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Updated: Aug 3, 2026

Training a Sophisticated Microsurgical Technique: Interposition of External Jugular Vein Graft in the Common Carotid Artery in Rats
Published on: November 11, 2012
Inhibition of complement component C3 reduces vein graft atherosclerosis in apolipoprotein E3-Leiden transgenic mice
A Schepers1, M R de Vries, C J van Leuven
1Gaubius Laboratory, TNO Quality of Life, Leiden, The Netherlands.
Insights
The complement cascade contributes to vein graft thickening and atherosclerosis, suggesting it as a therapeutic target for preventing graft failure. Inhibiting complement component C3 reduced inflammation and graft thickening in a mouse model.
Area of Science:
- Immunology
- Vascular Biology
- Surgical Research
Background:
- Vein graft failure is often caused by intimal hyperplasia and accelerated atherosclerosis.
- Inflammation is a key driver of these pathological processes.
- The complement system's role in vein graft atherosclerosis remains largely unexplored.
Purpose of the Study:
- To investigate the involvement of the complement cascade in the development of vein graft atherosclerosis.
- To determine if targeting complement could be a therapeutic strategy for vein graft failure.
Main Methods:
- A mouse model of venous interposition in the common carotid artery was utilized.
- Immunohistochemistry and quantitative mRNA analysis were performed to detect complement components (C1q, C3, C9) and regulatory proteins (CD59, complement receptor-related gene y).
- Interference with C3 activation using complement receptor-related gene y-Ig and inhibition of C3 with cobra venom factor were employed to assess therapeutic effects.
Main Results:
- Vein graft thickening and deposition of complement components (C1q, C3, C9) were observed within 4 weeks.
- Local mRNA expression of C1q, C3, CD59, and complement receptor-related gene y was detected in thickened grafts.
- Inhibition of C3 activation significantly reduced vein graft thickening, C3/C9 deposition, and inflammatory cell infiltration, while also affecting apoptosis and proliferation.
Conclusions:
- The complement cascade plays a significant role in vein graft thickening.
- Targeting complement activation, particularly C3, shows potential as a therapeutic approach to prevent vein graft failure.
Background:
Venous bypass grafts may fail because of development of intimal hyperplasia and accelerated atherosclerosis. Inflammation plays a major role in these processes. Complement is an important part of the immune system and participates in the regulation of inflammation. The exact role of complement in the process of accelerated atherosclerosis of vein grafts has not yet been explored, however.
Methods And Results:
To assess the role of complement in the development of vein graft atherosclerosis, a mouse model, in which a venous interposition was placed in the common carotid artery, was used. In this model, vein graft thickening appeared within 4 weeks. The expression of complement components was studied with the use of immunohistochemistry on sections of the thickened vein graft. C1q, C3, C9, and the regulatory proteins CD59 and complement receptor-related gene y could be detected in the lesions 4 weeks after surgery. Quantitative mRNA analysis for C1q, C3, CD59, and complement receptor-related gene y revealed expression of these molecules in the thickened vein graft, whereas C9 did not show local mRNA expression. Furthermore, interference with C3 activation with complement receptor-related gene y-Ig was associated with reduced vein graft thickening, reduced C3 and C9 deposition, and reduced inflammation as assessed by analysis of influx of inflammatory cells, such as leukocytes, T cells, and monocytes. In addition, changes in apoptosis and proliferation were observed. When C3 was inhibited by cobra venom factor, a similar reduction in vein graft thickening was observed.
Conclusions:
The complement cascade is involved in vein graft thickening and may be a target for therapy in vein graft failure disease.
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