Immunoprevention of KRAS-driven lung adenocarcinoma by a multipeptide vaccine
Jing Pan1, Qi Zhang1, Shizuko Sei2
1Cancer Center and Department of Pharmacology & Toxicology, Medical College of Wisconsin, Milwaukee, WI, USA.
Abstract:
Lung cancer remains the leading cause of cancer death worldwide. Mutations in KRAS are detected in up to 30% of lung cancer cases. No effective therapies specifically targeting mutant KRAS have been developed. Vaccination against KRAS mutants is one of the venues of active exploration. The present study evaluated both immunogenicity and antitumor efficacy of a newly formulated multipeptide vaccine targeting multiple epitopes of the KRAS molecule. The formulated vaccine contained top four peptides, which elicited the strongest immunologic response and showed 100% sequence homology between human and mouse. The multipeptide KRAS vaccine was tested in an inducible CCSP-TetO-KRASG12D mouse model, where the vaccine was administered prior to activating the mutant KRAS protein. The KRAS peptide vaccine exhibited striking efficacy, reducing tumor number and tumor burden by >80% when compared with adjuvant alone. Splenocytes collected from vaccinated animals showed a robust immunologic response to the immunizing peptides. Furthermore, in vitro stimulation of these splenocytes by the vaccinated peptides resulted in the secretion of cytokines indicative of Th1 responses but with minimal secretion of Th2-related cytokines. The multipeptide KRAS vaccine was immunogenic and efficacious in the primary prevention of KRAS-induced lung cancer, indicating that the approach potentially can be used to prevent other KRAS-driven cancers, either alone or in combination with other modalities.
Insights
A novel multipeptide KRAS vaccine shows significant promise for preventing KRAS-driven lung cancer. This KRAS vaccine demonstrated over 80% efficacy in reducing tumors and a robust immune response in preclinical models.
Area of Science:
- Oncology
- Immunology
- Molecular Biology
Background:
- Lung cancer is a leading global cause of cancer mortality.
- KRAS mutations are prevalent in up to 30% of lung cancer cases.
- Targeted therapies for mutant KRAS remain limited.
Purpose of the Study:
- To evaluate the immunogenicity and antitumor efficacy of a novel multipeptide vaccine targeting KRAS.
- To assess the vaccine's potential in preventing KRAS-driven lung cancer.
Main Methods:
- A multipeptide vaccine containing four top immunogenic KRAS peptides was formulated.
- The vaccine was tested in an inducible KRASG12D mouse model.
- Immunogenicity was assessed via splenocyte analysis and cytokine profiling (Th1/Th2 responses).
Main Results:
- The KRAS peptide vaccine demonstrated over 80% efficacy in reducing tumor number and burden.
- Vaccinated animals exhibited a robust immune response to the KRAS peptides.
- In vitro studies showed a Th1-biased cytokine response with minimal Th2 activity.
Conclusions:
- The multipeptide KRAS vaccine is immunogenic and efficacious in preventing KRAS-induced lung cancer.
- This approach holds potential for preventing other KRAS-driven cancers, possibly in combination therapies.
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