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Published on: August 11, 2018
Age-Stratified T Cell Responses in Children Infected with Mycobacterium tuberculosis
Alexandra Dreesman1, Véronique Corbière1, Violette Dirix1
1Laboratory of Vaccinology and Mucosal Immunity, Université Libre de Bruxelles (U.L.B.), Brussels, Belgium.
Insights
Identifying tuberculosis (TB) biomarkers in children is crucial. New age-specific T cell markers can differentiate active TB from latent infection, aiding early diagnosis in young children.
Area of Science:
- Immunology
- Pediatric Infectious Diseases
- Microbiology
Background:
- Tuberculosis (TB) progression risk is higher in children than adults.
- Differentiating active TB (aTB) from latent TB infection (LTBI) in children, especially the very young, is challenging.
- Urgent need for biomarkers to distinguish aTB from LTBI in pediatric populations.
Purpose of the Study:
- To identify Mycobacterium tuberculosis-specific T cell subsets correlating with clinical outcomes in children.
- To investigate age-related differences in T cell responses for TB diagnosis.
- To find novel biomarkers for differentiating active TB from latent infection in young children.
Main Methods:
- Enrolled 87 children exposed to M. tuberculosis, classifying them as aTB, LTBI, or uninfected.
- Analyzed CD4+ T cell cytokine profiles (IFN-γ, TNF-α, IL-2, IL-17) via flow cytometry.
- Stimulated T cells with mycobacterial antigens: PPD, ESAT-6, and HBHA.
Main Results:
- Age-specific T cell responses differentiated aTB from LTBI.
- In children aged 3-15 years, the ratio of ESAT-6-induced IFN-γ+/TNF-α+ CD4+ T cells distinguished aTB from LTBI.
- In children <3 years, HBHA-induced IL-17+ CD4+ T cells identified LTBI, unlike in aTB cases.
Conclusions:
- Single-cell T cell analysis reveals age-dependent immune responses to mycobacterial antigens.
- HBHA-induced IL-17 production by CD4+ T cells may be a protective correlate in children <3 years.
- Age-related diagnostic markers can distinguish between LTBI and aTB in children.
Abstract:
Tuberculosis (TB) in young children differs from adult TB in that the risk of rapid progression to active TB (aTB) is higher in children than in adults. The reasons for this increased risk are not fully understood. Early differentiation remains difficult between children at risk to develop aTB from those who will remain healthy and develop a latent TB infection (LTBI). Biomarkers to differentiate aTB from LTBI in children, especially in very young children, are urgently needed. To identify M. tuberculosis-specific functional T cell subsets related to clinical manifestations in children, we enrolled 87 children exposed to M. tuberculosis. After standard clinical assessment, the children were classified as aTB, LTBI, or uninfected. Their CD4+ T cell cytokine profiles (IFN-γ, TNF-α, IL-2, IL-17) were analyzed at the single-cell level by flow cytometry after stimulation with three mycobacterial antigens, purified protein derivative (PPD), early-secreted-antigenic target-6 (ESAT-6), or heparin-binding hemagglutinin (HBHA). This approach identified age-related discriminative markers between aTB and LTBI. Whereas among the 3- to 15-year-old children, an excellent discrimination between aTB and LTBI was provided by comparing the ratio between the proportions of ESAT-6-induced IFN-γsingle+ and ESAT-6-induced TNF-αsingle+CD4+ T lymphocytes, this was not the case for children younger than 3 years. By contrast, in this group (<3years), the analysis of HBHA-induced IL-17single+CD4+ T lymphocytes allowed us to identify children with LTBI by the high proportion of this cellular lymphocyte subset, whereas this was not the case for children with aTB. The analysis at the single-cell level of T cell immune responses induced by mycobacterial antigens are, thus, different in infected children younger or older than 3 years of age. HBHA-induced IL-17 production by CD4+ T lymphocytes was associated with protection only in children under 3 years who are at high risk for rapid progression to aTB. This suggests that the HBHA-induced IL-17 production by CD4+ T lymphocytes is a potential new correlate of protection against M. tuberculosis in humans, and that the distinction between children with LTBI and those with aTB is possible based on age-related diagnostic markers.
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