bioRxiv · 10.1101/2024.07.16.603739
High-motility pro-tumorigenic monocytes drive macrophage enrichment in the tumor microenvironment
Abstract
Enrichment of tumor-associated macrophages (TAM{Phi}s) in the tumor microenvironment correlates with worse clinical outcomes in triple-negative breast cancer (TNBC) patients, prompting the development of therapies to inhibit TAM{Phi} infiltration. However, the lackluster efficacy of CCL2-based chemotaxis blockade in clinical trials suggests that a new understanding of monocyte/macrophage infiltration may be necessary. Here we demonstrate that random migration, and not only chemotaxis, drives macrophage tumor infiltration. We identified tumor- associated monocytes (TAMos) that display a dramatically enhanced migration capability, induced rapidly by the tumor microenvironment, that drives effective tumor infiltration, in contrast to low-motility differentiated macrophages. TAMo, not TAM{Phi}, promotes cancer cell proliferation through activation of the MAPK pathway. IL-6 secreted both by cancer cells and TAMo themselves enhances TAMo migration by increasing dendritic protrusion dynamics and myosin- based contractility via the JAK2/STAT3 signaling pathway. Independent from CCL2 mediated chemotaxis, IL-6 driven enhanced migration and pro-proliferative effect of TAMo were validated in a syngeneic TNBC mouse model. Depletion of IL-6 in cancer cells significantly attenuated monocyte infiltration and reversed TAMo-induced cancer cell proliferation. This work reveals the critical role random migration plays in monocyte driven TAM{Phi} enrichment in a tumor and pinpoints IL-6 as a potential therapeutic target in combination with CCL2 to ameliorate current strategies against TAM{Phi} infiltration.
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Du, W., Zhou, B., Forjaz, A., Shin, S. M., Wu, F., Crawford, A. J., Nair, P. R., Johnston, A. C., West-Foyle, H., Tang, A., Kim, D., Fan, R., Kiemen, A. L., Wu, P.-H., Phillip, J. M., Ho, W. J., Sanin, D. E., Wirtz, D.. 2024-07-18. High-motility pro-tumorigenic monocytes drive macrophage enrichment in the tumor microenvironment. https://doi.org/10.1101/2024.07.16.603739
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