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An Efficient Combination Immunotherapy for Primary Liver Cancer by Harmonized Activation of Innate and Adaptive
Liang Wen1,2,3, Bing Xin1, Panyisha Wu1,2
1Department of Pathology, Division of Biological Sciences and Moores Cancer Center, University of California at San Diego, La Jolla, CA.
Abstract:
Immunotherapy with checkpoint inhibitors for liver cancer, while active in many clinical trials worldwide, may have uncertain outcomes due to the unique immunotolerant microenvironment of the liver. In previous experiments, we unexpectedly identified a robust liver tumor-preventive effect of a synthetic double-stranded RNA, polyinosinic-polycytidylic acid (polyIC), in mice. Herein we further demonstrate that polyIC given at the precancer stage effectively prevented liver tumorigenesis by activating natural killer cells, macrophages, and some T-cell subsets; no inhibitory effect was observed on tumor progression if injected after tumor initiation. Nevertheless, polyIC administration potently induced programmed death ligand 1 (PD-L1) expression in liver sinusoid endothelial cells, which prompted us to test a combined treatment of polyIC and PD-L1 antibody (Ab). Although injecting PD-L1 Ab alone did not show any therapeutic effect, injection of polyIC sensitized the hepatic response to PD-L1 blockade. Combination of polyIC and PD-L1 Ab resulted in sustained accumulation of active cluster of differentiation 8 cytotoxic T cells and robust liver tumor suppression and conferred a survival advantage in mice. These preclinical data in animal models suggest that, despite the low efficacy of PD-L1/PD-1 blockade alone, careful design of mechanism-based combinatorial immunotherapeutic protocols may shift the paradigm in liver cancer treatment by coordinating maximal activation of multiple innate and adaptive immune functions. Conclusion: We provide proof of principle for the development of an efficient prevention strategy of liver tumorigenesis and a powerful combination immunotherapy for primary liver cancer.
Insights
Synthetic double-stranded RNA (polyIC) prevents liver tumors by activating immune cells. Combining polyIC with PD-L1 blockade enhances anti-tumor immunity and survival in preclinical models.
Area of Science:
- Immunology
- Oncology
- Virology
Background:
- The liver's unique microenvironment poses challenges for cancer immunotherapy.
- Checkpoint inhibitors show variable efficacy in liver cancer clinical trials.
Purpose of the Study:
- To investigate the liver tumor-preventive effects of polyinosinic-polycytidylic acid (polyIC).
- To evaluate the combination of polyIC and PD-L1 blockade for liver cancer treatment.
Main Methods:
- Preclinical mouse models of liver cancer.
- Administration of polyIC at the precancer stage.
- Combination therapy with polyIC and anti-PD-L1 antibody.
Main Results:
- PolyIC prevented liver tumorigenesis by activating natural killer cells, macrophages, and T-cells.
- PolyIC induced PD-L1 expression, sensitizing tumors to PD-L1 blockade.
- Combination therapy led to sustained CD8+ T cell accumulation, tumor suppression, and improved survival.
Conclusions:
- PolyIC is a promising agent for liver cancer prevention.
- Combination immunotherapy with polyIC and PD-L1 blockade offers a potent strategy for primary liver cancer treatment.
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