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PMID: 41860994 已发表 · ppublish 英语

Macrophages restrict tumor immune infiltration by controlling collagen topography.

Science immunology ·第 11 卷 ·第 117 期 ·2026-03-20

Fusilier Z, Clément A, Simon F, Calvente I, Jean-Marie R, Mathieu M, Calmettes V, Piastra-Facon F, Quintana-Perez Y, Clement JG, Crestey L, Lumineau E, Henninger R, Tonani M, Manriquez V, Lacerda Mariano L, Bensaid L, de Villemagne P, Piaggio E, Semetey V, Coscoy S, Martini E, Scita G, Gelly JC, Ivaska J, Isambert H, Goudot C, Pierobon P, Lennon-Duménil AM, Moreau HD

摘要

During tumorigenesis, the extracellular matrix is extensively remodeled. Whereas the impact of such remodeling on tumor growth and invasion is well described, the consequences on immune infiltration are not well understood. Combining tissue imaging and machine learning, we show that immune cell localization in tumors can be predicted by the local topography of fibrillar collagens. Such topographies are dictated by a fibrotic pathway driven by transcription factor 4 (Tcf4) in both cancer and stromal cells, which promotes collagen III deposition and results in intermingled collagen networks that favor intratumor infiltration of T cells and neutrophils. Macrophages inhibit this pathway, highlighting their key structural role in shaping the tumor extracellular matrix. Reanalysis of data from human solid tumors revealed a strong correlation between TCF4, COL3A1, and T cell and neutrophil signatures. Together, our data identify collagen network topographies as a key regulator of tumor-infiltrating immune cells.

文献信息
期刊
Science immunology
期刊简称
Sci Immunol
ISSN
2470-9468
发表日期
2026-03-20
语言
英语
国家/地区
United States
NLM ID
101688624
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