Multi-omics approach for identification of molecular alterations of QiShenYiQi dripping pills in heart failure with preserved ejection fraction

被引:6
|
作者
Huang, Yuting [1 ,2 ]
Zhang, Kai [1 ,4 ,5 ]
Wang, Xiao [1 ,4 ]
Guo, Kaimin [3 ]
Li, Xiaoqiang [3 ]
Chen, Feng [1 ,4 ]
Du, Ruijiao [4 ]
Li, Sheng [1 ,4 ]
Li, Lan [4 ]
Yang, Zhihui [1 ,4 ]
Zhuo, Danping [1 ,4 ]
Wang, Bingkai [1 ,4 ]
Wang, Wenjia [3 ]
Hu, Yunhui [3 ]
Jiang, Miaomiao [4 ]
Fan, Guanwei [1 ,4 ,5 ]
机构
[1] Tianjin Univ Tradit Chinese Med, Natl Clin Res Ctr Chinese Med Acupuncture & Moxibu, Teaching Hosp 1, Tianjin 300193, Peoples R China
[2] Gannan Med Univ, Affiliated Hosp 1, Key Lab Prevent & Treatment Cardiovasc & Cerebrova, Minist Educ, Ganzhou 341000, Peoples R China
[3] Cloudphar Pharmaceut Co Ltd, Shenzhen 518000, Peoples R China
[4] Tianjin Univ Tradit Chinese Med, State Key Lab Component Based Chinese Med, Tianjin 301617, Peoples R China
[5] Tianjin Key Lab Translat Res TCM Prescript & Syndr, Tianjin 300193, Peoples R China
基金
中国国家自然科学基金;
关键词
Heart failure with preserved ejection fraction; Herbal preparation; Multi-omics analysis; Therapeutic target; PKG; CHINESE MEDICINE; DYSFUNCTION; MECHANISMS; PARADIGM;
D O I
10.1016/j.jep.2023.116673
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Ethnopharmacological relevance: Traditional Chinese medicine theory believes that qi deficiency and blood stasis are the key pathogenesis of heart failure with preserved ejection fraction (HFpEF). As a representative prescription for replenishing qi and activating blood, QiShenYiQi dripping pills (QSYQ) has been used for treating heart diseases. However, the pharmacological mechanism of QSYQ in improving HFpEF is not well understood.Aim of the study: The objective of the study is to investigate the cardioprotective effect and mechanism of QSYQ in HFpEF using the phenotypic dataset of HFpEF. Materials and methods: HFpEF mouse models established by feeding mice combined high-fat diet and N & omega;-nitro-Larginine methyl ester drinking water were treated with QSYQ. To reveal causal genes, we performed a multiomics study, including integrative analysis of transcriptomics, proteomics, and metabolomics data. Moreover, adeno-associated virus (AAV)-based PKG inhibition confirmed that QSYQ mediated myocardial remodeling through PKG.Results: Computational systems pharmacological analysis based on human transcriptome data for HFpEF showed that QSYQ could potentially treat HFpEF through multiple signaling pathways. Subsequently, integrative analysis of transcriptome and proteome showed alterations in gene expression in HFpEF. QSYQ regulated genes involved in inflammation, energy metabolism, myocardial hypertrophy, myocardial fibrosis, and cGMP-PKG signaling pathway, confirming its function in the pathogenesis of HFpEF. Metabolomics analysis revealed fatty acid metabolism as the main mechanism by which QSYQ regulates HFpEF myocardial energy metabolism. Importantly, we found that the myocardial protective effect of QSYQ on HFpEF mice was attenuated after RNA interference-mediated knock-down of myocardial PKG.Conclusion: This study provides mechanistic insights into the pathogenesis of HFpEF and molecular mechanisms of QSYQ in HFpEF. We also identified the regulatory role of PKG in myocardial stiffness, making it an ideal therapeutic target for myocardial remodeling.
引用
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页数:13
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