Tumor-associated macrophages restrict CD8+ T cell function through collagen deposition and metabolic reprogramming of the breast cancer microenvironment

肿瘤相关巨噬细胞通过胶原沉积和乳腺癌微环境的代谢重编程来限制CD8+ T细胞的功能。

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作者:Kevin M Tharp ,Kelly Kersten ,Ori Maller ,Greg A Timblin ,Connor Stashko ,Fernando P Canale ,Rosa E Menjivar ,Mary-Kate Hayward ,Ilona Berestjuk ,Johanna Ten Hoeve ,Bushra Samad ,Alastrair J Ironside ,Marina Pasca di Magliano ,Alexander Muir ,Roger Geiger ,Alexis J Combes ,Valerie M Weaver

Abstract

Tumor progression is accompanied by fibrosis, a condition of excessive extracellular matrix accumulation, which is associated with diminished antitumor immune infiltration. Here we demonstrate that tumor-associated macrophages (TAMs) respond to the stiffened fibrotic tumor microenvironment (TME) by initiating a collagen biosynthesis program directed by transforming growth factor-β. A collateral effect of this programming is an untenable metabolic milieu for productive CD8+ T cell antitumor responses, as collagen-synthesizing macrophages consume environmental arginine, synthesize proline and secrete ornithine that compromises CD8+ T cell function in female breast cancer. Thus, a stiff and fibrotic TME may impede antitumor immunity not only by direct physical exclusion of CD8+ T cells but also through secondary effects of a mechano-metabolic programming of TAMs, which creates an inhospitable metabolic milieu for CD8+ T cells to respond to anticancer immunotherapies.

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