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HLA-Ig Based Artificial Antigen Presenting Cells for Efficient ex vivo Expansion of Human CTL
Published on: April 11, 2011
Dendritic cells acquire antigens from live cells for cross-presentation to CTL
L A Harshyne1, S C Watkins, A Gambotto
1Department of Infectious Diseases and Microbiology, Graduate School of Public Health, University of Pittsburgh, Pittsburgh, PA 15261, USA.
Insights
Dendritic cells (DCs) acquire antigens from healthy cells, not just dead ones. This cell-to-cell transfer mechanism expands immune responses without direct infection.
Area of Science:
- Immunology
- Cell Biology
Background:
- Dendritic cells (DCs) are crucial for initiating adaptive immunity.
- DCs typically present antigens (Ag) from dead or dying cells to T cells.
- The mechanisms of Ag acquisition by DCs from healthy cells remain incompletely understood.
Purpose of the Study:
- To investigate whether dendritic cells (DCs) can acquire antigens from healthy, living cells.
- To elucidate the mechanisms and immunological relevance of Ag acquisition from live cells by DCs.
Main Methods:
- Primate model studies and in vitro coculture assays.
- Live-cell imaging techniques to observe membrane transfer.
- Analysis of antigen cross-presentation to cytotoxic T lymphocytes (CTLs).
Main Results:
- DCs rapidly acquire plasma membrane and intracellular proteins from other live cells, including other DCs, macrophages, B cells, and T cells.
- This acquisition is cell contact-dependent and primarily performed by immature DCs.
- DCs, but not macrophages, acquired a melanoma antigen from live DCs and cross-presented it to MHC class I-restricted CTLs.
Conclusions:
- DCs actively acquire antigens from healthy, living cells, expanding their Ag repertoire beyond apoptotic material.
- This novel mechanism of Ag acquisition from live cells provides a pathway for DC to present Ag without direct infection.
- This process may play a significant role in regulating and expanding immune responses in vivo.
Abstract:
Dendritic cells (DC) can readily capture Ag from dead and dying cells for presentation to MHC class I-restricted CTL. We now show by using a primate model that DC also acquire Ag from healthy cells, including other DC. Coculture assays showed that fluorescently labeled plasma membrane was rapidly and efficiently transferred between DC, and transfer of intracellular proteins was observed to a lesser extent. Acquisition of labeled plasma membrane and intracellular protein was cell contact-dependent and was primarily a function of immature DC, whereas both immature and CD40L-matured DC could serve as donors. Moreover, immature DC could acquire labeled plasma membrane and intracellular proteins from a wide range of hemopoietic cells, including macrophages, B cells, and activated T cells. Notably, macrophages, which readily phagocytose apoptotic bodies, were very inefficient at acquiring labeled plasma membrane and intracellular proteins from other live macrophages or DC. With live-cell imaging techniques, we demonstrate that individual DC physically extract plasma membrane from other DC, generating endocytic vesicles of up to 1 microm in diameter. Finally, DC but not macrophages acquired an endogenous melanoma Ag expressed by live DC and cross-presented Ag to MHC class I-restricted CTL, demonstrating the immunological relevance of our finding. These data show for the first time that DC readily acquire Ag from other live cells. We suggest that Ag acquisition from live cells may provide a novel mechanism whereby DC can present Ag in the absence of direct infection, and may serve to expand and regulate the immune response in vivo.
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