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Galectin-3 and the Glyco-Inflammatory Axis: A Missing Link to Residual Cardiovascular Risk in Coronary Artery Disease
Toshiki Otoda1,2,3, Ken-Ichi Aihara2, Ken-Ichi Matsuoka3
1Division of General Medicine, Department of Internal Medicine, Nihon University School of Medicine, 30-1, Oyaguchi Kami-cho, Itabashi-ku, Tokyo 173-8610, Japan.
Insights
Residual cardiovascular risk persists despite treatments. Galectin-3 (Gal-3) drives inflammation and fibrosis, offering a new therapeutic target for comprehensive vascular protection.
Area of Science:
- Cardiovascular Medicine
- Immunology
- Biochemistry
Background:
- Residual cardiovascular risk is a major challenge in coronary artery disease (CAD) management.
- Current therapies do not fully address persistent low-grade inflammation and fibrotic remodeling.
- The glyco-inflammatory axis, involving protein glycosylation and inflammation, contributes to atherosclerotic risk.
Purpose of the Study:
- To review the role of Galectin-3 (Gal-3) in linking intracellular stress to vascular fibro-inflammatory remodeling.
- To highlight Gal-3 as a therapeutic target for residual cardiovascular risk.
- To explore the potential of targeting the Gal-3-mediated glyco-inflammatory axis for vascular protection.
Main Methods:
- Integration of mechanistic, translational, and clinical evidence.
- Focus on Gal-3's role as a molecular hub in inflammation and fibrosis.
- Analysis of Gal-3's association with plaque vulnerability and adverse cardiovascular events.
Main Results:
- Gal-3 orchestrates macrophage activation, endothelial dysfunction, and extracellular matrix deposition.
- Elevated Gal-3 levels correlate with plaque vulnerability and major adverse cardiovascular events, independent of traditional risk factors.
- Experimental Gal-3 inhibition demonstrates reduced inflammation and fibrosis in preclinical models.
Conclusions:
- Gal-3 is a key mediator of the glyco-inflammatory axis in cardiovascular disease.
- Targeting Gal-3 offers a novel strategy to address residual cardiovascular risk.
- Comprehensive vascular protection may be achieved by targeting the Gal-3-mediated glyco-inflammatory axis in the post-statin era.
Abstract:
Residual cardiovascular risk remains a major challenge in coronary artery disease, even after optimal lipid-lowering and anti-inflammatory therapy. Beyond classical risk factors, persistent low-grade inflammation and fibrotic remodeling contribute to adverse outcomes that current treatments fail to fully prevent. Growing evidence highlights the glyco-inflammatory axis-the interplay between protein glycosylation-dependent signaling and inflammation-as an underappreciated contributor to residual atherosclerotic risk, largely because current therapeutic strategies do not directly target glycan-mediated mechanisms. Within this framework, Galectin-3 (Gal-3), a β-galactoside-binding lectin, has emerged as a key molecular hub linking metabolic stress, lysosomal dysfunction, and vascular remodeling. By recognizing specific glycan motifs on immune and stromal cells, Gal-3 orchestrates macrophage activation, endothelial dysfunction, and extracellular matrix deposition, thereby amplifying chronic inflammation and fibrosis. Elevated circulating Gal-3 levels are associated with plaque vulnerability and major adverse cardiovascular events, independent of lipid or C-reactive protein levels. Experimental Gal-3 inhibition reduces inflammation and fibrosis in preclinical models, supporting its therapeutic potential. This review integrates mechanistic, translational, and clinical evidence to propose Gal-3 as a missing link between intracellular stress responses and extracellular fibro-inflammatory remodeling. Targeting the Gal-3-mediated glyco-inflammatory axis may represent a novel strategy to overcome residual cardiovascular risk and achieve comprehensive vascular protection in the post-statin era.
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