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Detection of Lung Tumor Progression in Mice by Ultrasound Imaging
Published on: February 27, 2020
An Immunogenic Model of KRAS-Mutant Lung Cancer Enables Evaluation of Targeted Therapy and Immunotherapy Combinations
Jesse Boumelha1, Sophie de Carné Trécesson1, Emily K Law2,3,4,5
1Oncogene Biology Laboratory, Francis Crick Institute, London, United Kingdom.
Abstract:
Mutations in oncogenes such as KRAS and EGFR cause a high proportion of lung cancers. Drugs targeting these proteins cause tumor regression but ultimately fail to elicit cures. As a result, there is an intense interest in how to best combine targeted therapies with other treatments, such as immunotherapies. However, preclinical systems for studying the interaction of lung tumors with the host immune system are inadequate, in part due to the low tumor mutational burden in genetically engineered mouse models. Here we set out to develop mouse models of mutant KRAS-driven lung cancer with an elevated tumor mutational burden by expressing the human DNA cytosine deaminase, APOBEC3B, to mimic the mutational signature seen in human lung cancer. This failed to substantially increase clonal tumor mutational burden and autochthonous tumors remained refractory to immunotherapy. However, establishing clonal cell lines from these tumors enabled the generation of an immunogenic syngeneic transplantation model of KRAS-mutant lung adenocarcinoma that was sensitive to immunotherapy. Unexpectedly, antitumor immune responses were not directed against neoantigens but instead targeted derepressed endogenous retroviral antigens. The ability of KRASG12C inhibitors to cause regression of KRASG12C -expressing tumors was markedly potentiated by the adaptive immune system, highlighting the importance of using immunocompetent models for evaluating targeted therapies. Overall, this model provides a unique opportunity for the study of combinations of targeted and immunotherapies in immune-hot lung cancer.
Significance:
This study develops a mouse model of immunogenic KRAS-mutant lung cancer to facilitate the investigation of optimal combinations of targeted therapies with immunotherapies.
Insights
Researchers developed a new mouse model for KRAS-mutant lung cancer. This model is sensitive to immunotherapy and targets retroviral antigens, aiding in the study of targeted and immune therapies.
Area of Science:
- Oncology
- Immunology
- Genetics
Background:
- Mutations in KRAS and EGFR drive lung cancer, but targeted therapies offer limited cures.
- Preclinical models struggle to adequately study lung tumor-host immune interactions due to low mutational burden.
- Existing models are insufficient for evaluating combined targeted and immunotherapies.
Purpose of the Study:
- To develop mouse models of KRAS-mutant lung cancer with increased mutational burden.
- To create an immunogenic syngeneic transplantation model for KRAS-mutant lung adenocarcinoma.
- To investigate the efficacy of combining targeted therapies with immunotherapies in lung cancer.
Main Methods:
- Engineered mouse models expressing human APOBEC3B to increase tumor mutational burden.
- Established clonal cell lines from tumors to create a syngeneic transplantation model.
- Utilized KRASG12C inhibitors and assessed responses in immunocompetent models.
Main Results:
- Attempts to increase mutational burden via APOBEC3B were insufficient for immunotherapy response in autochthonous tumors.
- A syngeneic transplantation model derived from these tumors proved immunogenic and immunotherapy-sensitive.
- Antitumor responses targeted endogenous retroviral antigens, not neoantigens.
- Adaptive immunity significantly potentiated KRASG12C inhibitor efficacy.
Conclusions:
- A novel, immunogenic mouse model of KRAS-mutant lung adenocarcinoma was established.
- This model is suitable for studying combinations of targeted therapies and immunotherapies.
- Immune responses in this model target retroviral antigens, offering new therapeutic avenues.
- Immunocompetent models are crucial for evaluating targeted therapies in lung cancer.
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