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Updated: Sep 30, 2026

Flow Cytometry Analysis of Tissue Factor Expression in Human Platelets
Published on: November 22, 2024
Platelet factor 4 inhibits proliferation and cytokine release of activated human T cells
Jens Fleischer1, Evelin Grage-Griebenow, Brigitte Kasper
1Department of Immunology and Cell Biology, Research Center Borstel, Borstel, Germany.
Abstract:
Platelet factor 4 (PF-4), a platelet-derived CXC chemokine, has been shown to induce the differentiation of monocytes into a subset of macrophages that lack the expression of HLA-DR Ag. This suggests a potential role for PF-4 in the modulation of monocyte-dependent T cell activation. Using an Ag-specific stimulation model in which T cells were cocultured with monocytes in the presence of recall Ags, we could show that under these conditions PF-4-treatment caused a strong decrease of T cell proliferation as well as of IFN-gamma release. However, inhibition of T cell functions such as proliferation, IL-2 release, and IL-2 mRNA production did also occur when isolated T cells were activated in the absence of monocytes with immobilized Abs directed against CD3 in combination with cross-linked anti-CD28 Abs. The effect could be reversed when low concentrations of exogenous IL-2 instead of anti-CD28 were used as a costimulus in combination with anti-CD3 Abs. Further evidence for direct modulation of T cell function by PF-4 was obtained by the detection of specific binding sites for the chemokine on the surface of these cells. Taken together, our results show that specific binding of PF-4, resulting in the down-regulation of the IL-2-release correlates with the inhibition of functions in activated T cells.
Insights
Platelet factor 4 (PF-4) directly inhibits T cell activation and function by binding to T cells, down-regulating IL-2 release. This chemokine plays a role in modulating immune responses.
Area of Science:
- Immunology
- Cell Biology
- Chemokine Signaling
Background:
- Platelet factor 4 (PF-4) is a chemokine derived from platelets.
- PF-4 influences monocyte differentiation into macrophages lacking HLA-DR Ag expression.
- This suggests PF-4 may modulate monocyte-dependent T cell activation.
Purpose of the Study:
- To investigate the direct role of PF-4 in T cell activation and function.
- To determine the mechanism by which PF-4 affects T cell responses.
Main Methods:
- Co-culture of T cells and monocytes with recall antigens and PF-4 treatment.
- Activation of isolated T cells using anti-CD3 and anti-CD28 antibodies.
- Assessment of T cell proliferation, IFN-gamma, IL-2 release, and IL-2 mRNA production.
- Detection of PF-4 binding sites on T cells.
Main Results:
- PF-4 treatment decreased T cell proliferation and IFN-gamma release in a monocyte-dependent model.
- PF-4 inhibited T cell proliferation, IL-2 release, and IL-2 mRNA production independently of monocytes.
- The inhibitory effect was reversed by exogenous IL-2.
- Specific binding sites for PF-4 were identified on T cells.
Conclusions:
- PF-4 directly modulates T cell function.
- PF-4 binding to T cells leads to down-regulation of IL-2 release and inhibition of T cell functions.
- PF-4 has a direct inhibitory effect on activated T cells.
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