CSF1/CSF1R Signaling Inhibitor Pexidartinib (PLX3397) Reprograms Tumor-Associated Macrophages and Stimulates T-cell Infiltration in the Sarcoma Microenvironment

肿瘤微环境 癌症研究 骨肉瘤 转移 化学 巨噬细胞极化 免疫疗法 FOXP3型 巨噬细胞 癌症 免疫系统 免疫学 医学 体外 内科学 肿瘤细胞 生物化学
作者
Tomohiro Fujiwara,Mohamed A. Yakoub,Andrew Chandler,Alexander B. Christ,Guangli Yang,Ouathek Ouerfelli,Vinagolu K. Rajasekhar,Aki Yoshida,Hiroya Kondo,Toshiaki Hata,Hiroshi Tazawa,Yildirim Dogan,Malcolm A.S. Moore,Toshiyoshi Fujiwara,Toshifumi Ozaki,Ed Purdue,John H. Healey
出处
期刊:Molecular Cancer Therapeutics [American Association for Cancer Research]
卷期号:20 (8): 1388-1399 被引量:173
标识
DOI:10.1158/1535-7163.mct-20-0591
摘要

Colony-stimulating factor 1 (CSF1) is a primary regulator of the survival, proliferation, and differentiation of monocyte/macrophage that sustains the protumorigenic functions of tumor-associated macrophages (TAMs). Considering current advances in understanding the role of the inflammatory tumor microenvironment, targeting the components of the sarcoma microenvironment, such as TAMs, is a viable strategy. Here, we investigated the effect of PLX3397 (pexidartinib) as a potent inhibitor of the CSF1 receptor (CSF1R). PLX3397 was recently approved by the Food and Drug Administration (FDA) to treat tenosynovial giant cell tumor and reprogram TAMs whose infiltration correlates with unfavorable prognosis of sarcomas. First, we confirmed by cytokine arrays of tumor-conditioned media (TCM) that cytokines including CSF1 are secreted from LM8 osteosarcoma cells and NFSa fibrosarcoma cells. The TCM, like CSF1, stimulated ERK1/2 phosphorylation in bone marrow-derived macrophages (BMDMs), polarized BMDMs toward an M2 (TAM-like) phenotype, and strikingly promoted BMDM chemotaxis. In vitro administration of PLX3397 suppressed pERK1/2 stimulation by CSF1 or TCM, and reduced M2 polarization, survival, and chemotaxis in BMDMs. Systemic administration of PLX3397 to the osteosarcoma orthotopic xenograft model significantly suppressed the primary tumor growth and lung metastasis, and thus improved metastasis-free survival. PLX3397 treatment concurrently depleted TAMs and FOXP3+ regulatory T cells and, surprisingly, enhanced infiltration of CD8+ T cells into the microenvironments of both primary and metastatic osteosarcoma sites. Our preclinical results show that PLX3397 has strong macrophage- and T-cell-modulating effects that may translate into cancer immunotherapy for bone and soft-tissue sarcomas.
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