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Establishing Dual Resistance to EGFR-TKI and MET-TKI in Lung Adenocarcinoma Cells In Vitro with a 2-step Dose-escalation Procedure
Published on: August 11, 2017
Discovery and optimization of covalent EGFR T790M/L858R mutant inhibitors
Niels Hoogenboom1, Dennis Demont1, Edwin de Zwart1
1Department of Medicinal Chemistry, Acerta Pharma BV, Kloosterstraat 9, 5349 AB Oss, the Netherlands.
Abstract:
Epidermal growth factor receptor (EGFR) inhibitors have clinical utility in the treatment of non-small cell lung cancer (NSCLC) patients. Despite encouraging clinical efficacy with these agents, many patients develop resistance due to sensitizing (or activating) mutations ultimately leading to disease progression. In the majority of the cases, this resistance is due to the T790M mutation and frequently coexisting L858R. In addition, EGFR wild type receptor inhibition can lead to on target related dose limiting toxicities such as rash and diarrhea. We describe herein the identification of a mutant selective lead compound 12, an irreversible covalent inhibitor of EGFR T790M/L858R resistance mutations with selectivity over the wild type form. Significant tumor growth inhibition in preclinical models was observed with this lead.
Insights
A new drug selectively targets epidermal growth factor receptor (EGFR) resistance mutations in non-small cell lung cancer (NSCLC). This compound inhibits T790M and L858R mutations, showing promise for overcoming treatment resistance.
Area of Science:
- Oncology
- Pharmacology
- Molecular Biology
Background:
- Epidermal growth factor receptor (EGFR) inhibitors are vital for treating non-small cell lung cancer (NSCLC).
- Acquired resistance, often via T790M or L858R mutations, limits the long-term efficacy of EGFR inhibitors in NSCLC patients.
- Wild-type EGFR inhibition can cause dose-limiting toxicities like rash and diarrhea.
Purpose of the Study:
- To identify and characterize a novel mutant-selective EGFR inhibitor.
- To develop a compound that targets specific resistance mutations (T790M/L858R) while sparing wild-type EGFR.
Main Methods:
- Identification of a lead compound (compound 12) through drug discovery screening.
- Characterization of compound 12 as an irreversible covalent inhibitor.
- Evaluation of selectivity for mutant EGFR (T790M/L858R) over wild-type EGFR.
- Assessment of anti-tumor activity in preclinical NSCLC models.
Main Results:
- Compound 12 was identified as a potent, irreversible covalent inhibitor of EGFR.
- The compound demonstrated significant selectivity for EGFR harboring T790M and/or L858R mutations compared to wild-type EGFR.
- Compound 12 exhibited substantial tumor growth inhibition in preclinical models of NSCLC.
Conclusions:
- Compound 12 represents a promising therapeutic candidate for NSCLC patients with acquired resistance mutations.
- The mutant-selective inhibition profile of compound 12 may overcome resistance mechanisms and reduce wild-type related toxicities.
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