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Updated: Jan 30, 2026

Quantitative Analysis and Characterization of Atherosclerotic Lesions in the Murine Aortic Sinus
Published on: December 7, 2013
FURIN Inhibition Reduces Vascular Remodeling and Atherosclerotic Lesion Progression in Mice
Gopala K Yakala1, Hector A Cabrera-Fuentes2,3,4,5,6, Gustavo E Crespo-Avilan2,3
1From the Translational Laboratories in Genetic Medicine, A*STAR Institute, and Yong Loo Lin School of Medicine, National University of Singapore (G.K.Y., C.R., K.A., D.C.M., M.C., Z.W., A.L.J.T., L.T.-M., R.C., T.C., R.R.S.).
Abstract:
Objective- Atherosclerotic coronary artery disease is the leading cause of death worldwide, and current treatment options are insufficient. Using systems-level network cluster analyses on a large coronary artery disease case-control cohort, we previously identified PCSK3 (proprotein convertase subtilisin/kexin family member 3; FURIN) as a member of several coronary artery disease-associated pathways. Thus, our objective is to determine the role of FURIN in atherosclerosis. Approach and Results- In vitro, FURIN inhibitor treatment resulted in reduced monocyte migration and reduced macrophage and vascular endothelial cell inflammatory and cytokine gene expression. In vivo, administration of an irreversible inhibitor of FURIN, α-1-PDX (α1-antitrypsin Portland), to hyperlipidemic Ldlr-/- mice resulted in lower atherosclerotic lesion area and a specific reduction in severe lesions. Significantly lower lesional macrophage and collagen area, as well as systemic inflammatory markers, were observed. MMP2 (matrix metallopeptidase 2), an effector of endothelial function and atherosclerotic lesion progression, and a FURIN substrate was significantly reduced in the aorta of inhibitor-treated mice. To determine FURIN's role in vascular endothelial function, we administered α-1-PDX to Apoe-/- mice harboring a wire injury in the common carotid artery. We observed significantly decreased carotid intimal thickness and lower plaque cellularity, smooth muscle cell, macrophage, and inflammatory marker content, suggesting protection against vascular remodeling. Overexpression of FURIN in this model resulted in a significant 67% increase in intimal plaque thickness, confirming that FURIN levels directly correlate with atherosclerosis. Conclusions- We show that systemic inhibition of FURIN in mice decreases vascular remodeling and atherosclerosis. FURIN-mediated modulation of MMP2 activity may contribute to the atheroprotection observed in these mice.
Insights
Systemic inhibition of FURIN (proprotein convertase subtilisin/kexin family member 3) reduces atherosclerosis and vascular remodeling. FURIN inhibition lowers lesion severity and inflammatory markers, suggesting therapeutic potential for cardiovascular disease.
Area of Science:
- Cardiovascular Research
- Molecular Biology
- Pathology
Background:
- Atherosclerotic coronary artery disease is a leading global cause of mortality, with current treatments being insufficient.
- Previous network analyses identified FURIN (proprotein convertase subtilisin/kexin family member 3) as a key player in coronary artery disease pathways.
Purpose of the Study:
- To investigate the role of FURIN in the development and progression of atherosclerosis.
- To evaluate the therapeutic potential of FURIN inhibition in preclinical models of cardiovascular disease.
Main Methods:
- In vitro studies assessed the impact of FURIN inhibition on monocyte migration and inflammatory gene expression in macrophages and vascular endothelial cells.
- In vivo studies utilized hyperlipidemic Ldlr-/- mice and Apoe-/- mice with carotid artery injury to evaluate the effects of the FURIN inhibitor α-1-PDX on atherosclerotic lesion development and vascular remodeling.
- FURIN overexpression was used in a vascular remodeling model to confirm its direct correlation with disease severity.
Main Results:
- In vitro, FURIN inhibition reduced monocyte migration and inflammatory gene expression.
- In vivo, α-1-PDX treatment in mice led to decreased atherosclerotic lesion area, reduced macrophage and collagen content, and lower systemic inflammatory markers.
- Inhibition of FURIN also decreased carotid intimal thickness and plaque cellularity, while FURIN overexpression significantly increased intimal plaque thickness.
Conclusions:
- Systemic inhibition of FURIN effectively decreases vascular remodeling and atherosclerosis in mouse models.
- FURIN-mediated modulation of matrix metallopeptidase 2 (MMP2) activity is a potential mechanism contributing to the observed atheroprotective effects.
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