ArticleInternational journal of biological sciences2026
Mechanical stress-induced STAT3/YAP signaling in fibroblasts programs immunosuppressive lymph node remodeling in lung squamous carcinoma.
Article in International journal of biological sciences, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.
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Abstract
Lung squamous cell carcinoma (LUSC) frequently metastasizes to lymph nodes, yet how tumor-intrinsic biomechanical cues influence nodal immune environments remains unclear. Here, we identify solid stress, generated during tumor expansion, as a key driver of pre-metastatic niche formation in tumor-draining lymph nodes (TDLNs). Using murine models with defined solid stress levels, we show that high-stress tumors induce early TDLN remodeling characterized by fibroblast activation and accumulation of immunosuppressive S100a8⁺ myeloid cells. Single-cell and spatial transcriptomics reveal that Col1a1⁺ fibroblasts upregulate STAT3 and YAP-dependent chemokines (CCL2, CSF1), establishing a fibroblast-myeloid signaling axis that supports myeloid recruitment and suppresses CD8⁺ T cell infiltration. Functional blockade of CCR2, CSF1R, STAT3, or YAP disrupts fibroblast-myeloid co-localization, restores antigen-presenting cell populations, and enhances CD8⁺ cytotoxic T cells activity, leading to reduced lymph node metastasis and improved survival. Mechanistically, chromatin accessibility and ChIP assays reveal direct binding of p-STAT3 and YAP at inflammatory enhancer elements in fibroblasts under mechanical strain. Cross-species spatial transcriptomic analysis confirms the inverse association between Col1a1⁺ fibroblast density and CD8A⁺ T cell presence in human LUSC tissues. Our findings uncover a mechano-immune circuit whereby tumor-derived solid stress activates fibroblast-STAT3/YAP signaling to remodel TDLNs into immunosuppressive, metastasis-permissive niches. Targeting this biomechanical axis offers a promising strategy to intercept early lymphatic dissemination in LUSC.
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