Cancer-Associated Fibroblasts Neutralize the Anti-tumor Effect of CSF1 Receptor Blockade by Inducing PMN-MDSC Infiltration of Tumors

癌症相关成纤维细胞通过诱导 PMN-MDSC 浸润肿瘤来中和 CSF1 受体阻断的抗肿瘤作用

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作者:Vinit Kumar ,Laxminarasimha Donthireddy ,Douglas Marvel ,Thomas Condamine ,Fang Wang ,Sergio Lavilla-Alonso ,Ayumi Hashimoto ,Prashanthi Vonteddu ,Reeti Behera ,Marlee A Goins ,Charles Mulligan ,Brian Nam ,Neil Hockstein ,Fred Denstman ,Shanti Shakamuri ,David W Speicher ,Ashani T Weeraratna ,Timothy Chao ,Robert H Vonderheide ,Lucia R Languino ,Peter Ordentlich ,Qin Liu ,Xiaowei Xu ,Albert Lo ,Ellen Puré ,Chunsheng Zhang ,Andrey Loboda ,Manuel A Sepulveda ,Linda A Snyder ,Dmitry I Gabrilovich

Abstract

Tumor-associated macrophages (TAM) contribute to all aspects of tumor progression. Use of CSF1R inhibitors to target TAM is therapeutically appealing, but has had very limited anti-tumor effects. Here, we have identified the mechanism that limited the effect of CSF1R targeted therapy. We demonstrated that carcinoma-associated fibroblasts (CAF) are major sources of chemokines that recruit granulocytes to tumors. CSF1 produced by tumor cells caused HDAC2-mediated downregulation of granulocyte-specific chemokine expression in CAF, which limited migration of these cells to tumors. Treatment with CSF1R inhibitors disrupted this crosstalk and triggered a profound increase in granulocyte recruitment to tumors. Combining CSF1R inhibitor with a CXCR2 antagonist blocked granulocyte infiltration of tumors and showed strong anti-tumor effects.

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