Integrated Modules Analysis to Explore the Molecular Mechanisms of Phlegm-Stasis Cementation Syndrome with Ischemic
Wei-Ming Xu1, Kuo Yang2, Li-Jie Jiang1
1Research Centre for Disease and Syndrome, Institute of Basic Theory for Traditional Chinese Medicine, China Academy of Chinese Medicine Sciences, Beijing, China.
Insights
Network medicine identified key molecular pathways in ischemic heart disease (IHD) with phlegm-stasis cementation syndrome (PSCS) complications. This approach reveals mechanisms for Chinese herbal formulas and advances precision medicine for IHD subtypes.
Area of Science:
- Network Medicine
- Genomics
- Cardiovascular Disease Research
- Traditional Chinese Medicine (TCM)
Background:
- Ischemic heart disease (IHD) remains a leading global cause of mortality.
- Phlegm-stasis cementation syndrome (PSCS) is a common complication in IHD patients.
- The molecular mechanisms underlying PSCS in IHD are not fully understood.
Purpose of the Study:
- To elucidate the molecular mechanisms of IHD phenotypes, particularly those complicated by PSCS.
- To identify disease modules associated with IHD and PSCS using network medicine.
- To validate findings with pharmacological and physiological evidence.
Main Methods:
- Integrated 1,056 high-quality IHD-associated genes from databases and literature.
- Dissected protein-protein interaction (PPI) modules to identify eight IHD disease modules.
- Mapped PSCS-related genes to IHD modules to identify two PSCS syndrome modules, validated by pathway and functional enrichment analyses.
Main Results:
- Identified eight significant IHD disease modules from 1,056 IHD genes.
- Discovered two PSCS syndrome modules within the IHD modules.
- These modules showed enrichment in Toll-like receptor signaling and Renin-angiotensin system pathways, linked to angiotensin maturation and response to bacteria.
Conclusions:
- A network medicine approach successfully identified molecular modules for PSCS complicated with IHD.
- The findings provide insights into the pharmacological mechanisms of Chinese herbal formulas for IHD.
- This study offers novel understanding for IHD precision medicine and integrates Western and TCM diagnostic approaches.
Abstract:
Background: Ischemic heart disease (IHD) has been the leading cause of death for several decades globally, IHD patients usually hold the symptoms of phlegm-stasis cementation syndrome (PSCS) as significant complications. However, the underlying molecular mechanisms of PSCS complicated with IHD have not yet been fully elucidated. Materials and Methods: Network medicine methods were utilized to elucidate the underlying molecular mechanisms of IHD phenotypes. Firstly, high-quality IHD-associated genes from both human curated disease-gene association database and biomedical literatures were integrated. Secondly, the IHD disease modules were obtained by dissecting the protein-protein interaction (PPI) topological modules in the String V9.1 database and the mapping of IHD-associated genes to the PPI topological modules. After that, molecular functional analyses (e.g., Gene Ontology and pathway enrichment analyses) for these IHD disease modules were conducted. Finally, the PSCS syndrome modules were identified by mapping the PSCS related symptom-genes to the IHD disease modules, which were further validated by both pharmacological and physiological evidences derived from published literatures. Results: The total of 1,056 high-quality IHD-associated genes were integrated and evaluated. In addition, eight IHD disease modules (the PPI sub-networks significantly relevant to IHD) were identified, in which two disease modules were relevant to PSCS syndrome (i.e., two PSCS syndrome modules). These two modules had enriched pathways on Toll-like receptor signaling pathway (hsa04620) and Renin-angiotensin system (hsa04614), with the molecular functions of angiotensin maturation (GO:0002003) and response to bacterium (GO:0009617), which had been validated by classical Chinese herbal formulas-related targets, IHD-related drug targets, and the phenotype features derived from human phenotype ontology (HPO) and published biomedical literatures. Conclusion: A network medicine-based approach was proposed to identify the underlying molecular modules of PSCS complicated with IHD, which could be used for interpreting the pharmacological mechanisms of well-established Chinese herbal formulas (e.g., Tao Hong Si Wu Tang, Dan Shen Yin, Hunag Lian Wen Dan Tang and Gua Lou Xie Bai Ban Xia Tang). In addition, these results delivered novel understandings of the molecular network mechanisms of IHD phenotype subtypes with PSCS complications, which would be both insightful for IHD precision medicine and the integration of disease and TCM syndrome diagnoses.
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