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Regulation of antigen presentation machinery in human dendritic cells by recombinant adenovirus
Authors:Lazar Vujanovic  Theresa L Whiteside  Douglas M Potter  Jessica Chu  Soldano Ferrone  Lisa H Butterfield
Institution:(1) Department of Medicine, Division of Hematology/Oncology, University of Pittsburgh Cancer Institute, Pittsburgh, PA, USA;(2) Departments of Pathology and Otolaryngology, University of Pittsburgh, Pittsburgh, PA, USA;(3) Department of Immunology, University of Pittsburgh, Pittsburgh, PA, USA;(4) UPCI Biostatistics, Pittsburgh, PA, USA;(5) Department of Surgery and Immunology, University of Pittsburgh, 1.32d Hillman Cancer Center, 5117 Centre Avenue, Pittsburgh, PA 15213, USA
Abstract:Recombinant adenoviral vectors (AdV) are potent vehicles for antigen engineering of dendritic cells (DC). DC engineered with AdV to express full length tumor antigens are capable stimulators of antigen-specific polyclonal CD8+ and CD4+ T cells. To determine the impact of AdV on the HLA class I antigen presentation pathway, we investigated the effects of AdV transduction on antigen processing machinery (APM) components in human DC. Interactions among AdV transduction, maturation, APM regulation and T cell activation were investigated. The phenotype and cytokine profile of DC transduced with AdV was intermediate, between immature (iDC) and matured DC (mDC). Statistically significant increases in expression were observed for peptide transporters TAP-1 and TAP-2, and HLA class I peptide-loading chaperone ERp57, as well as co-stimulatory surface molecule CD86 due to AdV transduction. AdV transduction enhanced the expression of APM components and surface markers on mDC, and these changes were further modulated by the timing of DC maturation. Engineering of matured DC to express a tumor-associated antigen stimulated a broader repertoire of CD8+ T cells, capable of recognizing immunodominant and subdominant epitopes. These data identify molecular changes in AdV-transduced DC (AdV/DC) that could influence T cell priming and should be considered in design of cancer vaccines.
Keywords:Dendritic cells  Human  Antigen presentation/processing  Gene therapy  Tumor immunity
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