| Literature DB >> 27564267 |
Magdalena Nauerth1, Christian Stemberger1,2, Fabian Mohr1, Bianca Weißbrich1, Matthias Schiemann1, Lothar Germeroth2, Dirk H Busch3,4,5.
Abstract
High epitope-specific sensitivity of CD8(+) T cells is required for optimal immune protection against intracellular pathogens as well as certain malignancies. The quality of antigen recognition of CD8(+) T cells is usually described as "avidity" to its cognate peptide MHCI complex. T cell avidity is mainly dependent on the structural qualities of the T cell receptor (TCR), as convincingly demonstrated by recombinant TCR re-expression experiments. Based on reversible MHCI multimer staining and koff -rate measurements of monomeric peptide MHCI complexes, we recently established a microscopic assay for determining the structural avidity of individual CD8(+) T cells. Here we demonstrate that this assay can be adapted for rapid flow-cytometric avidity screening of epitope-specific T cell populations. Furthermore, we show that-in combination with conventional nonreversible MHCI multimer staining-even very small epitope-specific CD8(+) T cell populations can be analyzed directly ex vivo without the need for previous TCR cloning or T cell sorting. This simplified approach provides highly accurate mean TCR-ligand koff -rate values for poly- or oligoclonal T cell populations and is ideally suited for high-throughput applications in basic research as well as clinical settings.Entities:
Keywords: MHC multimer double staining; T cell functionality; T cell therapy; TCR-ligand-koff-rate; direct avidity screening; dissociation kinetics; online injection; structural TCR avidity; temperature controlled analysis; uninterrupted acquisition
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Year: 2016 PMID: 27564267 DOI: 10.1002/cyto.a.22933
Source DB: PubMed Journal: Cytometry A ISSN: 1552-4922 Impact factor: 4.355