Abstract 1052P
Background
The tumor microenvironment (TME) influences cancer progression and the efficacy of immune checkpoint inhibitors (ICIs). 'Hot' tumors, characterized by significant immune cell infiltration, are more responsive to ICIs than 'cold' tumors, which exhibit minimal immune activity. This comprehensive pan-cancer, multi-omic study aims to discern the molecular signatures differentiating 'hot' and 'cold' tumors that could inform immunotherapy strategies.
Methods
We analyzed 3413 freshly frozen tumor samples from colorectal, non-small cell lung, liver, breast, and ovarian cancers. 'Hot' and 'cold' categorization was based on immune profiles from RNA-Seq data. We integrated genomic, transcriptomic, proteomic, and phospho-proteomic data, alongside single-cell RNA-Seq resources, to identify patterns and features associated with the 'hot' cancer phenotypes within and across cancer types.
Results
Our analysis identified hundreds of gene expression commonalities across ‘hot’ cancer molecular subtypes, above and beyond known ICI targets such as CTLA-4, PD-L1 and LAG3. These could be further refined into specific modules based on co-expression analysis, that were associated with distinct proteomic and phospho-proteomic features. Single-cell analysis further refined these results to reveal specific B and T cell regulators in 'hot' tumors that displayed variation across cancer types, suggesting distinct underlying regulatory mechanisms of this pan-cancer phenomenon.
Conclusions
The multi-omic approach adopted in this study revealed known and novel molecular features that discriminate 'hot' and 'cold' tumors. Furthermore, through scRNA-Seq integration with bulk datasets they can be differentiated through immune-cell type specificity. By delineating similarities and differences in ‘hot’ tumor subtypes, these findings warrant further investigation into their roles in the TME and could have significant implications for the development of precision immunotherapy strategies.
Clinical trial identification
Editorial acknowledgement
Legal entity responsible for the study
The authors.
Funding
Has not received any funding.
Disclosure
J. Woodsmith: Financial Interests, Institutional, Member of Board of Directors: Indivumed. All other authors have declared no conflicts of interest.
Resources from the same session
917P - Automatic characterization of spatial arrangement of tumor-infiltrating lymphocytes identifies oral cavity squamous cell carcinoma patients with poorer prognosis
Presenter: German Corredor
Session: Poster session 03
918P - Deciphering the molecular drivers behind locoregional progression, intratumoral heterogeneity, and clonal evolution in locally advanced head and neck cancer
Presenter: Gema Bruixola
Session: Poster session 03
919P - Predictive multi-omic signature in locally advanced laryngeal/hypopharyngeal (LH) squamous cell carcinoma (SCC) treated with induction chemotherapy (IC)
Presenter: Paolo Bossi
Session: Poster session 03
920P - Genomic landscape of head and neck cancer in Asia: A comprehensive meta-analysis of 1016 samples
Presenter: Sewanti Limaye
Session: Poster session 03
Resources:
Abstract
921P - Divergent fates: The ambiguous role of M2-like TAMs in oropharyngeal cancer
Presenter: Michael Saerens
Session: Poster session 03
922P - Genomic instability as a biomarker for advanced cancer of the head and neck
Presenter: Filippo Dall'Olio
Session: Poster session 03
923P - Tumor-informed ctDNA assay to predict recurrence in locally advanced SCCHN
Presenter: Natasha Honoré
Session: Poster session 03
924P - Claudin-1 (CLDN1) tight junction protein expression delineates distinct immune infiltrates in ascending (A) vs descending (D) subtypes of nasopharyngeal carcinoma: Potential implications for treatment selection
Presenter: Darren Wan-Teck Lim
Session: Poster session 03
925P - External validation of the CD8 radiomics signature as a prognostic marker in recurrent or metastatic head and neck cancer treated with nivolumab
Presenter: Laville Adrien
Session: Poster session 03
926P - Genetic alteration in olfactory neuroblastoma: Unraveling carcinogenesis mechanisms and chemotherapy resistance through whole exome sequencing analysis
Presenter: Haruhi Furukawa
Session: Poster session 03