Oxidative Stress-Related Prognostic Signature Defines Redox Adaptation and Immune Remodeling in Triple-Negative Breast Cancer

Triple-negative breast cancer (TNBC) is an aggressive and molecularly heterogeneous breast cancer subtype. We developed a six-gene oxidative stress-related signature (BAG5, ANXA2, LONP1, GBE1, CBR1, and DDIT4) in GSE58812 (107 patients; 29 deaths) and evaluated its transportability in GSE21653 (83 TNBC patients; 25 disease-free-survival events). Apparent discovery performance was high (C-index 0.823; 1-, 3-, and 5-year AUCs 0.962, 0.838, and 0.871), but repeated 5-fold out-of-fold evaluation across 50 repeats yielded a lower mean C-index of 0.764, indicating optimism in the apparent estimates. In GSE21653, the fully frozen continuous score showed modest discrimination for disease-free survival (C-index 0.626). The discovery-derived cutoff classified all 83 external patients as low risk; therefore, the categorical classifier was not externally validated and should not be used clinically. Bulk-transcriptome analyses associated higher discovery-cohort risk with hypoxia-related and ferroptosis-protection gene-expression programs and with lower interferon-gamma, cytotoxic T/NK, and antigen-presentation signatures. CD276 and VTCN1 transcript levels were also higher in the high-risk group. These immune and redox findings are transcriptomic associations rather than direct measurements of immune-cell abundance, ferroptosis sensitivity, or checkpoint-protein expression. The signature and its biological associations are therefore hypothesis-generating and require validation in larger endpoint-matched cohorts and functional studies.

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Journal
Oxygen
Published
2026-10-09
DOI
https://doi.org/10.3390/oxygen6040030
Primary Topic
Breast Cancer Treatment Studies
Type
article
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article

Oxidative Stress-Related Prognostic Signature Defines Redox Adaptation and Immune Remodeling in Triple-Negative Breast Cancer

Sirinya Sitthirak, Rujira Nonsa-ard, Pattamaporn Kwankaew, Saengrawee Thammawithan et al.
Oxygen
Breast Cancer Treatment Studies
article

Oxidative Stress-Related Prognostic Signature Defines Redox Adaptation and Immune Remodeling in Triple-Negative Breast Cancer

Sirinya Sitthirak, Rujira Nonsa-ard, Pattamaporn Kwankaew, Saengrawee Thammawithan, Jie Cui, Nopparut Gota
article en

Abstract

Triple-negative breast cancer (TNBC) is an aggressive and molecularly heterogeneous breast cancer subtype. We developed a six-gene oxidative stress-related signature (BAG5, ANXA2, LONP1, GBE1, CBR1, and DDIT4) in GSE58812 (107 patients; 29 deaths) and evaluated its transportability in GSE21653 (83 TNBC patients; 25 disease-free-survival events). Apparent discovery performance was high (C-index 0.823; 1-, 3-, and 5-year AUCs 0.962, 0.838, and 0.871), but repeated 5-fold out-of-fold evaluation across 50 repeats yielded a lower mean C-index of 0.764, indicating optimism in the apparent estimates. In GSE21653, the fully frozen continuous score showed modest discrimination for disease-free survival (C-index 0.626). The discovery-derived cutoff classified all 83 external patients as low risk; therefore, the categorical classifier was not externally validated and should not be used clinically. Bulk-transcriptome analyses associated higher discovery-cohort risk with hypoxia-related and ferroptosis-protection gene-expression programs and with lower interferon-gamma, cytotoxic T/NK, and antigen-presentation signatures. CD276 and VTCN1 transcript levels were also higher in the high-risk group. These immune and redox findings are transcriptomic associations rather than direct measurements of immune-cell abundance, ferroptosis sensitivity, or checkpoint-protein expression. The signature and its biological associations are therefore hypothesis-generating and require validation in larger endpoint-matched cohorts and functional studies.

OxygenVol. 6(4)
Mahasarakham University (TH), Khon Kaen University (TH), Western General Hospital (GB), Institute of Genetics and Cancer (GB), MRC Human Genetics Unit, Walailak University (TH), University of Edinburgh (GB)
Openalex Percentile: Top 18%
Breast Cancer Treatment Studies
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