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Macrophage-supported metabolic adaptation drives tumor survival under nutrient stress.

Created on 03 Oct 2026

Authors

Nancy T Santiappillai, Andrew Cho, Georg Verch, Ana C Codo, Achuth Nair, Ya-Ting Wang, Allie Lipshutz, Celia Martínez de la Torre, Eric Minwei Liu, Marjan Berishaj, Alissa J Trzeciak, Zhaoquan Wang, Michelle Saoi, Waleska Saitz Rojas, Justin R Cross, Ed Reznik, Justin S A Perry, Kayvan R Keshari

Published in

Science advances. Volume 12. Issue 40. Pages eaei2831. Oct 02, 2026. Epub Oct 02, 2026.

Abstract

Triple-negative breast cancer (TNBC) develops in hypoxic, nutrient-limited tumors enriched with macrophages and cell death. We show that metabolically distinct TNBCs differentially exploit macrophage-derived nutrients, influencing tumor growth and therapeutic response. Prolonged hypoxia reprogrammed mouse and human macrophages, enabling them to release metabolites that rescued the growth of select TNBC cell lines during glutamine deprivation or glutamine metabolism inhibition. Hypoxic macrophages reduced glutamine consumption, increased arginine utilization, and secreted higher levels of ornithine, an intermediate of arginine metabolism. Exogenous ornithine, but not arginine, restored the growth of responsive TNBC cells. Mechanistically, TNBC cells diverted ornithine into proline biosynthesis, supporting oxidative pentose phosphate pathway activity. In vivo, depletion of tumor-associated myeloid cells reduced tumor growth and impaired proline synthesis in glutaminase inhibitor-resistant TNBC. These findings identify hypoxia-driven metabolic cross-talk between macrophages and TNBC cells, revealing ornithine-dependent proline metabolism as a mechanism by which macrophages sustain tumor growth under nutrient stress and contribute to resistance to glutamine-targeted therapies.

PMID:
42826203
Bibliographic data and abstract were imported from PubMed on 03 Oct 2026.

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