Dual MET-EGFR combinatorial inhibition against T790M-EGFR-mediated erlotinib-resistant lung cancer

Z Tang1, R Du, S Jiang

  • 1Division of Hematology/Oncology, Department of Medicine, Case Western Reserve University, University Hospitals Case Medical Center, Cleveland, OH 44106, USA.

British Journal of Cancer
|February 25, 2009
PubMed

Insights

MET inhibition shows promise for treating erlotinib-resistant lung cancer with T790M-EGFR mutations. Combining MET and EGFR inhibitors, like SU11274 and erlotinib, effectively regressed tumors in preclinical models.

Area of Science:

  • Oncology
  • Molecular Biology
  • Pharmacology

Background:

  • Erlotinib is approved for advanced lung cancer but faces primary resistance and acquired resistance, often due to T790M-EGFR mutations.
  • MET is frequently overexpressed in lung cancer, sometimes alongside EGFR, and plays a role in resistance mechanisms.

Purpose of the Study:

  • To investigate the efficacy of MET inhibition using SU11274 in erlotinib-resistant non-small-cell lung cancer (NSCLC) cell lines harboring T790M-EGFR mutations.
  • To explore the combination therapy of MET and EGFR inhibition for enhanced anti-cancer effects.

Main Methods:

  • Utilized the H1975 erlotinib-resistant NSCLC cell line (L858R/T790M-EGFR) and MET-negative H520 cells.
  • Assessed in vitro cytotoxicity and apoptosis induction by SU11274.
  • Evaluated in vivo tumor growth and metabolic response in murine xenografts using bioluminescence imaging and microPET/MRI.
  • Investigated signaling pathway crosstalk and combined effects of MET and EGFR inhibitors (erlotinib/CL-387,785) via knockdown studies and molecular imaging.

Main Results:

  • SU11274 demonstrated significant in vitro pro-apoptotic effects in H1975 cells, exceeding erlotinib's efficacy, with no impact on MET/EGFR-negative cells.
  • In vivo studies showed SU11274 induced tumor cytoreduction and early metabolic response in H1975 xenografts.
  • Dual inhibition of MET and EGFR pathways potentiated the suppression of downstream survival signaling, leading to enhanced anti-proliferative effects.
  • Concurrent treatment with SU11274 and erlotinib resulted in complete xenograft regression and abrogated cytoskeletal functions.

Conclusions:

  • MET-based targeted inhibition is a potential therapeutic strategy for T790M-EGFR-mediated erlotinib-resistant NSCLC.
  • Combination therapy involving MET inhibition with erlotinib or other EGFR TKIs may offer optimized treatment outcomes for resistant lung cancers.

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