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Updated: Apr 5, 2026

Generation of Human Chimeric Antigen Receptor Regulatory T Cells
Published on: January 3, 2025
Functional and homeostatic defects of regulatory T cells in patients with coronary artery disease
L Hasib1, A K Lundberg1, H Zachrisson2
1Division of Cardiovascular Medicine, Department of Medical and Health Sciences, Linköping University, Linköping, Sweden.
Insights
Regulatory T cells (Tregs) show reduced function and numbers in non-ST elevation acute coronary syndrome (NSTE-ACS) and post-ACS patients. This immune defect is linked to inflammation and atherosclerosis, suggesting a need for immune-restoring strategies in coronary artery disease.
Area of Science:
- Immunology
- Cardiovascular Medicine
- Cell Biology
Background:
- Regulatory T cells (Tregs) are crucial for immune homeostasis and are considered atheroprotective.
- Low Treg levels are linked to acute coronary syndrome (ACS), particularly non-ST elevation ACS (NSTE-ACS).
- The functional status and homeostasis of Tregs in coronary artery disease (CAD) remain largely uncharacterized.
Purpose of the Study:
- To investigate the composition and functional properties of naive (nTregs) and memory (mTregs) in patients with NSTE-ACS.
- To assess Treg function in patients 6-12 months after ACS.
- To explore the association between Treg defects and atherosclerosis.
Main Methods:
- Treg subsets (nTregs, mTregs) were identified using flow cytometry based on CD25, FOXP3, CD127, CD45RA, CD39, and CTLA-4 expression.
- Functional assays assessed Treg proliferative capacity and modulation of cytokine secretion (interferon-gamma, IL-10).
- Correlations were examined with lipopolysaccharide (LPS)-induced cytokine secretion and carotid atherosclerosis burden.
Main Results:
- Patients with NSTE-ACS and post-ACS exhibited significantly reduced nTreg levels compared to controls.
- Both nTregs and mTregs displayed impaired proliferative capacity and reduced ability to modulate T-cell responses.
- Treg dysfunction correlated with heightened LPS-induced cytokine secretion and increased carotid atherosclerosis.
Conclusions:
- A functional and homeostatic defect in Tregs is evident in NSTE-ACS patients and persists post-ACS.
- This Treg impairment is associated with a pro-inflammatory and atherogenic state.
- The findings highlight the need for immune-restoring strategies to address Treg dysfunction in CAD.
Objective:
Regulatory T cells (Tregs) are considered atheroprotective, and low levels have been associated with the acute coronary syndrome (ACS), particularly non-ST elevation (NSTE)-ACS. However, the functional properties as well as homeostasis of Tregs are mainly unknown in coronary artery disease (CAD). Here, we investigated the composition and functional properties of naïve (n) and memory (m)Tregs in patients with NSTE-ACS and in patients 6-12 months post-ACS.
Methods:
Based on the expression of CD25, FOXP3, CD127, CD45RA, CD39 and CTLA-4, Treg subsets were defined by flow cytometry in whole blood or isolated CD4(+) T cells. The functional properties of nTregs and mTregs were examined in terms of proliferative capacity and modulation of cytokine secretion. To understand the potential consequences of Treg defects, we also investigated correlations with lipopolysaccharide (LPS)-induced cytokine secretion and ultrasound-defined carotid atherosclerosis.
Results:
Both NSTE-ACS and post-ACS patients exhibited reduced levels of nTregs (P < 0.001) compared with healthy control subjects, but without compensatory increases in mTregs. Both nTregs and mTregs from patients showed significantly lower replicative rates and impaired capacity to modulate T-cell proliferation and secretion of interferon-gamma and IL-10. The Treg defect was also associated with LPS-induced cytokine secretion and increased burden of carotid atherosclerosis.
Conclusion:
Our results demonstrate a functional and homeostatic Treg defect in patients with NSTE-ACS and also in stabilized patients 6-12 months after ACS. Moreover, this defect was associated with a subclinical proinflammatory and atherogenic state. We believe that the failure to preserve Treg function and homeostasis reflects a need for immune-restoring strategies in CAD.
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