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An In Vitro Model for Measuring Immune Responses to Malaria in the Context of HIV Co-infection
Published on: October 6, 2015
Correlates of delayed disease progression in HIV-1-infected Kenyan children
Rana Chakraborty1, Anne-Sophie Morel, Julian K Sutton
1Pediatric Infectious Diseases Unit, St. George's Hospital, London, United Kingdom. rchakrab@sghms.ac.uk
Insights
Long-term survival in HIV-1-infected children is linked to strong CD4(+) T cell responses. These responses, crucial for immune function, appear more important than host genetics or viral factors in delaying disease progression in pediatric HIV.
Area of Science:
- Immunology
- Virology
- Pediatric Infectious Diseases
Background:
- Most untreated HIV-1-infected children in Africa succumb before age three.
- Mechanisms of non-progression in pediatric HIV-1 infection remain poorly understood.
- Long-term non-progressors are exceptionally rare in this population.
Purpose of the Study:
- To investigate correlates of delayed human immunodeficiency virus type 1 (HIV-1) disease progression in African children.
- To characterize HIV-1-specific T cell responses (CD4(+) and CD8(+)) in different progression subgroups.
- To explore the roles of host genetics and viral factors in non-progression.
Main Methods:
- Clinical characterization and subgroup assignment of 51 HIV-1-infected African children.
- Immune response analysis using ELISPOT, tetramer staining, and FACS for CD4(+) and CD8(+) T cells.
- Genotyping for host genetic factors, sequencing of HIV-1 nef gene, and thymic output assessment (TREC assays).
Main Results:
- HIV-1-specific CD8(+) T cell responses were present across all progression groups.
- Long-term non-progressors exhibited significantly higher HIV-1-specific CD4(+) T helper cell responses compared to other groups.
- No protective host genotypes or attenuating HIV-1 nef deletions were identified as key factors for delayed progression.
Conclusions:
- Strong HIV-1-specific CD4(+) T cell responses are a key attribute of long-term non-progressors among HIV-1-infected children.
- The presence of robust HIV-1-specific helper T cells may be critical in delaying disease progression in the absence of identified host genetic or viral protective factors.
- These findings highlight the importance of cellular immunity in managing pediatric HIV-1 infection.
Abstract:
Without treatment most HIV-1-infected children in Africa die before their third birthday (>89%) and long-term nonprogressors are rare. The mechanisms underlying nonprogression in HIV-1-infected children are not well understood. In the present study, we examined potential correlates of delayed HIV disease progression in 51 HIV-1-infected African children. Children were assigned to progression subgroups based on clinical characterization. HIV-1-specific immune responses were studied using a combination of ELISPOT assays, tetramer staining, and FACS analysis to characterize the magnitude, specificity, and functional phenotype of HIV-1-specific CD8(+) and CD4(+) T cells. Host genetic factors were examined by genotyping with sequence-specific primers. HIV-1 nef gene sequences from infecting isolates from the children were examined for potential attenuating deletions. Thymic output was measured by T cell rearrangement excision circle assays. HIV-1-specific CD8(+) T cell responses were detected in all progression groups. The most striking attribute of long-term survivor nonprogressors was the detection of HIV-1-specific CD4(+) Th responses in this group at a magnitude substantially greater than previously observed in adult long-term nonprogressors. Although long-term survivor nonprogressors had a significantly higher percentage of CD45RA(+)CD4(+) T cells, nonprogression was not associated with higher thymic output. No protective genotypes for known coreceptor polymorphisms or large sequence deletions in the nef gene associated with delayed disease progression were identified. In the absence of host genotypes and attenuating mutations in HIV-1 nef, long-term surviving children generated strong CD4(+) T cell responses to HIV-1. As HIV-1-specific helper cells support anti-HIV-1 effector responses in active disease, their presence may be important in delaying disease progression.
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