In vitro and in vivo characterization of irreversible mutant-selective EGFR inhibitors that are wild-type sparing

Robert Tjin Tham Sjin1, Kwangho Lee2, Annette O Walter2

  • 1Authors' Affiliations: Celgene Avilomics Research, Bedford, Massachusetts; and Clovis Oncology Inc., San Francisco, California rtjin@celgene.com.

Insights

New EGFR inhibitors overcome drug resistance in non-small cell lung cancer. These selective compounds target T790M mutations while sparing wild-type EGFR, offering a promising new treatment avenue.

Area of Science:

  • Oncology
  • Pharmacology
  • Molecular Biology

Background:

  • Non-small cell lung cancer (NSCLC) with EGFR mutations initially responds to EGFR inhibitors.
  • Acquired resistance, often due to T790M mutations, limits treatment efficacy.
  • Existing second-generation inhibitors show toxicity due to wild-type EGFR inhibition.

Purpose of the Study:

  • To discover novel therapeutics overcoming T790M-mediated resistance in NSCLC.
  • To develop EGFR inhibitors selective for mutant forms (EGFR(mut)) while sparing wild-type EGFR (EGFR(WT)).

Main Methods:

  • Lead optimization program to identify selective 2,4-diaminopyrimidine compounds.
  • Pharmacokinetic and pharmacodynamic studies in H1975 tumor-bearing mice.
  • Evaluation of EGFR inhibition in normal lung tissue and tumor efficacy.

Main Results:

  • Discovery of four potent, irreversible, EGFR(mut) selective compounds.
  • Dose-proportional exposure and EGFR modulation observed in vivo.
  • Compound 3 (CO-1686) demonstrated significant efficacy in EGFR(L858R/T790M) tumors with no EGFR(WT) inhibition in normal lung tissue.

Conclusions:

  • CO-1686 is a potent and selective EGFR inhibitor effective against T790M resistance.
  • The compound spares wild-type EGFR, potentially reducing dose-limiting toxicities.
  • CO-1686 is advancing to Phase I/II clinical trials for EGFR-mutated NSCLC patients.