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Updated: Jun 4, 2025

Functional Characterization of Regulatory Macrophages That Inhibit Graft-reactive Immunity
Published on: June 7, 2017
Expanded tumor-associated polymorphonuclear myeloid-derived suppressor cells in Waldenstrom macroglobulinemia display
Vaishali Bhardwaj1, Zhi-Zhang Yang1, Shahrzad Jalali1
1Division of Hematology and Internal Medicine Mayo Clinic, Rochester, MN, USA.
Insights
Myeloid-derived suppressive cells (MDSCs) are increased in Waldenstrom macroglobulinemia (WM) bone marrow. These cells suppress antitumor immunity, suggesting MDSCs as a potential therapeutic target in WM.
Area of Science:
- Immunology
- Oncology
- Hematology
Background:
- The bone marrow microenvironment's role in Waldenstrom macroglobulinemia (WM) antitumor immunity is unclear.
- Myeloid-derived suppressive cells (MDSCs) are key regulators of immune suppression in cancer.
Purpose of the Study:
- To investigate the role of MDSCs in the WM bone marrow microenvironment.
- To characterize the phenotype and function of MDSCs in WM patients.
Main Methods:
- Transcriptional and phenotypic profiling of non-malignant bone marrow cells from WM patients.
- Single-cell immunogenomic profiling of WM MDSCs.
- In vitro functional assays assessing T-cell suppression and MDSC expansion.
Main Results:
- WM patients exhibit increased HLA-DRlowCD11b+CD33+ MDSCs, predominantly polymorphonuclear (PMN)-MDSCs.
- WM MDSCs display an immune-suppressive gene signature with upregulated interferon and TNF signaling pathways.
- WM PMN-MDSCs potently suppress T-cells and are expanded by G-CSF and TNFα; malignant B cells recruit PMN-MDSCs.
Conclusions:
- Malignant WM B cells recruit PMN-MDSCs, creating an immunosuppressive bone marrow microenvironment.
- PMN-MDSCs directly inhibit T-cells and are further expanded by microenvironmental factors.
- Targeting PMN-MDSCs represents a potential therapeutic strategy for WM.
Abstract:
The role of the bone marrow (BM) microenvironment in regulating the antitumor immune response in Waldenstrom macroglobulinemia (WM) remains poorly understood. Here we transcriptionally and phenotypically profiled non-malignant (CD19- CD138-) BM cells from WM patients with a focus on myeloid derived suppressive cells (MDSCs) to provide a deeper understanding of their role in WM. We found that HLA-DRlowCD11b+CD33+ MDSCs were significantly increased in WM patients as compared to normal controls, with an expansion of predominantly polymorphonuclear (PMN)-MDSCs. Single-cell immunogenomic profiling of WM MDSCs identified an immune-suppressive gene signature with upregulated inflammatory pathways associated with interferon and tumor necrosis factor (TNF) signaling. Gene signatures associated with an inflammatory and immune suppressive environment were predominately expressed in PMN-MDSCs. In vitro, WM PMN-MDSCs demonstrated robust T-cell suppression and their viability and expansion was notably enhanced by granulocyte colony stimulating factor (G-CSF) and TNFα. Furthermore, BM malignant B-cells attracted PMN-MDSCs to a greater degree than monocytic MDSCs. Collectively, these data suggest that malignant WM B cells actively recruit PMN-MDSCs which promote an immunosuppressive BM microenvironment through a direct T cell inhibition, while release of G-CSF/TNFα in the microenvironment further promotes PMN-MDSC expansion and in turn immune suppression. Targeting PMN-MDSCs may therefore represent a potential therapeutic strategy in patients with WM.
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