4.7 Article

Single-cell sequencing analysis and transcriptome analysis constructed the macrophage related gene-related signature in lung adenocarcinoma and verified by an independent cohort

Journal

GENOMICS
Volume 114, Issue 6, Pages -

Publisher

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.ygeno.2022.110520

Keywords

Lung adenocarcinoma; Macrophage; Tumor microenvironment; Prognosis; Immunotherapy

Funding

  1. National High Level Hospital Clinical Research Funding
  2. Non-profit Central Research Institute Fund of Chinese Academy of Medical Sciences
  3. National Natural Science Foundation of China
  4. [2022-NHLHCRF-LX-01]
  5. [81900040]
  6. [81700041]

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This study explores the relationship between macrophages and tumor immunity in lung adenocarcinoma (LUAD) patients. Through analysis of scRNA-seq data, differentially expressed genes (DEGs) related to macrophages were identified, and three distinct immune patterns in LUAD patients were characterized. A four-gene prognostic signature based on these DEGs showed promise in predicting outcomes and the immune landscape of LUAD patients.
Background: Recent studies have emphasized the close relationship between macrophages and tumor immunity, and the prognosis of lung adenocarcinoma (LUAD) patients is intimately linked to this. Nonetheless, the prog-nostic signature and classification of different immune patterns in LUAD patients based on the macrophages is largely unexplored.Methods: Two sc-RNAseq datasets of LUAD patients were collected and reprocessed. The differentially expressed genes (DEGs) related to macrophages between LUAD tissues and normal lung tissues were then identified. Based upon the above genes, three distinct immune patterns in the TCGA-LUAD cohort were identified. The ssGSEA and CIBERSORT were applied for immune profiling and characterization of different subtypes. A four-gene prog-nostic signature for LUAD patients was established based on the DEGs between the subtypes using stepwise multi-Cox regression. TCGA-LUAD cohort was used as training set. Five GEO-LUAD datasets and an independent cohort containing 112 LUAD samples were used for validation. TIDE (tumor immune dysfunction and exclusion) and drug sensitivity analyses were also performed.Results: Macrophage-related differentially expressed genes were found out using the publicly available scRNA-seq data of LUAD. Three different immune patterns which were proved to have distinct immune infiltration char-acteristics in the TCGA-LUAD cohort were recognized based on the above macrophage-related genes. Thereafter, 174 DEGs among the above three different immune patterns were figured out; on the basis of this, a four-gene prognostic signature was constructed. This signature distinguished the prognosis of LUAD patients well in various GSE datasets as well as our independent cohort. Further analyses revealed that patients which had a higher risk score also accompanied with a lower immune infiltration level and a worse response to several immunotherapy biomarkers.Conclusion: This study highlighted that macrophage were significantly associated with TME diversity and complexity. The four-gene prognostic signature could be used for predicting outcomes and immune landscapes for patients with LUAD.

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