bioRxiv · 10.1101/2021.12.17.473184
Targeting macrophages with CAR-T cells delays solid tumor progression and enhances anti-tumor immunity
Abstract
Tumor-associated macrophages (TAMs) are one of the most abundant cell types in many solid tumors and typically exert protumor effects. This has led to an interest in macrophage-depleting agents for cancer therapy, but approaches developed to date have had limited success in clinical trials. Here, we report the development of a strategy for TAM depletion in mouse solid tumor models using chimeric antigen receptor (CAR) T cells targeting the macrophage marker F4/80 (F4.CAR-T). F4.CAR-T cells effectively killed macrophages in vitro and in vivo without toxicity. When injected into mice bearing orthotopic lung tumors, F4.CAR-T cells infiltrated tumor lesions and delayed tumor growth comparably to PD1 blockade, and significantly extended mouse survival. Anti-tumor effects were mediated by F4.CAR-T-produced IFN-{gamma}, which promoted upregulation of MHC molecules on cancer cells and tumor-infiltrating myeloid cells. Notably, F4.CAR-T promoted expansion of endogenous CD8 T cells specific for tumor-associated antigens and led to immune editing of highly antigenic tumor cell clones. Antitumor impact was also observed in mouse models of ovarian and pancreatic cancer. These studies provide proof-of-principle evidence to support CAR-T targeting of TAMs as a means to enhance antitumor immunity.
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Sanchez-Paulete, A. R., Mateus-Tique, J., Mollaoglu, G., Nielsen, S. R., Marks, A., Lakshmi, A., Pia, L., Baccarini, A., Merad, M., Brown, B. D.. 2021-12-20. Targeting macrophages with CAR-T cells delays solid tumor progression and enhances anti-tumor immunity. https://doi.org/10.1101/2021.12.17.473184
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