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Cyclosporin-A differentially affects apoptosis during in vivo rat thymocyte maturation
J G M C Damoiseaux1, M P Defresne, C P M Reutelingsperger
1Department of Immunology, University of Maastricht, The Netherlands. jdam@limm.azm.nl
Abstract:
Maturation arrest and interference with selection are two well-documented effects of cyclosporin-A (CsA) on the thymus. We recently hypothesized that these effects are related and owing to the reduced T-cell receptor (TCR)-CD3 complex-mediated signal transduction in thymocytes upon CsA treatment. In this hypothesis, the maturation arrest is the result of the additional depletion of thymocytes that normally survive by positive selection, whereas the impaired self-tolerance induction is caused by an increased survival of thymocytes that normally undergo negative selection. In this view, it is anticipated that CsA differentially affects thymocyte apoptosis during in vivo thymocyte maturation. Indeed, we report in this study a strong increase in apoptotic cells in the thymic cortex on in situ analysis. Simultaneously, the number of apoptotic cells had decreased at the cortico-medullary zone which is held to be the site for negative selection. Rapamycin (Rapa) also interferes with thymocyte maturation by inhibiting cytokine-driven proliferation. Hence, Rapa preferentially affects the early maturational stages of thymocyte development and is considered not to alter thymocyte selection and subsequent apoptotic events. Indeed, the number of apoptotic events appears not to be altered. However, possibly owing to the decrease in cortical macrophages, the apoptotic cells revealed an atypical enumeration around blood vessels. Taken together, our results favour the hypothesis that the dominant effect of CsA on the thymus is the reduction of the TCR-CD3 complex-mediated signal transduction in thymocytes upon interaction with stromal cells. Furthermore, the preferential localization of apoptotic cells next to blood vessels upon Rapa administration may indicate that endothelial cells are a back-up system for the removal of apoptotic cells.
Insights
Cyclosporin-A (CsA) reduces T-cell receptor (TCR)-CD3 signaling in thymocytes, increasing apoptosis in the cortex and impairing self-tolerance. Rapamycin affects early development but not selection-induced apoptosis.
Area of Science:
- Immunology
- Cell Biology
Background:
- Cyclosporin-A (CsA) is known to cause thymocyte maturation arrest and interfere with thymocyte selection.
- These effects are hypothesized to stem from reduced T-cell receptor (TCR)-CD3 complex-mediated signal transduction.
Purpose of the Study:
- To investigate the differential effects of CsA and Rapamycin (Rapa) on thymocyte apoptosis during in vivo maturation.
- To test the hypothesis that CsA's effects are due to reduced TCR-CD3 signaling.
Main Methods:
- In situ analysis of apoptotic cells within the thymus.
- Comparison of CsA and Rapa treatment effects on thymocyte apoptosis and localization.
Main Results:
- CsA treatment significantly increased apoptotic cells in the thymic cortex while decreasing them in the cortico-medullary zone.
- Rapa did not alter the overall number of apoptotic events but caused atypical localization around blood vessels, possibly due to reduced cortical macrophages.
- These findings support the hypothesis that CsA reduces TCR-CD3 signaling.
Conclusions:
- The primary effect of CsA on the thymus is the reduction of TCR-CD3 signal transduction, impacting thymocyte selection and survival.
- Rapa's effect on apoptotic cell localization suggests a potential role for endothelial cells in apoptotic cell clearance.