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Published on: October 30, 2013
Sensitizing immune unresponsive colorectal cancers to immune checkpoint inhibitors through MAVS overexpression
Bin-Jin Hwang1, Li-Chung Tsao1, Chaitanya R Acharya1
1Surgery, Duke University, Durham, North Carolina, USA.
Background:
The majority of colorectal carcinomas (CRCs) are insensitive to programmed death protein-1/programmed death-ligand 1 (anti-PD-1/PD-L1) immune checkpoint inhibitor (ICI) antibodies. While there are many causes for ICI insensitivity, recent studies suggest that suppression of innate immune gene expression in tumor cells could be a root cause of this insensitivity and an important factor in the evolution of tumor immunosuppression.
Methods:
We first assessed the reduction of mitochondrial antiviral signaling gene (MAVS) and related RIG-I pathway gene expression in several patient RNA expression datasets. We then engineered MAVS expressing tumor cells and tested their ability to elicit innate and adaptive anti-tumor immunity using both in vitro and in vivo approaches, which we then confirmed using MAVS expressing viral vectors. Finally, we observed that MAVS stimulated PD-L1 expression in multiple cell types and then assessed the combination of PD-L1 ICI antibodies with MAVS tumor expression in vivo.
Results:
MAVS was significantly downregulated in CRCs, but its re-expression could stimulate broad cellular interferon-related responses, in both murine and patient-derived CRCs. In vivo, local MAVS expression elicited significant anti-tumor responses in both immune-sensitive and insensitive CRC models, through the stimulation of an interferon responsive axis that provoked tumor antigen-specific adaptive immunity. Critically, we found that tumor-intrinsic MAVS expression triggered systemic adaptive immune responses that enabled abscopal CD8 +T cell cytotoxicity against distant CRCs. As MAVS also induced PD-L1 expression, we further found synergistic anti-tumor responses in combination with anti-PD-L1 ICIs.
Conclusion:
These data demonstrate that intratumoral MAVS expression results in local and systemic tumor antigen-specific T cell responses, which could be combined with PD-L1 ICI to permit effective anti-tumor immunotherapy in ICI resistant cancers.
Insights
Mitochondrial antiviral signaling gene (MAVS) re-expression in colorectal cancer (CRC) stimulates anti-tumor immunity and enhances response to immune checkpoint inhibitors (ICIs). This approach shows promise for treating ICI-resistant cancers.
Area of Science:
- Immunology
- Oncology
- Molecular Biology
Background:
- Colorectal carcinomas (CRCs) often resist anti-PD-1/PD-L1 immune checkpoint inhibitors (ICIs).
- Suppressed innate immune gene expression in tumor cells may drive ICI resistance and tumor immunosuppression.
Purpose of the Study:
- To investigate the role of mitochondrial antiviral signaling gene (MAVS) in CRC immunity.
- To evaluate MAVS re-expression as a strategy to overcome ICI resistance.
Main Methods:
- Assessed MAVS and RIG-I pathway gene expression in CRC datasets.
- Engineered MAVS-expressing tumor cells for in vitro and in vivo studies.
- Tested MAVS-expressing viral vectors and combination therapy with anti-PD-1/PD-L1 ICIs.
Main Results:
- MAVS was downregulated in CRCs; re-expression induced interferon-related responses in murine and patient-derived CRCs.
- In vivo, MAVS expression triggered local and systemic anti-tumor immunity, including abscopal CD8+ T cell responses.
- MAVS induced PD-L1 expression, leading to synergistic anti-tumor effects when combined with anti-PD-L1 ICIs.
Conclusions:
- Intratumoral MAVS expression generates tumor antigen-specific T cell responses, both locally and systemically.
- Combining MAVS expression with anti-PD-L1 ICIs offers a potential immunotherapy strategy for ICI-resistant colorectal cancers.
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