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Ferroptosis Gene Signatures Reveal Distinct Regulatory Landscapes In Gastric Adenocarcinoma And Other Tissues

Ramos, S. A. A.; de Abreu, T. P.; da Conceicao, M.; Santos da Silva, V. C.; Pereira, D.; Avelar, D. d. S.; da Silva, J. M. C.; Mourao, R. M. d. S.; da Silva, R. F.; Barra, W. F.; Moraes Casseb, S. M.; dos Santos, A. K. C. R.; Demachki, S.; Ishak, G.; Moreira, F. C.; Burbano, R. M. R.; de Assumpcao, P. P.

2025-09-16 cancer biology
10.1101/2025.09.11.675514 bioRxiv
Show abstract

BackgroundGastric adenocarcinoma (GAC) remains one of the most lethal malignancies worldwide, with late-stage diagnosis and limited therapeutic options. Ferroptosis, a regulated form of cell death driven by iron-dependent lipid peroxidation, has emerged as a promising target for overcoming tumor resistance mechanisms. This study aimed to characterize the transcriptional landscape of ferroptosis-related genes in GAC, comparing tumor, peritumoral, metaplastic, and normal gastric tissues. MethodsRNA-Seq was performed on 385 biopsied samples from patients treated at the Joao de Barros Barreto University Hospital. Differential expression analysis was conducted using DESeq2, and genes related to ferroptosis were identified based on FerrDb V2 annotations. Visualization included volcano plots, DAPC clustering, heatmaps, and gene dominance scoring. ResultsGAC samples showed a distinct ferroptotic expression signature, with simultaneous upregulation of key promoters (e.g., CDKN2A, NOX4, EGFR, IL6) and suppressors (e.g., HSPB1, SCD, NUPR1, GDF15). Notably, the tumor tissue exhibited a net dominance of ferroptosis-inhibitory genes, suggesting an adaptive response to oxidative stress. Adjacent tissues showed partial overlap with tumor profiles, while metaplastic tissue displayed a hybrid signature with selective suppression of ferroptosis. Normal mucosa exhibited dominant expression of promoters, contrasting with the tumors anti-ferroptotic phenotype. ConclusionThe transcriptional heterogeneity and regulatory imbalance of ferroptosis-related genes in GAC support its role as a potential therapeutic axis. These findings provide molecular insights for biomarker discovery and ferroptosis-targeted strategies in gastric cancer.

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