Abstract
Gut microbiota plays a pivotal role in cardiovascular disease; however, its specific contribution to coronary artery disease (CAD) remains underexplored. This study identified distinct microbial signatures associated with CAD, including the enrichment of pro-inflammatory bacterial taxa and depletion of short-chain fatty acid-producing bacteria, which may contribute to systemic inflammation and metabolic dysregulation. Perturbations in key pathways, such as the urea cycle and glycolysis, suggest metabolic links between the gut microbiota and CAD. Additionally, the metagenome-assembled genome-based analysis revealed strain-resolved functional heterogeneity that shapes host-microbe interactions and may contribute to CAD pathophysiology. These findings provide novel insights into gut dysbiosis in CAD and highlight the potential of microbiome-targeted therapeutic strategies in precision medicine.
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CITATION STYLE
Lee, S., Raza, S., Lee, E.-J., Chang, Y., Ryu, S., Kim, H.-L., … Kim, H.-N. (2025). Metagenome-assembled genomes reveal microbial signatures and metabolic pathways linked to coronary artery disease. MSystems, 10(12). https://doi.org/10.1128/msystems.00954-25
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