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Direct and differential suppression of myeloid-derived suppressor cell subsets by sunitinib is compartmentally
Jennifer S Ko1, Patricia Rayman, Joanna Ireland
1Department of Immunology, Taussig Cancer Institute, and Glickman Urological Institute, Cleveland Clinic, Cleveland, Ohio, USA.
Abstract:
The antiangiogenic drug sunitinib is a receptor tyrosine kinase inhibitor with significant, yet not curative, therapeutic effects in metastatic renal cell carcinoma (RCC). Sunitinib is also an immunomodulator, potently reversing myeloid-derived suppressor cell (MDSC) accumulation and T-cell inhibition in the blood even of nonresponder RCC patients. We observed that sunitinib similarly prevented MDSC accumulation and restored normal T-cell function to the spleens of tumor-bearing mice, independent of the capacity of sunitinib to inhibit tumor progression (RENCA>CT26>4T1). Both monocytic and neutrophilic splenic MDSC were highly repressible by sunitinib. In contrast, MDSC within the microenvironment of 4T1 tumors or human RCC tumors proved highly resistant to sunitinib and ambient T-cell function remained suppressed. Proteomic analyses comparing tumor to peripheral compartments showed that granulocyte macrophage colony-stimulating factor (GM-CSF) predicted sunitinib resistance and recombinant GM-CSF conferred sunitinib resistance to MDSC in vivo and in vitro. MDSC conditioning with GM-CSF uniquely inhibited signal transducers and activators of transcription (STAT3) and promoted STAT5 activation. STAT5ab(null/null) MDSC were rendered sensitive to sunitinib in the presence of GM-CSF in vitro. We conclude that compartment-dependent GM-CSF exposure in resistant tumors may account for the regionalized effect of sunitinib upon host MDSC modulation and hypothesize that ancillary strategies to decrease such regionalized escape will enhance the potency of sunitinib as an immunomodulator and a cancer therapy.
Insights
Sunitinib reverses myeloid-derived suppressor cells (MDSC) in blood and spleen but not tumors. Tumor microenvironments with granulocyte-macrophage colony-stimulating factor (GM-CSF) cause MDSC resistance, suggesting strategies to overcome this resistance could improve cancer therapy.
Area of Science:
- Immunology
- Pharmacology
- Oncology
Background:
- Sunitinib, an antiangiogenic drug, shows therapeutic effects in metastatic renal cell carcinoma (RCC) but is not curative.
- Sunitinib also acts as an immunomodulator, reversing myeloid-derived suppressor cell (MDSC) accumulation and T-cell inhibition in the blood of RCC patients.
Purpose of the Study:
- To investigate the effects of sunitinib on MDSC accumulation and T-cell function in different tumor microenvironments.
- To identify mechanisms of sunitinib resistance in MDSC within tumors.
Main Methods:
- Sunitinib treatment in tumor-bearing mice and in vitro MDSC cultures.
- Proteomic analysis to compare tumor and peripheral compartments.
- Assessment of T-cell function and MDSC populations.
Main Results:
- Sunitinib prevented MDSC accumulation and restored T-cell function in the spleens of tumor-bearing mice.
- MDSC within 4T1 tumors and human RCC tumors were resistant to sunitinib, with persistent T-cell suppression.
- Granulocyte-macrophage colony-stimulating factor (GM-CSF) in tumors predicted and conferred sunitinib resistance to MDSC.
- GM-CSF conditioning altered STAT3 and STAT5 signaling in MDSC, with STAT5 activation mediating sensitivity.
Conclusions:
- Compartment-dependent GM-CSF exposure in tumors contributes to sunitinib resistance in MDSC.
- Strategies to overcome regionalized GM-CSF-mediated MDSC escape could enhance sunitinib's efficacy as an immunomodulator and cancer therapy.
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