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Resistance to KRAS G12C Inhibition in Non-small Cell Lung Cancer
Alessandro Di Federico1,2, Ilaria Ricciotti3, Valentina Favorito3
1Lowe Center for Thoracic Oncology, Dana-Farber Cancer Institute, 450 Brookline Avenue, Boston, MA, 02215, USA. alessandro_difederico@dfci.harvard.edu.
Purpose Of Review:
Although the recent development of direct KRASG12C inhibitors (G12Ci) has improved outcomes in KRAS mutant cancers, responses occur only in a fraction of patients, and among responders acquired resistance invariably develops over time. Therefore, the characterization of the determinants of acquired resistance is crucial to inform treatment strategies and to identify novel therapeutic vulnerabilities that can be exploited for drug development.
Recent Findings:
Mechanisms of acquired resistance to G12Ci are heterogenous including both on-target and off-target resistance. On-target acquired resistance includes secondary codon 12 KRAS mutations, but also acquired codon 13 and codon 61 alterations, and mutations at drug binding sites. Off-target acquired resistance can derive from activating mutations in KRAS downstream pathway (e.g., MEK1), acquired oncogenic fusions (EML4-ALK, CCDC176-RET), gene level copy gain (e.g., MET amplification), or oncogenic alterations in other pro-proliferative and antiapoptotic pathways (e.g., FGFR3, PTEN, NRAS). In a fraction of patients, histologic transformation can also contribute to the development of acquire resistance. We provided a comprehensive overview of the mechanisms that limit the efficacy of this G12i and reviewed potential strategies to overcome and possibly delay the development of resistance in patients receiving KRAS directed targeted therapies.
Insights
Direct KRASG12C inhibitors (G12Ci) show promise for KRAS mutant cancers, but acquired resistance limits their effectiveness. Understanding resistance mechanisms is key to developing new therapies and improving patient outcomes.
Area of Science:
- Oncology
- Molecular Biology
- Drug Development
Background:
- KRAS mutations drive various cancers, and KRAS G12C is a common oncogenic driver.
- Direct KRAS G12C inhibitors (G12Ci) represent a significant advancement in targeted cancer therapy.
Purpose of the Study:
- To characterize the diverse mechanisms of acquired resistance to KRAS G12C inhibitors.
- To identify therapeutic vulnerabilities and inform future drug development strategies.
Main Methods:
- Review of recent scientific literature on KRAS G12C inhibitor resistance.
- Analysis of on-target and off-target resistance mechanisms.
- Exploration of histologic transformation as a resistance mechanism.
Main Results:
- Acquired resistance to G12Ci is heterogeneous, involving both on-target (e.g., secondary KRAS mutations) and off-target mechanisms (e.g., pathway alterations, gene amplifications).
- Off-target resistance includes mutations in downstream pathways, oncogenic fusions, gene copy gains, and alterations in other signaling pathways.
- Histologic transformation can also contribute to acquired resistance in a subset of patients.
Conclusions:
- Understanding the multifaceted mechanisms of acquired resistance is crucial for overcoming treatment limitations.
- Strategies to overcome or delay resistance are needed to improve long-term outcomes for patients with KRAS-mutant cancers.
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