention of viral pneumonia:Based on serum pharmacochemistry and network pharmacologyOA
Background:YangshenDingzhi granules(YSDZ)are clinically effective in preventing and treating COVID-19.The present study elucidates the underlying mechanism of YSDZ intervention in viral pneumonia by employing serum pharmacochemistry and network pharmacology.Methods:The chemical constituents of YSDZ in the blood were examined using ultraperformance liquid chromatography-quadrupole/orbitrap high-resolution mass spectrometry(UPLC-Q-Exactive Orbitrap MS).Potential protein targets were obtained from the SwissTargetPrediction database,and the target genes associated with viral pneumonia were identified using GeneCards,DisGeNET,and Online Mendelian Inheritance in Man(OMIM)databases.The intersection of blood component-related targets and disease-related targets was determined using Venny 2.1.Protein-protein interaction networks were constructed using the STRING database.The Metascape database was employed to perform enrichment analyses of Gene Ontology(GO)functions and Kyoto Encyclopedia of Genes and Genomes(KEGG)signaling pathways for the targets,while the Cytoscape 3.9.1 software was utilized to construct drug-component-disease-target-pathway networks.Further,in vitro and in vivo experiments were performed to establish the therapeutic effectiveness of YSDZ against viral pneumonia.Results:Fifteen compounds and 124 targets linked to viral pneumonia were detected in serum.Among these,MAPK1,MAPK3,AKT1,EGFR,and TNF play significant roles.In vitro tests revealed that the medicated serum suppressed the replication of H1N1,RSV,and SARS-CoV-2 replicon.Further,in vivo testing analysis shows that YSDZ decreases the viral load in the lungs of mice infected with RSV and H1N1.Conclusion:The chemical constituents of YSDZ in the blood may elicit therapeutic effects against viral pneumonia by targeting multiple proteins and pathways.
Huirong Xu;Meiyue Dong;Ruikun Du;Chengcheng Zhang;Zinuo Chen;Guangyu Tian;Qinghua Cui;Kejian Li;
College of Traditional Chinese Medicine,Shandong University of Traditional Chinese Medicine,Jinan,ChinaInnovative Institute of Chinese Medicine and Pharmacy,Shandong University of Traditional Chinese Medicine,Jinan,ChinaInnovative Institute of Chinese Medicine and Pharmacy,Shandong University of Traditional Chinese Medicine,Jinan,China Qingdao Academy of Chinese Medical Sciences,Shandong University of Traditional Chinese Medicine,Qingdao,ChinaCollege of Pharmacy,Shandong University of Traditional Chinese Medicine,Jinan,China
中医学
network pharmacologypharmacodynamical material basisserum pharmacochemistryviral pneumoniaYangshenDingzhi granules
《Animal Models and Experimental Medicine》 2024 (003)
P.259-274 / 16
supported by Key R&D Project in Shandong Province;China(Grant number:2020CXGC010505);Qingdao Science and Technology Demonstration Program for the Benefit of the People;Shandong Province;China(Grant number:23-7-8-smjk-3-nsh)。
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