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Updated: Jan 28, 2026

New Tools to Expand Regulatory T Cells from HIV-1-infected Individuals
Published on: May 30, 2013
Increased Regulatory T-Cell Activity and Enhanced T-Cell Homeostatic Signaling in Slow Progressing HIV-infected
Julia Roider1,2,3,4, Abigail Ngoepe1, Maximilian Muenchhoff5,6
1Africa Health Research Institute, University of KwaZulu-Natal, Durban, South Africa.
Insights
Pediatric slow progressors (PSP) maintain high CD4 counts by actively using regulatory T-cells (TREG) and enhanced IL-7 signaling. This active immune regulation prevents HIV disease progression in children.
Area of Science:
- Immunology
- Virology
- Pediatrics
Background:
- Pediatric slow progressors (PSP) are rare, ART-naïve, HIV-infected children with high viral loads but preserved CD4 T-cell counts.
- Understanding the mechanisms behind this immune resilience is crucial for managing pediatric HIV.
Purpose of the Study:
- To investigate the roles of regulatory T-cells (TREG) and IL-7 homeostatic signaling in maintaining CD4 T-cell counts in PSP.
- To identify factors associated with disease progression in PSP.
Main Methods:
- Comparative analysis of TREG numbers, phenotypes, and function (including IL-10 production and TREG proliferation) between PSP and progressing children.
- Assessment of IL-7 homeostatic signaling, including IL-7 receptor (CD127) expression and soluble IL-7 receptor levels.
- LASSO modeling to determine independent contributions of TREG activity and IL-7 signaling to CD4 T-cell preservation.
Main Results:
- PSP exhibit higher absolute numbers of TREG with suppressive phenotypes compared to progressing children.
- Central memory TREG (CM TREG) show increased proliferation in PSP, suggesting active immune engagement.
- PSP demonstrate enhanced IL-7 homeostatic signaling via preserved CD127 expression and increased soluble IL-7 receptor.
- Lower frequency of suppressive TREG, reduced CM TREG proliferation, and decreased IL-10 production predict later disease progression.
Conclusions:
- Maintenance of CD4 T-cell counts in PSP is an active process involving robust TREG-mediated immune suppression.
- Enhanced IL-7 homeostatic signaling contributes independently to preserving CD4 T-cells in pediatric HIV.
- These findings highlight TREG function and IL-7 signaling as key determinants of HIV disease course in children.
Abstract:
Pediatric slow progressors (PSP) are rare ART-naïve, HIV-infected children who maintain high CD4 T-cell counts and low immune activation despite persistently high viral loads. Using a well-defined cohort of PSP, we investigated the role of regulatory T-cells (TREG) and of IL-7 homeostatic signaling in maintaining normal-for-age CD4 counts in these individuals. Compared to children with progressive disease, PSP had greater absolute numbers of TREG, skewed toward functionally suppressive phenotypes. As with immune activation, overall T-cell proliferation was lower in PSP, but was uniquely higher in central memory TREG (CM TREG), indicating active engagement of this subset. Furthermore, PSP secreted higher levels of the immunosuppressive cytokine IL-10 than children who progressed. The frequency of suppressive TREG, CM TREG proliferation, and IL-10 production were all lower in PSP who go on to progress at a later time-point, supporting the importance of an active TREG response in preventing disease progression. In addition, we find that IL-7 homeostatic signaling is enhanced in PSP, both through preserved surface IL-7receptor (CD127) expression on central memory T-cells and increased plasma levels of soluble IL-7receptor, which enhances the bioactivity of IL-7. Combined analysis, using a LASSO modeling approach, indicates that both TREG activity and homeostatic T-cell signaling make independent contributions to the preservation of CD4 T-cells in HIV-infected children. Together, these data demonstrate that maintenance of normal-for-age CD4 counts in PSP is an active process, which requires both suppression of immune activation through functional TREG, and enhanced T-cell homeostatic signaling.
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