Jul 2026· International Journal of Science and Research Archive· Vol 20, pp. 511-524· 0 citations
TL;DR
A narrative review critically evaluates the biological basis of KRAS oncogenesis, the pharmacological obstacles that delayed drug development, the clinical performance and limitations of approved inhibitors, resistance mechanisms and rational combination strategies, and the evidence base and uncertainties surrounding next-generation therapeutic approaches.
Abstract
Mutations in the KRAS (Kirsten Rat Sarcoma Viral Proto-oncogene) gene represent among the most prevalent oncogenic drivers in human malignancies, occurring in approximately 25% of all solid tumors. For more than four decades, KRAS was considered pharmacologically intractable due to the protein's picomolar affinity for GTP/GDP and the absence of accessible allosteric binding sites. The identification of the switch-II pocket (S-IIP) and subsequent development of mutation-selective covalent inhibitors targeting the KRAS G12C mutant fundamentally altered this paradigm. Sotorasib and adagrasib, the first approved KRAS G12C inhibitors, have demonstrated meaningful clinical activity in NSCLC and, in combination with anti-EGFR agents, in colorectal cancer. However, both drugs achieve only modest objective response rates of 30–43% in NSCLC with median progression-free survival of approximately six months, substantially below outcomes achieved with targeted therapies directed at EGFR or ALK. Acquired resistance emerges rapidly through on-target KRAS mutations, bypass signaling, and phenotypic plasticity. An expanding pipeline of next-generation agents targeting G12D, G12V, and pan-KRAS approaches offers the first plausible therapeutic options for pancreatic and other KRAS-driven cancers beyond G12C. This narrative review critically evaluates the biological basis of KRAS oncogenesis, the pharmacological obstacles that delayed drug development, the clinical performance and limitations of approved inhibitors, resistance mechanisms and rational combination strategies, and the evidence base and uncertainties surrounding next-generation therapeutic approaches.
These breakthroughs have validated direct KRAS inhibition as an effective therapeutic strategy, however, durable clinical responses remain limited by intrinsic and acquired resistance, pathway reactivation, tumour heterogeneity, and the lack of effective therapies for non-G12C KRAS mutations.
Pasham Uma, Dandotikar Neha, R. Manisha et al.· International Journal of Inn...· 0 citations
This review systematically summarizes the molecular mechanisms driving KRAS G12C‑mutant lung cancer, clinical applications of targeted drugs, resistance and heterogeneity challenges, and progress in combination therapy, providing a reference for clinical decision-making and further research in this field.
Xizhi Zha· Theoretical and Natural Scie...· 0 citations
This review discusses recent advances in EGFR-targeted therapies within the molecular landscape of classical and uncommon EGFR mutations, focusing on frontline intensification strategies in metastatic disease—specifically TKI combinations with chemotherapy or bispecific antibodies or bispecific antibodies—and emerging post-progression strategies to overcome acquired resistance mechanisms.
L. Lucente, Lucrezia Barcellini, B. Ramella Pollone et al.· Expert Opinion on Pharmacoth...· 0 citations
KRAS driver mutations have classically been considered undruggable by direct inhibitors in non-small cell lung cancer (NSCLC) as well as other solid tumors. However, recent advances have led to the first successful direct KRAS inhibitors, beginning with the development of KRASG12C inhibitors targeting the inactive GDP-bound state of KRAS. These initial KRASG12C (OFF) inhibitors demonstrated real but modest activity in KRASG12C-mutated mNSCLC. The development of more potent optimized KRASG12C (OFF) inhibitors has sought to improve upon the clinical activity of the initial raft of KRASG12C (OFF) inhibitors. Combination therapy with PD-1 inhibitors, as well as other classes of drugs, is also under intense investigation in NSCLC and other solid tumors. Nevertheless, primary and acquired resistance, as well as a variable and peculiar tendency to autoimmune hepatitis, have complicated efforts to develop this class of inhibitors in KRASG12C-mutated mNSCLC. In parallel, new direct inhibitor classes have emerged recently, including tri-complex ON-state inhibitors and dual-state ON/OFF inhibitors capable of targeting not only KRASG12C but also other KRAS mutations, as well as panKRAS and panRAS strategies. These agents have the potential to broaden the activity of initial KRASG12C (OFF) inhibitors and to avoid certain mechanisms of resistance and toxicity, but remain early in development with limited data. The KRAS therapeutic landscape is evolving rapidly, with many promising competing strategies each seeking to distinguish itself in an increasingly crowded therapeutic landscape.
Tämer El Saadany, Núria Aeschlimann, A. Sacher· Cancer Journal· 0 citations
RAS alterations mediate resistance to targeted agents in approximately 10% of oncogene-driven lung cancer, and Rational combinations with novel RAS inhibitors are effective in preclinical models, providing the basis for their clinical investigation and extending the paradigm of precision oncology.
F. Facchinetti, L. Friboulet, L. Liao et al.· Annals of Oncology· 0 citations
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