Inflammatory fibroblasts mediate resistance to neoadjuvant therapy in rectal cancer
IL-1 signallin; IL1RN SN; cancer-associated fibroblast; neoadjuvant therap; rectal cance; senescence;直肠癌;治疗- Cancer Cell
- 44.5
- 40(2):168-184.e13.
- Human
- Luminex
- 消化系统
- 消化系统
- 成纤维细胞
- 肠癌
- G-CSF,GM-CSF,IFN-γ,IL-10,IL-12(p70),IL-13,IL-17A,IL-1β,IL-2,IL-4,IL-5,IL-6,IL-7,IL-8/CXCL8,MCP-1/CCL2,MIP-1β,TNF-α,IL-1Rα,IL-9,IL-15,FGF-basic,Eotaxin/CCL11,IP-10/CXCL10,MIP-1α/CCL3,PDGF-BB,RANTES,VEGF-A
- doi: 10.1016/j.ccell.2022.01.004.
相关货号
LXLBH27-1
Abstract
Standard cancer therapy targets tumor cells without considering possible damage on the tumor microenvironment that could impair therapy response. In rectal cancer patients we find that inflammatory cancer-associated fibroblasts (iCAFs) are associated with poor chemoradiotherapy response. Employing a murine rectal cancer model or patient-derived tumor organoids and primary stroma cells, we show that, upon irradiation, interleukin-1α (IL-1α) not only polarizes cancer-associated fibroblasts toward the inflammatory phenotype but also triggers oxidative DNA damage, thereby predisposing iCAFs to p53-mediated therapy-induced senescence, which in turn results in chemoradiotherapy resistance and disease progression. Consistently, IL-1 inhibition, prevention of iCAFs senescence, or senolytic therapy sensitizes mice to irradiation, while lower IL-1 receptor antagonist serum levels in rectal patients correlate with poor prognosis. Collectively, we unravel a critical role for iCAFs in rectal cancer therapy resistance and identify IL-1 signaling as an attractive target for stroma-repolarization and prevention of cancer-associated fibroblasts senescence. Keywords: IL-1 signalling; IL1RN SNP; cancer-associated fibroblasts; neoadjuvant therapy; rectal cancer; senescence.
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