IL-10R inhibition reprograms tumor-associated macrophages and reverses drug resistance in multiple myeloma.
Jennifer SunStefan CorradiniFeda AzabMonica ShokeenBarbara MuzKaterina E MiariMina MaksimosCamila DiedrichObed AsareKinan AlhallakChaelee ParkBerit LubbenYixuan ChenOla AdebayoHannah BashSarah KelleyMark A FialaDiane E BenderHaibin ZhouShaomeng WangRavi VijMark T S WilliamsAbdel Kareem AzabPublished in: Leukemia (2024)
Multiple myeloma (MM) is the cancer of plasma cells within the bone marrow and remains incurable. Tumor-associated macrophages (TAMs) within the tumor microenvironment often display a pro-tumor phenotype and correlate with tumor proliferation, survival, and therapy resistance. IL-10 is a key immunosuppressive cytokine that leads to recruitment and development of TAMs. In this study, we investigated the role of IL-10 in MM TAM development as well as the therapeutic application of IL-10/IL-10R/STAT3 signaling inhibition. We demonstrated that IL-10 is overexpressed in MM BM and mediates M2-like polarization of TAMs in patient BM, 3D co-cultures in vitro, and mouse models. In turn, TAMs promote MM proliferation and drug resistance, both in vitro and in vivo. Moreover, inhibition of IL-10/IL-10R/STAT3 axis using a blocking IL-10R monoclonal antibody and STAT3 protein degrader/PROTAC prevented M2 polarization of TAMs and the consequent TAM-induced proliferation of MM, and re-sensitized MM to therapy, in vitro and in vivo. Therefore, our findings suggest that inhibition of IL-10/IL-10R/STAT3 axis is a novel therapeutic strategy with monotherapy efficacy and can be further combined with current anti-MM therapy, such as immunomodulatory drugs, to overcome drug resistance. Future investigation is warranted to evaluate the potential of such therapy in MM patients.
Keyphrases
- bone marrow
- cell proliferation
- signaling pathway
- clinical trial
- randomized controlled trial
- mesenchymal stem cells
- chronic kidney disease
- monoclonal antibody
- newly diagnosed
- mass spectrometry
- young adults
- high glucose
- small molecule
- fluorescent probe
- climate change
- endothelial cells
- living cells
- single molecule
- lymph node metastasis