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Updated: Aug 13, 2026

Mouse Model of Alloimmune-induced Vascular Rejection and Transplant Arteriosclerosis
Published on: May 17, 2015
Endothelial apoptosis and chronic transplant vasculopathy: recent results, novel mechanisms
J-F Cailhier1, P Laplante, M-J Hébert
1Renal and Transplantation Division, Research Centre CHUM (Centre Hospitalier de l'Université de Montréal), University of Montreal, 1560 Sherbrooke Est, Montreal, Quebec H2L 4M1, Canada.
Insights
Chronic transplant vasculopathy (CTV) involves vascular obliteration after organ transplant. Endothelial cell apoptosis, triggered by immune rejection, drives CTV by promoting cell adhesion and fibrosis.
Area of Science:
- Transplant immunology
- Vascular biology
- Cellular and molecular medicine
Background:
- Chronic transplant vasculopathy (CTV) is a major cause of solid organ transplant failure.
- CTV is characterized by progressive vascular obliteration and intimal thickening.
- Immune rejection, leading to endothelial cell (EC) apoptosis, is implicated in CTV pathogenesis.
Purpose of the Study:
- To elucidate the mechanisms linking endothelial cell apoptosis to fibroproliferative changes in CTV.
- To explore the role of immune-mediated EC apoptosis in regulating vascular repair.
Main Methods:
- Review of recent findings in apoptosis research.
- Analysis of animal models and human biopsy data.
- Mechanistic insights from cellular and molecular studies.
Main Results:
- Endothelial apoptosis enhances mononuclear cell adhesion, promoting leukocyte infiltration.
- Engulfment of apoptotic ECs by leukocytes stimulates transforming growth factor-beta1 production.
- EC apoptosis induces extracellular matrix proteolysis, initiating fibrotic matrix production.
Conclusions:
- Immune-mediated endothelial cell apoptosis is a key driver of CTV.
- Apoptotic mechanisms contribute to leukocyte infiltration and fibrosis in transplant vasculopathy.
- Further in vivo studies are needed to confirm the relative importance of these pathways.
Abstract:
Chronic transplant vasculopathy (CTV) is a progressive form of vascular obliteration affecting the arteries, arterioles and capillaries of solid organ transplants. It is characterized by intimal accumulation of mononuclear cells, vascular smooth muscle cells (VSMC), myofibroblasts and connective tissue. Mounting evidence, based on animal models and human biopsy results, suggests that acute and persistent rejection triggering apoptosis of endothelial cells (EC) plays a pivotal role in CTV. The precise mechanisms that underlie the induction of fibroproliferative changes in association with endothelial apoptosis have yet to be clearly delineated. Recent observations in the field of apoptosis research provide some important mechanistic clues. First, endothelial apoptosis creates a state of hyperadhesiveness for mononuclear cells, thus facilitating sustained leukocyte infiltration. Second, phosphatidylserine-dependent engulfment of apoptotic cells by infiltrating mononuclear leukocytes promotes transforming growth factor-beta1 production. Third, apoptosis of EC triggers extracellular matrix (ECM) proteolysis thus initiating the production of fibroproliferative/fibrogenic ECM fragments. The relative importance of these mechanisms in the pathophysiology of CTV will need to be addressed in vivo. Yet, these recent developments provide a new mechanistic framework that will help better define the importance of immune-mediated EC apoptosis in the regulation of vascular repair.

