[MET receptor inhibition: Hope against resistance to targeted therapies?]
Audrey Hochart1, Pierre Leblond2, Xuefen Le Bourhis3
1Centre Oscar-Lambret, unité tumorigenèse et résistance aux traitements, 3, rue Frédéric-Combemale, 59000 Lille, France; Université Lille 1, Inserm U908, Cell Plasticity and Cancer (CPAC), SN3, 59000 Lille, France; CHU de Lille, 2, avenue Oscar-Lambret, 59000 Lille, France.
Abstract:
Overcoming the drug resistance remains a crucial issue in cancer treatment. For refractory patients, the use of MET receptor tyrosine kinase inhibitors seems to be hopeful. Indeed, important mechanisms underlying drug resistance argue for association of MET inhibitors with targeted therapies, both on first-line to prevent a primary resistance and on the second line to overcoming acquired resistance. Indeed, met gene amplification is the second most common alteration involved in acquired resistance to anti-epidermal growth factor receptor (EGFR) therapies in non-small cells lung cancer (NSCLC). Hypoxia, for its part, can activate MET transcription and amplifies HGF signaling resulting in MET activation, which could be involved in vascular endothelial growth factor (VEGF) inhibitors escape. In HER2 positive breast cancers, MET amplification may also induce tumor cells a hatch escape, resulting in secondary resistance. Finally, some patients with BRAF mutated melanoma exhibit primary resistance to BRAF inhibition by stromal HGF (ligand of MET) secretion resulting in MET receptor activation. Experimental data highlight the role of MET in primary and secondary resistance and encourage combined treatments including MET inhibitors. In this context, several promising clinical trials are in progress in numerous cancers (NSCLC, melanoma, breast cancer, glioblastoma…) using combination of anti-MET and other specific therapies targeting EGFR, BRAF, VEGF or HER2. This review summarizes the potential benefits that MET inhibition should provide to patients with cancer refractory to targeted therapies.
Insights
MET inhibitors offer hope for cancer patients with drug resistance. Combining MET inhibitors with targeted therapies like EGFR, BRAF, VEGF, or HER2 treatments can overcome primary and acquired resistance in various cancers.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Drug resistance is a major challenge in cancer therapy, particularly for refractory patients.
- MET receptor tyrosine kinase signaling plays a role in acquired resistance to targeted therapies like anti-EGFR treatments in non-small cell lung cancer (NSCLC).
- MET activation is implicated in resistance to therapies targeting VEGF, HER2, and BRAF in various cancers, including breast cancer and melanoma.
Purpose of the Study:
- To review the role of MET inhibition in overcoming primary and acquired drug resistance in cancer.
- To highlight the potential benefits of combining MET inhibitors with other targeted therapies.
- To summarize ongoing clinical trials investigating MET inhibitors in combination therapies.
Main Methods:
- Literature review of experimental data and clinical trials.
- Analysis of mechanisms of MET activation in drug resistance.
- Summary of combination strategies involving MET inhibitors.
Main Results:
- MET gene amplification is a common mechanism of acquired resistance to anti-EGFR therapies in NSCLC.
- Hypoxia-induced MET activation can lead to resistance to VEGF inhibitors.
- MET amplification in HER2-positive breast cancer and MET activation in BRAF-mutated melanoma contribute to primary and secondary resistance.
Conclusions:
- MET inhibition is a promising strategy to overcome drug resistance in various cancers.
- Combination therapies involving MET inhibitors and targeted agents (EGFR, BRAF, VEGF, HER2) show potential.
- Clinical trials are actively exploring these combinations for refractory cancer patients.
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