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Updated: Aug 30, 2026

Murine Model of CD40-activation of B cells
Published on: March 5, 2010
CD40 ligand is selectively expressed on CD4+ T cells and platelets: implications for CD40-CD40L signalling in
Kerstin Büchner1, Volker Henn, Michael Gräfe
1Molecular Immunology, Robert Koch-Institute, Nordufer 20, 13353 Berlin, Germany.
Insights
CD40 ligand (CD40L) on T cells and platelets, not on endothelial cells or macrophages, drives chronic inflammation in atherosclerosis. This process is antigen-driven and MHC-dependent, offering new therapeutic targets.
Area of Science:
- Cardiovascular Biology
- Immunology
- Vascular Inflammation
Background:
- Atherosclerosis is a chronic inflammatory vascular disease.
- CD40 receptor and its ligand (CD40L) are implicated in atherosclerosis.
- Platelets and T cells are identified as CD40L sources.
Purpose of the Study:
- To investigate the cellular sources and functional role of CD40L in atherosclerosis.
- To clarify the mechanisms of CD40L-mediated inflammation in vascular disease.
Main Methods:
- Immunohistochemistry on atherosclerotic tissues.
- Flow chamber experiments assessing inflammatory cell recruitment.
- In vitro analysis of CD40L expression on various cell types.
Main Results:
- CD40L(+) T cells and platelets were found in atherosclerotic lesions.
- CD40L was not detected on endothelial cells, smooth muscle cells, or macrophages.
- CD40L(+) platelets recruit inflammatory cells, but T cell-derived CD40L sustains chronic inflammation.
Conclusions:
- CD40L-driven inflammation in atherosclerosis is primarily mediated by T cells and platelets.
- The inflammatory role of CD40L is antigen-driven and MHC-dependent.
- Findings suggest novel therapeutic strategies targeting CD40L in atherosclerosis.
Abstract:
Atherosclerosis is a degenerative inflammatory disease of the vascular system. Endothelial cells (ECs), smooth muscle cells, and macrophages, key elements in atherosclerosis, all have the potential to express the CD40 receptor and are thus susceptible to potent pro-inflammatory signals by CD40 ligand (CD40L)-bearing cells. CD40L is a TNF-alpha-related membrane protein originally identified on activated T cells. The recent recognition of platelets as an abundant source of CD40L led to a reassessment of the involvement of CD40L in atherosclerosis. In the present report, CD40L(+) T cells were identified in the intima of atherosclerotic tissues within macrophage infiltrates and in areas of neovascularization. These CD40L(+) T cells were CD4(+), CD69(+), but negative for CD8, CD25, CD28, and ICOS. In some specimens, CD40L(+) platelets were identified in the intima and in plaque ruptures. Contrary to previous reports, CD40L was not observed on ECs, smooth muscle cells, and macrophages in atherosclerotic tissues or in vitro at the protein and mRNA levels. Functionally, flow chamber experiments demonstrated that stimulation of ECs via CD40 is sufficient to recruit neutrophils and T cells from whole blood to ECs and suggested that CD40L(+) platelets contribute significantly to the recruitment of inflammatory cells to damaged endothelium in vivo. However, due to the short half-life of platelet CD40L, the chronic CD40L-driven inflammatory component can only be sustained by activated CD4(+) T cells. Contrary to current understanding, the contribution of CD40L to chronic inflammation in atherosclerosis is thus antigen-driven and MHC-dependent. This conclusion has significant therapeutic implications.
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