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Experimental Analysis of Apoptotic Thymocyte Engulfment by Macrophages
Published on: May 24, 2019
Peroxisome proliferator-activated receptor gamma contributes to T lymphocyte apoptosis during sepsis
Mathias Soller1, Anja Tautenhahn, Bernhard Brüne
1Department of Biochemistry I, University Hospital, Johann Wolfgang Goethe-University Frankfurt, Germany.
Abstract:
In the last two decades, extensive research failed to significantly improve the outcome of patients with sepsis. In part, this drawback is based on a gap in our knowledge about molecular mechanisms understanding the pathogenesis of sepsis. During sepsis, T cells are usually depleted. Recent studies in mice and human cells suggested a role of the peroxisome proliferator-activated receptor gamma (PPARgamma) in provoking apoptosis in activated T lymphocytes. Therefore, we studied whether expression/activation of PPARgamma might contribute to T cell death during sepsis. We observed PPARgamma up-regulation in T cells of septic patients. In contrast to controls, PPARgamma expressing cells from septic patients responded with apoptosis when exposed to PPARgamma agonists. Cell demise was attenuated by SR-202, a synthetic PPARgamma antagonist, and specificity was further verified by excluding a proapoptotic response to a PPARalpha agonist. We propose that up-regulation of PPARgamma sensitizes T cells of septic patients to undergo apoptosis. PPARgamma activation in T cells requires an exogenous PPARgamma agonist, which we identified in sera of septic patients. Septic sera were used to study reporter gene expression containing a PPAR-responsive element. We conclude that PPARgamma plays a significant role in T cell apoptosis, contributing to lymphocyte loss in sepsis. Thus, inhibition of PPARgamma may turn out to be beneficial for patients suffering from lymphopenia during sepsis.
Insights
Sepsis patients show increased peroxisome proliferator-activated receptor gamma (PPARgamma) in T cells, leading to apoptosis. Inhibiting PPARgamma may help reduce T cell loss in sepsis.
Area of Science:
- Immunology
- Molecular Biology
- Pathogenesis of Sepsis
Background:
- Sepsis patient outcomes have not significantly improved despite extensive research.
- T cell depletion is a common characteristic of sepsis.
- Peroxisome proliferator-activated receptor gamma (PPARgamma) has been implicated in T lymphocyte apoptosis.
Purpose of the Study:
- To investigate the role of PPARgamma expression and activation in T cell death during sepsis.
- To determine if PPARgamma up-regulation contributes to T cell apoptosis in septic patients.
Main Methods:
- Quantified PPARgamma expression in T cells from septic patients and controls.
- Assessed T cell apoptosis in response to PPARgamma agonists and antagonists (SR-202).
- Utilized reporter gene assays with septic sera to identify PPARgamma agonists.
Main Results:
- PPARgamma was found to be up-regulated in T cells of septic patients.
- Septic patient T cells expressing PPARgamma underwent apoptosis when exposed to PPARgamma agonists.
- Apoptosis was reduced by the PPARgamma antagonist SR-202, confirming specificity.
- Septic sera contained exogenous PPARgamma agonists that activated T cells.
Conclusions:
- Up-regulated PPARgamma sensitizes T cells to apoptosis in sepsis patients.
- PPARgamma activation in T cells is mediated by exogenous agonists found in septic sera.
- Inhibition of PPARgamma presents a potential therapeutic strategy for sepsis-induced lymphopenia.
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