Evidence map›Paper›PMID 42675116›Full record

ArticleScientific reports2026

Integrative multi-omics analysis of metabolite-protein interaction networks across different stages of coronary heart disease.

Xilun Tan, Yuanxiaoxue Gao, Jia Wang, Xuesen Wang, Yishuang Pan, Mingyu Chen, Meili Gao, Ming Zhang, Chenhao Zhang, Pinsheng Ding

Abstract read
In one paragraph

Article in Scientific reports, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.

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1 · What the graph read from it

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2 · The registry

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3 · Its place in the literature

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4 · The record

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5 · Who and what money

Authors and funding

10 authors.

Xilun Tan *Wangjing Hospital of China Academy of Chinese Medical Sciences, Beijing, China.
Yuanxiaoxue Gao *Wangjing Hospital of China Academy of Chinese Medical Sciences, Beijing, China.
Jia WangWangjing Hospital of China Academy of Chinese Medical Sciences, Beijing, China.
Xuesen WangWangjing Hospital of China Academy of Chinese Medical Sciences, Beijing, China.
Yishuang PanWangjing Hospital of China Academy of Chinese Medical Sciences, Beijing, China.
Mingyu ChenWangjing Hospital of China Academy of Chinese Medical Sciences, Beijing, China.
Meili GaoWangjing Hospital of China Academy of Chinese Medical Sciences, Beijing, China.
Ming ZhangWangjing Hospital of China Academy of Chinese Medical Sciences, Beijing, China.
Chenhao ZhangWangjing Hospital of China Academy of Chinese Medical Sciences, Beijing, China. zhangch500@126.com.
Pinsheng DingWangjing Hospital of China Academy of Chinese Medical Sciences, Beijing, China. 1315580640@qq.com.

Funding

the Capital's Funds for Health Improvement and Research 2026-2-4164the Scientific and Technological Innovation Project of China Academy of Chinese Medical Sciences CI2026A00907
6 · The paper itself

Abstract

To elucidate the molecular characteristics of synergistic interactions across the clinical stages of coronary heart disease (CHD)-specifically stable angina pectoris (SAP), unstable angina pectoris (UAP), and acute myocardial infarction (AMI)-through integrated metabolomic and proteomic analyses. Based on a cohort including SAP, UAP, AMI, and healthy controls, metabolomic and proteomic analyses were performed to identify differentially expressed molecules, followed by KEGG pathway enrichment analysis. Pathways co-enriched across both omics platforms were selected to construct metabolite-protein interaction networks. The number of pathways co-enriched in both metabolomic and proteomic analyses increased markedly with disease stage. Only two pathways (histidine metabolism and arginine and proline metabolism) were identified in the SAP stage; this number increased to five in the UAP stage (including ferroptosis and efferocytosis) and expanded to 25 in the AMI stage, encompassing three major functional modules: immune inflammation, metabolic reprogramming, and cell signaling. The core network exhibited a stepwise increase in connectivity, shifting from a sparse structure in the SAP stage to a highly interconnected architecture in the AMI stage, with L-glutamate and KNG1 identified as the central hubs in this cross-sectional network. In addition, CNDP1 exhibited a stage-dependent functional transition, shifting from downregulation in SAP to upregulation in AMI. In this cross-sectional analysis, metabolic dysregulation and immune activation exhibited stepwise increases in interconnectivity across the SAP, UAP, and AMI groups, with the most extensive crosstalk observed in the AMI stage-a network configuration consistent with a tightly coupled "molecular storm". These findings provide novel insights into stage-associated molecular signatures of CHD and identify candidate hub molecules for stage-oriented therapeutic investigation.

Indexed as

Coronary DiseaseMetabolomeMetabolomicsProtein Interaction MapsHumansMultiomicsProteomics

Identifiers

PMID42675116
PMCPMC13529740

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