Jinyan Wang, Shuangyue Pan, Lu Bai, Bin Li, Tiantian Liu, Jianing Cao, Mengdi Yang, Heda Zhang, Duancheng Guo, Wenxiang Zhi, Zhonghua Tao, Xichun Hu
Triple-negative breast cancer (TNBC) is an aggressive subtype characterized by poor prognosis because of a lack of effective therapeutic agents. Changes in extracellular matrix (ECM) composition, particularly type I collagen density, significantly influence crucial cellular activities. However, the association between type I collagen density and TNBC progression remains unclear. This study finds that type I collagen density and mechanical characteristics of lesions predict the pathological grade and malignant progression of TNBC patients. The results of transcriptomics and metabolomics studies suggest that high-density type I collagen promotes TNBC ferroptosis. Further in vitro experiments indicate that high-density type I collagen promotes ferroptosis in TNBC cells through spermidine/spermine N1-acetyltransferase 1 (SAT1)/argininosuccinate synthase (ASS1)-induced glutamine (Gln) accumulation. Moreover, in vitro co-culture and in vivo experiments reveal that high-density type I collagen increases the uptake of Gln in TNBC cells, leading to Gln deprivation of IFN-γ+ CD8+ T cells in the tumor microenvironment, resulting in higher level of immunosuppression. Combination of ferrostatin 1 and anti-PD-1 therapy reverses high-density collagen-induced tumor progression of TNBC. The clinical samples further verify the role of collagen density in TNBC. This study reveals that high-density type I collagen participates in TNBC progression partly through immunosuppression induced by Gln accumulation-related ferroptosis.