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Comprehensive & Cost Effective Laboratory Monitoring of HIV/AIDS: an African Role Model
Published on: November 1, 2010
A systematic comparison of methods to measure HIV-1 specific CD8 T cells
1Laboratoire d'Immunologie Cellulaire et Tissulaire, INSERM U543, Centre Hospitalier Pitié-Salpêtrière, 83 boulevard d l'hôpital, Bâtiment CERVI, 75013 Paris, France.
Insights
Comparing methods to quantify HIV-specific CD8 T cells, this study found tetramer assays detect more cells. ELISpot assays using peptides are more sensitive than those using recombinant vaccinia viruses for evaluating T cell responses.
Area of Science:
- Immunology
- Virology
- Vaccinology
Background:
- Evaluating virus-specific CD8 T cell frequencies is crucial for vaccine development.
- Multiple methods exist, but a systematic comparison is needed to guide selection.
Purpose of the Study:
- To systematically compare different immunological assays for quantifying HIV-specific CD8 T cells.
- To assess the impact of antigen presentation methods on assay results.
- To compare memory and effector CD8 T cell analyses.
Main Methods:
- Compared ELISpot-IFNgamma assay, intracellular IFNgamma staining, and HLA class I tetramer-binding assay.
- Evaluated HIV antigen presentation using recombinant vaccinia viruses (rVVs) and synthetic peptides.
- Utilized chromium release assay (CRA) for memory CTLs and ELISpot for effector CD8 cells.
Main Results:
- Flow cytometry and ELISpot yielded similar CD8 T cell frequencies.
- Tetramer-binding assay detected significantly more HIV-specific CD8 T cells.
- ELISpot assays with peptides were more sensitive than those with rVVs.
- Peptide pools and individual peptides gave comparable ELISpot results.
- CRA and ELISpot showed comparable antigen recognition profiles in two-thirds of cases.
Conclusions:
- Tetramer assays offer higher sensitivity for detecting HIV-specific CD8 T cells.
- Peptide-based ELISpot assays are more sensitive than rVV-based assays.
- Results guide the selection of optimal immunological methods for vaccine-induced CD8 T cell evaluation.
Abstract:
Several methods are now available to evaluate the frequencies of virus-specific CD8 T cells but require a systematic comparison to help at choosing the best strategy for evaluation. First, we compared the ELISpot-IFNgamma assay, intracellular IFNgamma staining and HLA class I tetramer-binding assay to quantify the HIV-specific CD8 T cells. Second, we determined the frequency of recognition of HIV antigens and evaluated whether the mode of antigen presentation might influence the results: We compared HIV antigen presentation in the same ELISpot-IFNgamma assays by using recombinant vaccinia viruses (rVVs) encoding for HIV-LAI Gag, Pol, Env, Nef, Tat and Vif proteins, or a panel of 49 synthetic 8-11 amino acid length peptides tested either individually or pooled. Third, we compared the antigens recognized by memory CTL analysis using chromium release assay (CRA) on CTL lines and by effector CD8 cell analysis using ELISpot assay. Our results show that: (1) Flow cytometry and ELISpot assay measuring IFNgamma production give the same frequency of HIV-specific CD8 T cells; (2) tetramer-binding assay detects more HIV-specific CD8 T cells than other methods; (3) pools of optimal peptides and sum frequencies of individual optimal peptides give similar results in ELISpot assay; (4) ELISpot assays using peptides are more sensitive than those using rVV; and (5) CRA and ELISpot assay when using rVV provide a comparable profile of HIV antigen recognition by memory CTLs (CRA) and effector CTLs (ELISpot) in two thirds cases. These results have important implications for the choice of immunological methods to evaluate CD8 T cells responses to vaccines.
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