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Published on: January 22, 2019
KRAS Inhibitor-Induced Cancer Cell Death Enhances Sensitivity to Immune-Mediated Bystander Killing of Drug-Resistant
Mona Tomaschko1, KangBo Ng2, Christopher Moore1
1Oncogene Biology Laboratory, The Francis Crick Institute, London, United Kingdom.
Abstract:
The clinical benefit of therapies targeting the KRAS G12C mutation is substantially limited by the development of resistance through multiple mechanisms. Therefore, to achieve lasting benefit with these therapies, effective strategies to tackle the evolution of drug resistance are required. To investigate this, we developed a preclinical model that mimics the development of resistance to KRAS G12C inhibitors (G12Ci), such as adagrasib and RMC-4998. Treatment of tumors containing a minor subpopulation of resistant cancer cells with G12Ci led to their rapid outgrowth, replacing drug-sensitive cells within a few weeks. However, combining G12Ci with therapies that enhance immune responses, such as anti-PD-1 or SHP2 inhibitors, resulted in the elimination of resistant cells and durable complete responses, even though anti-PD-1 or SHP2 inhibitor monotherapy did not induce regression of resistant tumors in the absence of drug-sensitive cells. This bystander killing of resistant cells following targeting of drug-sensitive cells was dependent on an intact adaptive immune system. Mechanistically, these combination therapies led to profound remodeling of the tumor immune microenvironment, making it less immunosuppressive, and promoted cancer cell death that primed an immune response, with an influx of cytotoxic T lymphocytes recognizing tumor-associated antigens shared between G12Ci-resistant and -sensitive cancer cells. Promotion of immune-mediated bystander elimination of drug-resistant cells may provide a paradigm for tackling the problem of drug resistance in cancer more broadly.
Significance:
Combination therapies that stimulate antitumor immunity promote immune-mediated bystander killing of KRAS-G12C inhibitor resistant subpopulations, providing a strategy to overcome drug resistance that might have relevance in broader therapeutic settings.
Insights
Combining KRAS-G12C inhibitors with immune-boosting therapies eliminates resistant cancer cells. This strategy leverages the adaptive immune system to overcome drug resistance, offering durable complete responses in preclinical models.
Area of Science:
- Oncology
- Immunology
- Molecular Biology
Background:
- KRAS-G12C inhibitors show limited clinical benefit due to resistance.
- Drug resistance evolves through multiple mechanisms, necessitating novel therapeutic strategies.
- Preclinical models are crucial for understanding resistance and developing effective treatments.
Purpose of the Study:
- To investigate strategies for overcoming resistance to KRAS-G12C inhibitors.
- To evaluate the efficacy of combining KRAS-G12C inhibitors with immune-enhancing therapies.
- To elucidate the mechanisms underlying immune-mediated bystander killing of resistant cancer cells.
Main Methods:
- Development of a preclinical model mimicking resistance to KRAS-G12C inhibitors (G12Ci).
- Treatment of tumors with G12Ci alone versus G12Ci combined with anti-PD-1 or SHP2 inhibitors.
- Assessment of tumor response, immune microenvironment modulation, and T-cell infiltration.
- Evaluation of bystander killing dependent on the adaptive immune system.
Main Results:
- KRAS-G12C inhibitors alone led to rapid outgrowth of resistant cells.
- Combination therapy with immune-enhancing agents resulted in durable complete responses.
- Immune-mediated bystander killing of resistant cells was observed, dependent on an intact adaptive immune system.
- Combination therapies remodeled the tumor immune microenvironment, reducing immunosuppression and promoting T-cell infiltration.
Conclusions:
- Combining KRAS-G12C inhibitors with immune-boosting therapies can overcome drug resistance.
- Immune-mediated bystander elimination of resistant cells offers a potential paradigm for broader cancer treatment.
- Targeting KRAS-G12C in conjunction with immunotherapy may lead to lasting clinical benefit.
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