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Updated: Feb 11, 2026

Multidimensional Coculture System to Model Lung Squamous Carcinoma Progression
Published on: March 17, 2020
Whole Exome and Transcriptome Analyses Integrated with Microenvironmental Immune Signatures of Lung Squamous Cell
Jeong-Sun Seo1,2,3,4, Ji Won Lee2,3, Ahreum Kim2,3
1Precision Medicine Center, Seoul National University Bundang Hospital, Seongnamsi, Korea. jeongsun@snu.ac.kr ytkim@snu.ac.kr.
Abstract:
The immune microenvironment in lung squamous cell carcinoma (LUSC) is not well understood, with interactions between the host immune system and the tumor, as well as the molecular pathogenesis of LUSC, awaiting better characterization. To date, no molecularly targeted agents have been developed for LUSC treatment. Identification of predictive and prognostic biomarkers for LUSC could help optimize therapy decisions. We sequenced whole exomes and RNA from 101 tumors and matched noncancer control Korean samples. We used the information to predict subtype-specific interactions within the LUSC microenvironment and to connect genomic alterations with immune signatures. Hierarchical clustering based on gene expression and mutational profiling revealed subtypes that were either immune defective or immune competent. We analyzed infiltrating stromal and immune cells to further characterize the tumor microenvironment. Elevated expression of macrophage 2 signature genes in the immune competent subtype confirmed that tumor-associated macrophages (TAM) linked inflammation and mutation-driven cancer. A negative correlation was evident between the immune score and the amount of somatic copy-number variation (SCNV) of immune genes (r = -0.58). The SCNVs showed a potential detrimental effect on immunity in the immune-deficient subtype. Knowledge of the genomic alterations in the tumor microenvironment could be used to guide design of immunotherapy options that are appropriate for patients with certain cancer subtypes. Cancer Immunol Res; 6(7); 848-59. ©2018 AACR.
Insights
Researchers identified distinct immune microenvironment subtypes in lung squamous cell carcinoma (LUSC). These findings link tumor-associated macrophages (TAM) to inflammation and suggest genomic alterations impact LUSC immunity, guiding future immunotherapy strategies.
Area of Science:
- Oncology
- Immunology
- Genomics
Background:
- The immune microenvironment of lung squamous cell carcinoma (LUSC) and its molecular pathogenesis are not well understood.
- No targeted therapies currently exist for LUSC, highlighting the need for biomarkers to guide treatment decisions.
Purpose of the Study:
- To characterize the LUSC immune microenvironment and connect genomic alterations with immune signatures.
- To identify molecularly distinct subtypes of LUSC based on immune and mutational profiles.
Main Methods:
- Whole exome and RNA sequencing of 101 LUSC tumors and matched controls.
- Hierarchical clustering based on gene expression and mutational profiling.
- Analysis of infiltrating stromal and immune cells, including tumor-associated macrophages (TAM).
Main Results:
- Two subtypes of LUSC were identified: immune defective and immune competent.
- Elevated macrophage 2 signature genes in the immune-competent subtype indicated TAMs link inflammation and mutation-driven cancer.
- A negative correlation between immune score and somatic copy-number variation (SCNV) of immune genes (r = -0.58) suggested SCNVs may impair immunity in the immune-deficient subtype.
Conclusions:
- Genomic alterations in the LUSC tumor microenvironment influence immune characteristics.
- Understanding these genomic and immune interactions can guide the development of subtype-specific immunotherapies for LUSC.
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