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Updated: Apr 28, 2026

Mouse Model of Alloimmune-induced Vascular Rejection and Transplant Arteriosclerosis
Published on: May 17, 2015
Interacting mechanisms in the pathogenesis of cardiac allograft vasculopathy
Jordan S Pober1, Dan Jane-wit2, Lingfeng Qin2
1From the Departments of Immunobiology (J.S.P.), Internal Medicine (D.J.-w.), and Surgery (L.Q. and G.T.), Yale University School of Medicine, New Haven, CT. jordan.pober@yale.edu.
Insights
Cardiac allograft vasculopathy, a major cause of heart transplant graft loss, involves arterial intimal expansion and stenosis. Understanding its multifactorial pathogenesis is key to improving long-term transplant survival.
Area of Science:
- Cardiology
- Immunology
- Transplantation Biology
Background:
- Cardiac allograft vasculopathy (CAV) is the primary cause of late graft loss in heart transplant recipients.
- CAV lesions lead to progressive arterial stenosis and ischemic graft failure, affecting over 50% of patients.
Purpose of the Study:
- To review the multifactorial pathogenesis of cardiac allograft vasculopathy.
- To discuss potential contributors including atherosclerosis risk factors, injury, infection, and immune responses.
Main Methods:
- Histological analysis of end-stage CAV lesions.
- Review of literature on CAV pathogenesis and contributing factors.
Main Results:
- CAV lesions are characterized by diffuse intimal expansion, microvessel infiltration, and stenosis.
- Lesions are progressive, refractory to treatment, and implicate alloimmunity but may be multifactorial.
Conclusions:
- Multiple factors contribute to CAV, including conventional atherosclerosis risk factors, alloimmunity (T-cell and B-cell mediated), infection, and innate immunity.
- Understanding these interactions is crucial for developing effective treatments to prevent graft loss.
Abstract:
Cardiac allograft vasculopathy is the major cause of late graft loss in heart transplant recipients. Histological studies of characteristic end-stage lesions reveal arterial changes consisting of a diffuse, confluent, and concentric intimal expansion containing graft-derived cells expressing smooth muscle markers, extracellular matrix, penetrating microvessels, and a host mononuclear cell infiltrate concentrated subjacent to an intact graft-derived luminal endothelial cell lining with little evidence of acute injury. This intimal expansion combined with inadequate compensatory outward remodeling produces severe generalized stenosis extending throughout the epicardial and intramyocardial arterial tree that causes ischemic graft failure. Cardiac allograft vasculopathy lesions affect ≥50% of transplant recipients and are both progressive and refractory to treatment, resulting in ≈5% graft loss per year through the first 10 years after transplant. Lesions typically stop at the suture line, implicating alloimmunity as the primary driver, but pathogenesis may be multifactorial. Here, we will discuss 6 potential contributors to lesion formation (1) conventional risk factors of atherosclerosis; (2) pre- or peritransplant injuries; (3) infection; (4) innate immunity; (5) T-cell-mediated immunity; and (6) B-cell-mediated immunity through production of donor-specific antibody. Finally, we will consider how these various mechanisms may interact with each other.
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