| Literature DB >> 17306825 |
Julia Neudorfer1, Burkhard Schmidt, Katharina M Huster, Florian Anderl, Matthias Schiemann, Gerd Holzapfel, Thomas Schmidt, Lothar Germeroth, Hermann Wagner, Christian Peschel, Dirk H Busch, Helga Bernhard.
Abstract
The development of MHC/peptide multimers has facilitated the visualization and purification of antigen-specific T cells. However, the persistence of multimers leads to prolonged T cell receptor signaling and subsequently to altered T-cell function. We have recently developed a new type of MHC/peptide multimers, which can be dissociated from the T cell. Herein, we have generated and tested for the first time reversible HLA/peptide multimers, termed Streptamers, for the isolation of human T cells. The Streptamer technique demonstrates the specificity and sensitivity of conventional HLA/peptide tetramers with regards to the sorting of human T lymphocytes. This is shown for T cells directed against immunogenic peptides derived from viral and tumor-associated antigens. We show that antigen-specific cytotoxic T cells remain functionally active following Streptamer dissociation, whereas lytic function and proliferation of the T cells is impaired in the presence of conventional tetramers. These novel HLA/peptide Streptamer reagents allow the isolation of antigen-specific T cells with preserved function and, therefore, facilitate the development of adoptive T cell transfer regimens for the treatment of patients with cancer or infectious diseases.Entities:
Mesh:
Substances:
Year: 2007 PMID: 17306825 DOI: 10.1016/j.jim.2007.01.001
Source DB: PubMed Journal: J Immunol Methods ISSN: 0022-1759 Impact factor: 2.303