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In Vivo Assay for Detection of Antigen-specific T-cell Cytolytic Function Using a Vaccination Model
Published on: November 28, 2017
An In Vitro Approach to Prime or Boost Human Antigen-Specific CD8+ T Cell Responses: Applications to Vaccine Studies
Hoang Oanh Nguyen1, Mariela P Cabral-Piccin2, Victor Appay1
1Univ. Bordeaux, CNRS, Inserm, ImmunoConcEpT, UMR 5164, ERL 1303, F-33000 Bordeaux, France.
Abstract:
Although vaccine development has primarily focused on inducing neutralizing antibodies, increasing evidence supports an important role of CD8+ T cell responses in vaccine effectiveness. Routine assays, which are mainly based on antibody titers, may therefore not accurately reflect the full immune response elicited by vaccination. Assessing antigen-specific T cell responses upon vaccination poses several challenges. A common issue in studying T cells specific to a vaccine antigen is their low frequency in circulation, which can limit their ex vivo analysis. Moreover, the use of human cell-based models is crucial for studying and optimizing the induction of T cell responses to design effective vaccines. We developed an innovative in vitro approach of human CD8+ T cell priming, based on the rapid mobilization of dendritic cells (DCs) directly from unfractionated peripheral blood mononuclear cells (PBMCs). This simple and original method allows for side-by-side comparisons of multiple test parameters in a standardized system, providing both quantitative and qualitative readouts of primed antigen-specific CD8+ T cells. Here, we discuss the genesis of this approach and its versatile applications, including monitoring antigen-specific T cell responses, evaluating an individual's T cell priming capacity, and conducting preclinical studies on potential adjuvants and vaccine candidates.
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