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The HGF/c-MET Pathway Is a Driver and Biomarker of VEGFR-inhibitor Resistance and Vascular Remodeling in Non-Small
Tina Cascone1, Li Xu1, Heather Y Lin2
1Division of Cancer Medicine and Department of Thoracic and Head and Neck Medical Oncology, The University of Texas MD Anderson Cancer Center, Houston, Texas.
Abstract:
Purpose: Resistance to VEGFR inhibitors is a major obstacle in the treatment of non-small cell lung cancer (NSCLC). We investigated the cellular mechanisms mediating resistance of NSCLCs to VEGFR tyrosine kinase inhibitors.Experimental Design: We generated murine models of human NSCLC and performed targeted inhibition studies with the VEGFR TKIs cediranib and vandetanib. We used species-specific hybridization of microarrays to compare cancer (human) and stromal (mouse) cell transcriptomes of TKI-sensitive and -resistant tumors. We measured tumor microvascular density and vessel tortuosity to characterize the effects of therapy on the tumor vascular bed. Circulating cytokine and angiogenic factor levels in patients enrolled in VEGFR TKI trials were correlated with clinical outcomes.Results: Murine xenograft models of human lung adenocarcinoma were initially sensitive to VEGFR TKIs, but developed resistance to treatment. Species-specific microarray analysis identified increased expression of stromal-derived hepatocyte growth factor (HGF) as a candidate mediator of TKI resistance and its receptor, c-MET, was activated in cancer cells and tumor-associated stroma. A transient increase in hypoxia-regulated molecules in the initial response phase was followed by adaptive changes resulting in a more tortuous vasculature. Forced HGF expression in cancer cells reduced tumor sensitivity to VEGFR TKIs and produced tumors with tortuous blood vessels. Dual VEGFR/c-MET signaling inhibition delayed the onset of the resistant phenotype and prevented the vascular morphology alterations. In patients with cancer receiving VEGFR TKIs, high pretreatment HGF plasma levels correlated with poorer survival.Conclusions: HGF/c-MET pathway mediates VEGFR inhibitor resistance and vascular remodeling in NSCLC. Clin Cancer Res; 23(18); 5489-501. ©2017 AACR.
Insights
Resistance to vascular endothelial growth factor receptor (VEGFR) inhibitors in non-small cell lung cancer (NSCLC) is mediated by the HGF/c-MET pathway. This pathway drives tumor resistance and vascular remodeling, highlighting a therapeutic target for NSCLC treatment.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Vascular Endothelial Growth Factor Receptor (VEGFR) inhibitors are crucial in non-small cell lung cancer (NSCLC) treatment.
- Acquired resistance to VEGFR inhibitors poses a significant clinical challenge in NSCLC therapy.
- Understanding the cellular mechanisms of resistance is vital for developing effective treatment strategies.
Purpose of the Study:
- To investigate the cellular mechanisms underlying resistance to VEGFR tyrosine kinase inhibitors (TKIs) in NSCLC.
- To identify key molecular pathways involved in mediating TKI resistance and tumor vascular remodeling.
Main Methods:
- Generation of murine models of human NSCLC and targeted inhibition studies with VEGFR TKIs (cediranib, vandetanib).
- Species-specific microarray analysis to compare transcriptomes of TKI-sensitive and -resistant tumors.
- Assessment of tumor microvascular density, vessel tortuosity, and correlation of patient cytokine/angiogenic factor levels with outcomes.
Main Results:
- Murine NSCLC models initially sensitive to VEGFR TKIs developed resistance.
- Increased stromal-derived hepatocyte growth factor (HGF) expression was identified as a mediator of TKI resistance, with activated c-MET signaling.
- Dual VEGFR/c-MET inhibition delayed resistance onset and prevented vascular alterations; high HGF levels in patients correlated with poorer survival.
Conclusions:
- The HGF/c-MET pathway is a key mediator of VEGFR inhibitor resistance in NSCLC.
- This pathway also plays a critical role in tumor vascular remodeling, contributing to treatment failure.
- Targeting the HGF/c-MET pathway alongside VEGFR inhibitors may overcome resistance and improve NSCLC treatment outcomes.
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