Abstract

Abstract Tumor-induced tolerance is a well-established phenomenon in cancer patients that can severely impair the therapeutic efficacy of immunotherapy. One mechanism leading to T-cell tolerance is the generation of myeloid-derived suppressor cells (MDSC) by soluble factors produced by the tumor. MDSC express CD11b+ as a common marker but may vary in their stage of maturation, depending on the tumor factors being produced. Arginase production by MDSC depletes arginine from the tumor microenvironment and impairs T-cell signal transduction and function. We studied whether an increase in MDSC could explain the molecular alterations and dysfunction found in T cells of patients with renal cell carcinoma (RCC). Arginase activity in the peripheral blood mononuclear cells of 117 RCC patients was increased between 6- to 8-fold compared with normal controls. The increased arginase activity was limited to the CD11b+CD14− myeloid cells and resulted in significantly decreased serum levels of arginine and increased ornithine in patients. Depletion of MDSC restored IFN-γ production and T-cell proliferation. Preliminary data suggest that prostaglandin E2 produced by the tumor induces arginase I expression in MDSC. Therefore, blocking MDSC activity may enhance the therapeutic efficacy of immunotherapy in RCC.

Keywords

ArginaseMyeloid-derived Suppressor CellCancer researchTumor microenvironmentT cellImmunotherapyPeripheral blood mononuclear cellRenal cell carcinomaOrnithineImmunologyCancerMedicineArginineImmune systemChemistryInternal medicineSuppressorBiochemistryIn vitro

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Publication Info

Year
2007
Type
review
Volume
13
Issue
2
Pages
721s-726s
Citations
479
Access
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Augusto C. Ochoa, Arnold H. Zea, Claudia Hernandez et al. (2007). Arginase, Prostaglandins, and Myeloid-Derived Suppressor Cells in Renal Cell Carcinoma. Clinical Cancer Research , 13 (2) , 721s-726s. https://doi.org/10.1158/1078-0432.ccr-06-2197

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DOI
10.1158/1078-0432.ccr-06-2197