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Updated: Mar 8, 2026

Author Spotlight: Advancements in Molecular Biomarker Testing for Non-Squamous Non-Small Cell Lung Cancer
Published on: September 8, 2023
Distinct transcriptional changes in non-small cell lung cancer patients associated with multi-antigenic RNActive®
Henoch S Hong1, Sven D Koch1, Birgit Scheel1
1CureVac AG , Tübingen, Germany.
Abstract:
We recently completed a phase I/IIa trial of RNActive® CV9201, a novel mRNA-based therapeutic vaccine targeting five tumor-associated antigens in non-small cell lung cancer (NSCLC) patients. The aim of the study presented here was to comprehensively analyze changes in peripheral blood during the vaccination period and to generate hypotheses facilitating the identification of potential biomarkers correlating with differential clinical outcomes post RNActive® immunotherapy. We performed whole-genome expression profiling in a subgroup of 22 stage IV NSCLC patients before and after initiation of treatment with CV9201. Utilizing an analytic approach based on blood transcriptional modules (BTMs), a previously described, sensitive tool for blood transcriptome data analysis, patients segregated into two major clusters based on transcriptional changes post RNActive® treatment. The first group of patients was characterized by the upregulation of an expression signature associated with myeloid cells and inflammation, whereas the other group exhibited an expression signature associated with T and NK cells. Patients with an enrichment of T and NK cell modules after treatment compared to baseline exhibited significantly longer progression-free and overall survival compared to patients with an upregulation of myeloid cell and inflammatory modules. Notably, these gene expression signatures were mutually exclusive and inversely correlated. Furthermore, our findings correlated with phenotypic data derived by flow cytometry as well as the neutrophil-to-lymphocyte ratio. Our study thus demonstrates non-overlapping, distinct transcriptional profiles correlating with survival warranting further validation for the development of biomarker candidates for mRNA-based immunotherapy.
Insights
This study identified distinct blood transcriptional profiles in non-small cell lung cancer (NSCLC) patients receiving mRNA immunotherapy. Upregulation of T and NK cell signatures correlated with improved survival, unlike myeloid cell signatures.
Area of Science:
- Immunology
- Oncology
- Genomics
Background:
- Non-small cell lung cancer (NSCLC) remains a leading cause of cancer mortality.
- mRNA-based therapeutic vaccines represent a novel approach to cancer immunotherapy.
- Identifying predictive biomarkers is crucial for optimizing immunotherapy outcomes.
Purpose of the Study:
- To analyze peripheral blood transcriptional changes during mRNA immunotherapy (CV9201) in NSCLC patients.
- To identify potential biomarkers correlating with clinical outcomes after RNActive® immunotherapy.
- To explore distinct immune response signatures associated with differential survival.
Main Methods:
- Whole-genome expression profiling of peripheral blood from 22 stage IV NSCLC patients before and after CV9201 treatment.
- Analysis using blood transcriptional modules (BTMs) to identify patient clusters based on gene expression changes.
- Correlation of transcriptional profiles with flow cytometry data and neutrophil-to-lymphocyte ratio.
Main Results:
- Patients segregated into two distinct clusters based on transcriptional changes: one with myeloid/inflammatory signatures, the other with T and NK cell signatures.
- Enrichment of T and NK cell modules post-treatment was significantly associated with longer progression-free and overall survival.
- These distinct gene expression signatures were mutually exclusive and inversely correlated.
Conclusions:
- Distinct, non-overlapping peripheral blood transcriptional profiles are associated with differential survival outcomes in NSCLC patients treated with mRNA immunotherapy.
- These findings support the potential development of biomarker candidates for predicting response to mRNA-based cancer vaccines.
- Further validation is warranted to translate these transcriptional signatures into clinical practice.
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