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August 25, 20250 citationsOpen Access

Multi-omics analysis identifies lactylation-mediated immune biomarkers in esophageal cancer

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PBPeijian BaiHZHuihui ZhangPLPing Li

Key Points

  • A 9-gene lactate metabolism-related gene signature stratifies esophageal cancer patients by survival outcomes, indicating high-risk groups.
  • Key genes associated with the tumor microenvironment and immune responses showed significant correlation with poor immunotherapy outcomes.
  • Multi-omics analysis utilized bulk and single-cell RNA sequencing to identify prognostic biomarkers in esophageal cancer populations.
  • Combining lactate modulation with targeted therapies may help overcome resistance in treatment of esophageal cancer.

Abstract

Abstract Objectives: This study aimed to investigate the prognostic value of lactate metabolism-related genes (LMRGs) in esophageal cancer (EC), exploring their roles in tumor microenvironment (TME) remodeling, immunotherapy response, and potential therapeutic targeting. Methods: Multi-omics analysis integrated bulk RNA-seq (TCGA, GEO) and single-cell RNA-seq (scRNA-seq) data. Differential expression, WGCNA, and LASSO regression were employed to identify prognostic LMRGs. Immune infiltration, drug sensitivity (GDSC), and pathway enrichment (GSEA/GSVA) analyses were performed. scRNA-seq delineated lactate-high cell populations in TME. Results: A 9-gene LMRG signature (ABRACL, CXCL8, TRIB3, DNMT3B, PHYHD1, KIF4A, CDKN3, LMNB2, PCLAF) was established, stratifying EC patients into high/low-risk groups with distinct survival (pConclusion: The LMRG model elucidates lactate-driven EC progression and immune evasion, offering prognostic biomarkers and therapeutic targets. Combining lactate modulation with targeted therapy may overcome treatment resistance.

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Cite This Study

Bai et al. (2025) studied this question.

synapsesocial.com/papers/68af5f13ad7bf08b1eae1dc8https://doi.org/10.21203/rs.3.rs-7241851/v1
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