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Updated: Dec 31, 2025

Development and Functional Characterization of Murine Tolerogenic Dendritic Cells
Published on: May 18, 2018
Role of Tumor-Mediated Dendritic Cell Tolerization in Immune Evasion
Nicholas C DeVito1, Michael P Plebanek1, Bala Theivanthiran1
1Division of Medical Oncology, Department of Medicine, Duke Cancer Institute, Durham, NC, United States.
Abstract:
The vast majority of cancer-related deaths are due to metastasis, a process that requires evasion of the host immune system. In addition, a significant percentage of cancer patients do not benefit from our current immunotherapy arsenal due to either primary or secondary immunotherapy resistance. Importantly, select subsets of dendritic cells (DCs) have been shown to be indispensable for generating responses to checkpoint inhibitor immunotherapy. These observations are consistent with the critical role of DCs in antigen cross-presentation and the generation of effective anti-tumor immunity. Therefore, the evolution of efficient tumor-extrinsic mechanisms to modulate DCs is expected to be a potent strategy to escape immunosurveillance and various immunotherapy strategies. Despite this critical role, little is known regarding the methods by which cancers subvert DC function. Herein, we focus on those select mechanisms utilized by developing cancers to co-opt and tolerize local DC populations. We discuss the reported mechanisms utilized by cancers to induce DC tolerization in the tumor microenvironment, describing various parallels between the evolution of these mechanisms and the process of mesenchymal transformation involved in tumorigenesis and metastasis, and we highlight strategies to reverse these mechanisms in order to enhance the efficacy of the currently available checkpoint inhibitor immunotherapies.
Insights
Cancers evade immune responses and immunotherapy by subverting dendritic cells (DCs). Understanding how tumors suppress DCs offers strategies to enhance cancer immunotherapy effectiveness.
Area of Science:
- Immunology
- Oncology
- Cancer Research
Background:
- Metastasis, a major cause of cancer mortality, necessitates immune evasion.
- Many patients resist current immunotherapies due to primary or secondary resistance.
- Dendritic cells (DCs) are crucial for anti-tumor immunity and immunotherapy response.
Purpose of the Study:
- To investigate mechanisms by which cancers subvert dendritic cell (DC) function.
- To explore how developing cancers co-opt and tolerize local DC populations.
- To identify strategies for reversing tumor-induced DC tolerization to improve immunotherapy.
Main Methods:
- Review of literature on cancer-induced DC tolerization mechanisms.
- Analysis of tumor microenvironment interactions affecting DCs.
- Comparison of DC subversion mechanisms with mesenchymal transformation in cancer.
Main Results:
- Cancers employ specific mechanisms to induce tolerization in local dendritic cell (DC) populations.
- These mechanisms share parallels with mesenchymal transformation during tumorigenesis and metastasis.
- Tumor-extrinsic modulation of DCs is a key strategy for immune evasion.
Conclusions:
- Understanding cancer's manipulation of DCs is critical for overcoming immunotherapy resistance.
- Targeting DC tolerization pathways presents a promising strategy to enhance checkpoint inhibitor efficacy.
- Reversing tumor-induced DC suppression can restore anti-tumor immunity.
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