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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
Dual MET-EGFR combinatorial inhibition against T790M-EGFR-mediated erlotinib-resistant lung cancer
1Division of Hematology/Oncology, Department of Medicine, Case Western Reserve University, University Hospitals Case Medical Center, Cleveland, OH 44106, USA.
Abstract:
Despite clinical approval of erlotinib, most advanced lung cancer patients are primary non-responders. Initial responders invariably develop secondary resistance, which can be accounted for by T790M-EGFR mutation in half of the relapses. We show that MET is highly expressed in lung cancer, often concomitantly with epidermal growth factor receptor (EGFR), including H1975 cell line. The erlotinib-resistant lung cancer cell line H1975, which expresses L858R/T790M-EGFR in-cis, was used to test for the effect of MET inhibition using the small molecule inhibitor SU11274. H1975 cells express wild-type MET, without genomic amplification (CNV = 1.1). At 2 microM, SU 11274 had significant in vitro pro-apoptotic effect in H1975 cells, 3.9-fold (P = 0.0015) higher than erlotinib, but had no effect on the MET and EGFR-negative H520 cells. In vivo, SU11274 also induced significant tumour cytoreduction in H1975 murine xenografts in our bioluminescence molecular imaging assay. Using small-animal microPET/MRI, SU11274 treatment was found to induce an early tumour metabolic response in H1975 tumour xenografts. MET and EGFR pathways were found to exhibit collaborative signalling with receptor cross-activation, which had different patterns between wild type (A549) and L858R/T790M-EGFR (H1975). SU11274 plus erlotinib/CL-387,785 potentiated MET inhibition of downstream cell proliferative survival signalling. Knockdown studies in H1975 cells using siRNA against MET alone, EGFR alone, or both, confirmed the enhanced downstream inhibition with dual MET-EGFR signal path inhibition. Finally, in our time-lapse video-microscopy and in vivo multimodal molecular imaging studies, dual SU11274-erlotinib concurrent treatment effectively inhibited H1975 cells with enhanced abrogation of cytoskeletal functions and complete regression of the xenograft growth. Together, our results suggest that MET-based targeted inhibition using small-molecule MET inhibitor can be a potential treatment strategy for T790M-EGFR-mediated erlotinib-resistant non-small-cell lung cancer. Furthermore, optimised inhibition may be further achieved with MET inhibition in combination with erlotinib or an irreversible EGFR-TKI.
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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