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Treatment of KRAS-Mutated Pancreatic Cancer: New Hope for the Patients?
Kamila Krupa1, Marta Fudalej2,3, Emilia Włoszek1
1Students' Scientific Organization of Cancer Cell Biology, Department of Oncology Propaedeutics, Medical University of Warsaw, 01-445 Warsaw, Poland.
Abstract:
Pancreatic cancer, specifically pancreatic ductal adenocarcinoma (PDAC), ranks among the most lethal malignancies, with a 5-year survival rate of under 10%. The most prevalent KRAS mutations occur in three hotspot residues: glycine-12 (G12), glycine-13 (G13), and glutamine-61 (Q61), leading to the constant activation of the Ras pathway, making them the primary focus in oncologic drug development. Selective KRAS G12C inhibitors (e.g., sotorasib, adagrasib) have demonstrated moderate efficacy in clinical trials; however, this mutation is infrequent in PDAC. Emerging therapies targeting KRAS G12D and G12V mutations, such as MRTX1133, PROTACs, and active-state inhibitors, show promise in preclinical studies. Pan-RAS inhibitors like ADT-007, RMC-9805, and RMC-6236 compounds provide broader coverage of mutations. Their efficacy and safety are currently being investigated in several clinical trials. A major challenge is the development of resistance mechanisms, including secondary mutations and pathway reactivation. Combination therapies targeting the RAS/MAPK axis, SHP2, mTOR, or SOS1 are under clinical investigation. Immunotherapy alone has demonstrated limited effectiveness, attributed to an immunosuppressive tumor microenvironment, although synergistic effects are noted when paired with KRAS-targeted agents. Furthermore, KRAS mutations reprogram cancer metabolism, enhancing glycolysis, macropinocytosis, and autophagy, which are being explored therapeutically. RNA interference technologies have also shown potential in silencing mutant KRAS and reducing tumorigenicity. Future strategies should emphasize the combination of targeted therapies with metabolic or immunomodulatory agents to overcome resistance and enhance survival in KRAS-mutated PDAC.
Insights
Pancreatic cancer (PDAC) survival is poor due to KRAS mutations. New therapies target specific KRAS mutations and resistance, offering hope for improved outcomes in pancreatic ductal adenocarcinoma.
Area of Science:
- Oncology
- Molecular Biology
- Drug Development
Background:
- Pancreatic ductal adenocarcinoma (PDAC) is a lethal cancer with <10% 5-year survival.
- KRAS mutations (G12, G13, Q61) drive PDAC by activating the Ras pathway.
- Current KRAS G12C inhibitors show limited efficacy in PDAC due to mutation rarity.
Purpose of the Study:
- To review emerging therapeutic strategies for KRAS-mutated PDAC.
- To discuss challenges including resistance mechanisms and combination therapies.
- To explore novel approaches like metabolic reprogramming and RNA interference.
Main Methods:
- Review of preclinical and clinical studies on KRAS-targeted therapies.
- Analysis of resistance mechanisms and combination strategies.
- Exploration of metabolic and RNA interference-based interventions.
Main Results:
- Targeted inhibitors for KRAS G12D/G12V and pan-RAS inhibitors show preclinical promise.
- Clinical trials are investigating pan-RAS inhibitors and combination therapies.
- Resistance mechanisms and metabolic reprogramming are key challenges and therapeutic targets.
Conclusions:
- Combination therapies targeting RAS/MAPK, SHP2, mTOR, or SOS1 are under investigation.
- Immunotherapy shows synergy with KRAS-targeted agents.
- Future strategies involve combining targeted therapies with metabolic or immunomodulatory agents to overcome resistance and improve survival in KRAS-mutated PDAC.
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Assessment:

