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Published on: January 28, 2020
Altered CD31 expression and activity in helper T cells of acute coronary syndrome patients
Davide Flego1, Anna Severino, Francesco Trotta
1Institute of Cardiology, Catholic University, Largo A. Gemelli, 8, 00168, Rome, Italy.
Insights
In acute coronary syndrome (ACS), CD31 molecule expression and function on T cells are reduced, impacting T cell signaling and differentiation. These abnormalities improve over time, suggesting CD31 as a potential therapeutic target.
Area of Science:
- Immunology and Cardiovascular Science
Background:
- T cell abnormalities are linked to worse outcomes in acute coronary syndrome (ACS).
- Reduced inhibitory activity of CD31 on leukocytes promotes atherosclerosis in experimental models.
Purpose of the Study:
- To investigate CD31 expression and its role in T cell receptor (TCR) signaling in ACS patients.
- To compare CD31 expression and function in ACS, stable angina (SA), and control groups.
- To assess changes in CD31 expression and function at 1-year follow-up in ACS patients.
Main Methods:
- Flow cytometry was used to analyze CD31 expression on various T cell subsets (CD4+, CD4+CD28null, naïve, memory).
- TCR signaling and MAPK pathway modulation by CD31 were examined.
- CD31 recruitment to the immunological synapse was assessed.
Main Results:
- ACS patients exhibited significantly reduced CD31 expression on CD4+, CD4+CD28null, naïve, and memory T cells compared to SA and controls.
- The immunomodulatory effect of CD31 on TCR signaling was diminished in ACS patients.
- At 1-year follow-up, CD31 expression and function improved in ACS patients, approaching SA levels.
Conclusions:
- CD31 plays a crucial role in modulating T cell activation and differentiation, with its regulatory pathway downregulated in ACS.
- Reduced CD31 expression and function in ACS impact T cell signaling and Th1/Th17 differentiation.
- CD31 represents a potential novel therapeutic target for addressing T cell abnormalities in ACS.
Abstract:
In acute coronary syndrome (ACS), T cell abnormalities are associated to a worse outcome. Loss of inhibitory activity of CD31, an Ig-like adhesion molecule, on peripheral leukocytes has been found to enhance atherosclerosis in experimental models. In this study, we examined the expression of CD31 on T cells, and its role on TCR signaling in 35 patients with non-ST elevation ACS, in 35 patients with stable angina (SA), and in 35 controls. Furthermore, 10 ACS and 10 SA patients were re-analyzed at 1-year follow-up. Flow-cytometry analysis showed that in ACS patients, CD31 expression was reduced on total CD4(+) and CD4(+)CD28(null) (P < 0.001, ACS vs. SA), on naïve (P < 0.001, ACS vs. SA) and on central-memory and effector-memory CD4(+) T cells (P < 0.05, ACS vs. SA and controls). The immunomodulatory effect of CD31 on TCR signaling of CD4(+) and CD4(+)CD28(null) T cells, was lower in ACS than SA patients (P < 0.05, for both comparisons). At 1-year follow-up, CD31 expression and function increased in ACS becoming similar to that found in SA. CD31 recruitment in the immunological synapse was lower in ACS than controls (P = 0.012). Moreover, CD31 modulated MAPK signaling and reduced the expression of T bet and Rorγ-t, necessary for Th1 and Th17 differentiation. Finally, we studied TCR signaling in CD31(+) naïve and primed T cell subsets observing a different pattern of protein phosphorylation. A CD31-mediated regulatory pathway is enhanced in SA and temporarily downregulated in ACS. As CD31 modulates both T cell activation, by increasing the threshold for TCR stimulation, and T cell differentiation, it might represent a novel molecular target to treat T cell abnormalities in ACS.
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