Targeting KRAS in Solid Tumors: Current Challenges and Future Opportunities of Novel KRAS Inhibitors
Alice Indini1, Erika Rijavec1, Michele Ghidini1
1Medical Oncology Unit, Fondazione IRCCS Ca' Granda Ospedale Maggiore Policlinico, 20122 Milan, Italy.
Abstract:
Activating mutations in RAS family proteins are found in ~25% of all human cancers. Different solid tumors are correlated with mutations in certain isoforms of RAS, with Kirsten RAS (KRAS) being the most frequently mutated isoform. Historically, KRAS has been acknowledged as "undruggable", largely because the RAS proteins do not appear to present suitable pockets to which small inhibitory molecules can bind. However, this scenario has changed over the last years with the advent of novel KRAS inhibitors. In this review, we describe the role of KRAS mutation across different solid tumors, providing data on novel KRAS inhibitors currently under development and an updated overview of ongoing research in this field. A literature search was performed to select papers, abstracts, and oral presentation on KRAS inhibitory strategies in KRAS mutated solid tumors. Overall, the most promising therapeutic results have been obtained with molecules targeting KRAS G12C, thus paving the way for a significant therapeutic improvement in non-small cell lung cancer. Unfortunately, KRAS G12C mutation is rather uncommon in other solid tumors, namely pancreatic ductal adenocarcinoma and colorectal cancer. Several combination strategies are currently under evaluation in clinical trials, in order to bypass the resistance mechanisms responsible for the intrinsic resistance of mutated KRAS to the main therapeutic strategies adopted to date. Results suggest that the therapeutic scenario of KRAS has started to change, and further research will bring therapeutic results in this field.
Insights
Novel KRAS inhibitors are changing cancer treatment, especially for KRAS G12C mutations in lung cancer. Research is ongoing to overcome resistance in other solid tumors like pancreatic and colorectal cancers.
Area of Science:
- Oncology
- Molecular Biology
- Drug Discovery
Background:
- Activating RAS mutations, particularly Kirsten RAS (KRAS), occur in ~25% of human cancers.
- KRAS was historically considered undruggable due to lack of suitable binding pockets.
- Recent advancements have introduced novel KRAS inhibitors.
Purpose of the Study:
- To review the role of KRAS mutations in solid tumors.
- To present data on novel KRAS inhibitors in development.
- To provide an overview of current research in KRAS inhibition.
Main Methods:
- Literature search for papers, abstracts, and oral presentations on KRAS inhibitory strategies.
- Focus on KRAS mutated solid tumors.
- Analysis of therapeutic results and ongoing clinical trials.
Main Results:
- Targeting KRAS G12C shows promising therapeutic results, particularly in non-small cell lung cancer.
- KRAS G12C mutations are less common in pancreatic and colorectal cancers.
- Combination strategies are under evaluation to overcome resistance mechanisms.
Conclusions:
- The therapeutic landscape for KRAS-mutated cancers is evolving with new inhibitors.
- Further research is crucial to improve treatment outcomes for a broader range of solid tumors.
- Combination therapies may hold the key to overcoming intrinsic resistance.
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