Has programmed cell death ligand-1 MET an accomplice in non-small cell lung cancer?-a narrative review
Wolfram C M Dempke1, Klaus Fenchel2
1Department of Haematology and Oncology, University of Munich, Munich, Germany.
Abstract:
Recently approved and highly specific small-molecule inhibitors of c-MET exon 14 skipping mutations (e.g., capmatinib, tepotinib) are a new and important therapeutic option for the treatment of non-small cell lung cancer (NSCLC) patients harbouring c-MET alterations. Several experimental studies have provided compelling evidence that c-MET is involved in the regulation of the immune response by up-regulating inhibitory molecules (e.g., PD-L1) and down-regulating of immune stimulators (e.g., CD137, CD252, CD70, etc.). In addition, c-MET was found to be implicated in the regulation of the inflamed tumour microenvironment (TME) and thereby contributing to an increased immune escape of tumour cells from T cell killing. Moreover, it is a major resistance mechanism following treatment of epidermal growth factor receptor mutations (EGFRmut) with tyrosine kinase receptor inhibitors (TKIs). In line with these findings c-MET alterations have also been shown to be associated with a worse clinical outcome and a poorer prognosis in NSCLC patients. However, the underlying mechanisms for these experimental observations are neither fully evaluated nor conclusive, but clearly multifactorial and most likely tumour-specific. In this regard the clinical efficacy of checkpoint inhibitors (CPIs) and TKIs against EGFRmut in NSCLC patients harbouring c-MET alterations is also not yet established, and further research will certainly provide some guidance as to optimally utilise CPIs and c-MET inhibitors in the future.
Insights
New c-MET inhibitors offer therapeutic options for non-small cell lung cancer (NSCLC). c-MET alterations impact immune response and tumor microenvironment, influencing treatment outcomes.
Area of Science:
- Oncology
- Molecular Biology
- Immunology
Background:
- c-MET exon 14 skipping mutations are targets for new non-small cell lung cancer (NSCLC) therapies.
- c-MET dysregulation influences immune responses and the tumor microenvironment (TME).
- c-MET alterations are linked to resistance in EGFR-mutated NSCLC and poorer patient prognosis.
Purpose of the Study:
- To review the role of c-MET in NSCLC pathogenesis and immune evasion.
- To discuss the therapeutic potential of c-MET inhibitors in NSCLC.
- To explore the interplay between c-MET alterations, immunotherapy, and EGFR-targeted therapies.
Main Methods:
- Literature review of experimental studies on c-MET in NSCLC.
- Analysis of c-MET's role in immune modulation (PD-L1, CD137, etc.).
- Examination of c-MET's involvement in TME regulation and treatment resistance.
Main Results:
- c-MET inhibitors like capmatinib and tepotinib are emerging treatments for NSCLC with c-MET alterations.
- c-MET upregulates PD-L1 and downregulates immune stimulators, promoting immune escape.
- c-MET alterations contribute to resistance against EGFR tyrosine kinase inhibitors (TKIs).
Conclusions:
- c-MET plays a multifaceted role in NSCLC, affecting immune evasion and treatment response.
- The clinical efficacy of combining checkpoint inhibitors (CPIs) with c-MET inhibitors or EGFR TKIs requires further investigation.
- Understanding c-MET's mechanisms is crucial for optimizing NSCLC treatment strategies.


