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Multiplexed Immunofluorescence Analysis and Quantification of Intratumoral PD-1+ Tim-3+ CD8+ T Cells
Published on: February 8, 2018
Spatial profiling of METex14-altered NSCLC under tepotinib treatment: Shifting the immunosuppressive landscape
Manon A Simard1, Carlos Cabrera-Galvez2, Santiago Viteri2
1The Healthcare Business of Merck KGaA, 250 Frankfurterstrasse, Darmstadt 64293, Germany.
Abstract:
MET inhibitors have demonstrated efficacy in treating patients with non-small cell lung cancer (NSCLC) harboring METex14 skipping alterations. Advancements in spatial profiling technologies have unveiled the complex dynamics of the tumor microenvironment (TME), a crucial factor in cancer progression and therapeutic response. This study uses spatial profiling to investigate the effects of the MET inhibitor tepotinib on the TME in a case of locally advanced NSCLC with a METex14 skipping alteration. A patient with resectable stage IIIB NSCLC, unresponsive to neoadjuvant platinum-based chemotherapy, received tepotinib following the detection of a METex14 skipping alteration. Paired pre- and post-treatment biopsies were subjected to GeoMx Digital Spatial Profiling using the Cancer Transcriptome Atlas and immune-related protein panels to evaluate shifts in the immune TME. Tepotinib administration allowed for a successful lobectomy and a pathological downstaging to stage IA1. The TME was transformed from an immunosuppressive to a more permissive state, with upregulation of antigen-presenting and pro-inflammatory immune cells. Moreover, a marked decrease in immune checkpoint molecules, including PD-L1, was noted. Spatial profiling identified discrete immune-enriched clusters, indicating the role of tepotinib in modulating immune cell trafficking and function. Tepotinib appears to remodel the immune TME in a patient with METex14 skipping NSCLC, possibly increasing responsiveness to immunotherapy. Our study supports the integration of genetic profiling into the management of early and locally advanced NSCLC to guide personalized, targeted interventions. These findings underscore the need to further evaluate combinations of MET inhibitors and immunotherapies.
Insights
The MET inhibitor tepotinib transformed the tumor microenvironment (TME) in non-small cell lung cancer (NSCLC) with METex14 skipping. This shift from immunosuppressive to immune-permissive may enhance immunotherapy response.
Area of Science:
- Oncology
- Immunology
- Genomics
- Spatial Biology
Background:
- MET inhibitors are effective for non-small cell lung cancer (NSCLC) with METex14 skipping alterations.
- The tumor microenvironment (TME) significantly influences cancer progression and treatment outcomes.
- Spatial profiling technologies offer insights into TME complexity.
Purpose of the Study:
- To investigate the impact of the MET inhibitor tepotinib on the TME in a patient with locally advanced NSCLC and a METex14 skipping alteration.
- To assess changes in immune cell populations and molecular markers within the TME following tepotinib treatment.
Main Methods:
- A patient with resectable stage IIIB NSCLC, unresponsive to chemotherapy, received tepotinib.
- Paired pre- and post-treatment biopsies were analyzed using GeoMx Digital Spatial Profiling with Cancer Transcriptome Atlas and immune panels.
- Evaluated shifts in the immune TME, including cell types, antigen presentation, and immune checkpoint molecule expression.
Main Results:
- Tepotinib treatment enabled successful surgery and pathological downstaging from stage IIIB to IA1.
- The TME shifted from an immunosuppressive to an immune-permissive state, with increased antigen-presenting and pro-inflammatory cells.
- Observed a significant decrease in immune checkpoint molecules, including PD-L1, and identified distinct immune-enriched clusters.
Conclusions:
- Tepotinib effectively remodeled the immune TME in METex14 skipping NSCLC, potentially enhancing immunotherapy responsiveness.
- Spatial profiling revealed tepotinib's role in modulating immune cell trafficking and function.
- Supports integrating genetic profiling with targeted therapies and immunotherapy combinations for personalized NSCLC management.

