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April 5, 2026Medicine0 citationsOpen Access

New perspectives on the mechanisms and treatment of valvular heart disease: Mendelian randomization and systematic analysis based on plasma proteins

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CWCheng WangChangchun University of Chinese MedicineXSXiao ShaoChildren's Hospital of Zhejiang UniversityJWJia WangNational Natural Science Foundation of China

Key Result

Mendelian randomization identified 76 genes associated with valvular heart disease, prioritizing razoxane, reserpine, and bisindolylmaleimide I as potential therapeutic compounds.

Key Points

  • This study aims to uncover molecular targets and treatment candidates for valvular heart disease (VHD).
  • Utilized a 2-sample mendelian randomization design to analyze genetic exposures related to VHD.
  • Conducted functional enrichment and drug repurposing via molecular docking.
  • Built a protein-protein interaction network to identify hub genes related to VHD.
  • Performed single-cell RNA sequencing to assess distribution of gene expression across cell types.
  • Identified 76 genes linked to VHD, including stathmin 1 and mitogen-activated protein kinase 8.
  • Highlighted several signaling pathways related to disease progression through enrichment analysis.
  • Prioritized compounds such as razoxane and reserpine for further exploration as potential therapies.
  • Discovered 10 hub genes with significant expression in cardiomyocytes and other relevant cell types.

Structured PICO

P
Population
Publicly available genome-wide association study summary statistics for valvular heart disease and plasma proteins
O
Outcome
Genes associated with valvular heart disease and candidate drug compoundssurrogate

Integrative Mendelian randomization analysis identified 76 candidate genes and potential drug leads for valvular heart disease, offering novel targets for future mechanistic validation.

Abstract

Valvular heart disease (VHD) is a common cardiovascular disorder with insidious early symptoms and can progress to heart failure or sudden death. Pharmacological options remain limited, and severe disease often requires surgical intervention. This study aimed to identify key molecular targets and potential therapeutic candidates for VHD using Mendelian randomization (MR) and integrative analyses. A 2-sample MR design was used to evaluate the association between genetically predicted exposures and VHD using publicly available genome-wide association study summary statistics. Downstream analyses included functional enrichment, drug repurposing with molecular docking, protein-protein interaction network construction with hub-gene identification, and single-cell RNA sequencing-based analysis to examine the cell-type distribution of candidate gene expression. MR analysis identified 76 genes associated with VHD, including stathmin 1, ribosomal protein S5, and mitogen-activated protein kinase 8. Enrichment analysis suggested that these genes were involved in multiple signaling pathways potentially related to disease progression. Drug prediction and molecular docking prioritized razoxane, reserpine, and bisindolylmaleimide I as candidate compounds targeting key molecules. Protein-protein interaction network analysis further identified 10 hub genes, such as DEAD-box helicase 6 and apolipoprotein E. Single-cell sequencing showed high expression of these genes in cardiomyocytes, fibroblasts, and smooth muscle cells. This study identified candidate genes and potential drug leads for VHD through an MR-based integrative analysis, providing targets for subsequent mechanistic and experimental validation.

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Cite This Study

Wang et al. (2026) studied this question. Mendelian randomization identified 76 genes associated with valvular heart disease, prioritizing razoxane, reserpine, and bisindolylmaleimide I as potential therapeutic compounds.

synapsesocial.com/papers/69d1fdf7a79560c99a0a44f1https://doi.org/10.1097/md.0000000000048210
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