• Title of article

    Molecular and Cellular Mechanisms of Antitumor Immune Response Activation by Dendritic Cells

  • Author/Authors

    Markov, O.V. Institute of Chemical Biology and Fundamental Medicine, russia , Mironova, N.L. Institute of Chemical Biology and Fundamental Medicine, russia , Vlasov, V.V. Institute of Chemical Biology and Fundamental Medicine, russia , Zenkova, M.A Institute of Chemical Biology and Fundamental Medicine, russia

  • Pages
    14
  • From page
    17
  • To page
    30
  • Abstract
    Dendritic cells (DCs) play a crucial role in the initiation and regulation of the antitumor immune re-sponse. Already , DC-based antitumor vaccines have been thoroughly explored both in animal tumor models and in clinical trials. DC-based vaccines are commonly produced from DC progenitors isolated from peripheral blood or bone marrow by culturing in the presence of cytokines, followed by loading the DCs with tumor-specific anti-gens, such as DNA, RNA, viral vectors, or a tumor cell lysate. However, the efficacy of DC-based vaccines remains low. Undoubtedly, a deeper understanding of the molecular mechanisms by which DCs function would allow us to enhance the antitumor efficacy of DC-based vaccines in clinical applications. This review describes the origin and major subsets of mouse and human DCs, as well as the differences between them. The cellular mechanisms of presentation and cross-presentation of exogenous antigens by DCs to T cells are described. We discuss intra-cellular antigen processing in DCs, cross-dressing, and the acquisition of the antigen cross-presentation function. A particular section in the review describes the mechanisms of tumor escape from immune surveillance through the suppression of DCs functions.
  • Farsi abstract
    فاقد چكيده فارسي
  • Keywords
    dendritic cells , subsets , antigen presentation and cross-presentation , proteasome , tumor immuno-suppression
  • Journal title
    Acta Naturae
  • Serial Year
    2016
  • Record number

    2616082