bioRxiv · 10.1101/2023.03.03.530773
An IL-1β driven neutrophil-stromal cell axis fosters a BAFF-rich microenvironment in multiple myeloma
Abstract
The bone marrow permanently harbors high numbers of neutrophils, and a tumor-supportive bias of these cells could significantly impact bone marrow-confined malignancies. In multiple myeloma, the bone marrow is characterized by inflammatory stromal cells with the potential to influence neutrophils. We investigated myeloma-associated alterations in marrow neutrophils and the impact of stromal inflammation on neutrophil function. Mature neutrophils in myeloma marrow are activated and tumor-supportive, transcribing increased levels of IL-1{beta}, and myeloma cell survival factor BAFF. Interactions with inflammatory stromal cells can induce neutrophil activation, including BAFF secretion, in a STAT3-dependent manner and once activated, neutrophils gain the ability to reciprocally induce stromal activation. After first-line myeloid-depleting treatment, patient bone marrow retains residual stromal inflammation and newly-formed neutrophils are reactivated. Combined, we identify a neutrophil-stromal cell feed-forward loop driving tumor-supportive inflammation that persists after treatment and warrants novel strategies to target both stromal and immune microenvironments in multiple myeloma.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
de Jong, M. M., Fokkema, C., Papazian, N., van Heusden, T., Vermeulen, M., Hoogenboezem, R., van Beek, G., Tahri, S., Sanders, M. A., van de Woestijne, P., Gay, F., Moreau, P., Büttner-Herold, M., Bruns, H., van Duin, M., Broijl, A., Sonneveld, P., Cupedo, T.. 2023-03-05. An IL-1β driven neutrophil-stromal cell axis fosters a BAFF-rich microenvironment in multiple myeloma. https://doi.org/10.1101/2023.03.03.530773
Cite the original work for its findings. Save a collection to share your selection of sources.