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Updated: May 21, 2026

An Efficient and High Yield Method for Isolation of Mouse Dendritic Cell Subsets
Published on: April 18, 2016
Dendritic cell editing by activated natural killer cells results in a more protective cancer-specific immune response
Barbara Morandi1, Lorenzo Mortara, Laura Chiossone
1Department of Experimental Medicine, University of Genoa, Genoa, Italy.
Abstract:
Over the last decade, several studies have extensively reported that activated natural killer (NK) cells can kill autologous immature dendritic cells (DCs) in vitro, whereas they spare fully activated DCs. This led to the proposal that activated NK cells might select a more immunogenic subset of DCs during a protective immune response. However, there is no demonstration that autologous DC killing by NK cells is an event occurring in vivo and, consequently, the functional relevance of this killing remains elusive. Here we report that a significant decrease of CD11c(+) DCs was observed in draining lymph nodes of mice inoculated with MHC-devoid cells as NK cell targets able to induce NK cell activation. This in vivo DC editing by NK cells was perforin-dependent and it was functionally relevant, since residual lymph node DCs displayed an improved capability to induce T cell proliferation. In addition, in a model of anti-cancer vaccination, the administration of MHC-devoid cells together with tumor cells increased the number of tumor-specific CTLs and resulted in a significant increase in survival of mice upon challenge with a lethal dose of tumor cells. Depletion of NK cells or the use of perforin knockout mice strongly decreased the tumor-specific CTL expansion and its protective role against tumor cell challenge. As a whole, our data support the hypothesis that NK cell-mediated DC killing takes place in vivo and is able to promote expansion of cancer-specific CTLs. Our results also indicate that cancer vaccines could be improved by strategies aimed at activating NK cells.
Insights
Natural killer (NK) cells eliminate specific dendritic cells (DCs) in vivo, enhancing the immune response. This NK cell-mediated DC editing improves T cell proliferation and cancer vaccine efficacy.
Area of Science:
- Immunology
- Cell Biology
- Cancer Research
Background:
- Activated natural killer (NK) cells selectively kill immature dendritic cells (DCs) in vitro.
- This suggests NK cells may select for more immunogenic DCs, but in vivo evidence was lacking.
- The functional significance of NK cell-mediated DC killing in vivo remained unclear.
Purpose of the Study:
- To investigate if NK cell-mediated killing of DCs occurs in vivo.
- To determine the functional relevance of this in vivo DC editing.
- To explore the potential of activating NK cells for cancer immunotherapy.
Main Methods:
- Mice were inoculated with MHC-devoid cells to activate NK cells and target DCs.
- NK cell depletion and perforin knockout models were used to assess NK cell dependency.
- T cell proliferation and anti-cancer vaccination models were employed to evaluate functional outcomes.
Main Results:
- A significant reduction in CD11c(+) DCs was observed in lymph nodes in vivo, dependent on NK cell activation and perforin.
- Residual DCs showed enhanced capacity to stimulate T cell proliferation.
- Administration of NK cell-activating agents with tumor cells boosted tumor-specific CTLs and improved survival.
Conclusions:
- NK cell-mediated DC killing occurs in vivo and is functionally relevant.
- This process enhances the expansion of cancer-specific cytotoxic T lymphocytes (CTLs).
- Activating NK cells represents a promising strategy for improving cancer vaccines.
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