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The next-generation KRAS inhibitors…What comes after sotorasib and adagrasib?
Yuko Oya1, Kazuyoshi Imaizumi1, Tetsuya Mitsudomi2
1Department of Respiratory Medicine, Fujita Health University, Japan.
Abstract:
The Kirsten rat sarcoma viral oncogene homolog (KRAS) is one of the first driver oncogenes identified in human cancer in the early 1980s. However, it has been deemed 'undruggable' for nearly four decades until the discovery of KRAS G12C covalent inhibitors, which marked a pivotal breakthrough. Currently, sotorasib and adagrasib have been approved by the US FDA to treat patients with non-small cell lung cancer (NSCLC) harboring KRAS G12C mutation. However, their efficacy is somewhat limited compared to that of other targeted therapies owing to intrinsic resistance or early acquisition of resistance. While G12C is the predominant subtype of KRAS mutations in NSCLC, G12D/V is prevalent in colorectal and pancreatic cancers. These facts have spurred active research to develop more potent KRAS G12C inhibitors as well as inhibitors targeting non-G12C KRAS mutations. Novel approaches, such as molecular shielding or targeted protein degradation, are also under development. Combining KRAS inhibitors with inhibitors of the receptor-tyrosine kinase-RAS-mitogen-activated protein kinase (MAPK) pathway is underway to counteract redundant feedback mechanisms. Additionally, immunological approaches utilizing T-cell receptor (TCR)-engineered T cell therapy or vaccines, and Hapimmune antibodies are ongoing. This review delineates the recent advancements in KRAS inhibitor development in the post-sotorasib/adagrasib era, with a focus on NSCLC.
Insights
Targeting KRAS mutations, once considered undruggable, has advanced with new inhibitors for non-small cell lung cancer (NSCLC). Research now focuses on overcoming resistance and developing therapies for other KRAS mutations.
Area of Science:
- Oncology
- Molecular Biology
- Drug Discovery
Background:
- Kirsten rat sarcoma viral oncogene homolog (KRAS) is a key driver oncogene in human cancers.
- KRAS was historically considered undruggable until the development of KRAS G12C inhibitors.
- Approved KRAS G12C inhibitors (sotorasib, adagrasib) show limited efficacy in non-small cell lung cancer (NSCLC) due to resistance.
Purpose of the Study:
- To review recent advancements in KRAS inhibitor development post-sotorasib/adagrasib.
- To highlight strategies for overcoming resistance to KRAS inhibitors.
- To discuss emerging therapeutic approaches for various KRAS mutations.
Main Methods:
- Literature review of recent studies on KRAS inhibitors.
- Analysis of novel therapeutic strategies including molecular shielding and targeted protein degradation.
- Examination of combination therapies and immunological approaches.
Main Results:
- Development of more potent KRAS G12C inhibitors is ongoing.
- Research is actively pursuing inhibitors for non-G12C KRAS mutations (e.g., G12D/V).
- Combination therapies and immunological strategies show promise in preclinical and clinical studies.
Conclusions:
- Despite breakthroughs, challenges in KRAS inhibitor efficacy and resistance remain.
- Novel approaches are crucial for expanding therapeutic options for KRAS-mutated cancers.
- Future research directions include combination therapies and immunotherapy for improved patient outcomes.
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