B7-H4 expression identifies a novel suppressive macrophage population in human ovarian carcinoma
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Open Access
- 10 April 2006
- journal article
- Published by Rockefeller University Press in The Journal of Experimental Medicine
- Vol. 203 (4) , 871-881
- https://doi.org/10.1084/jem.20050930
Abstract
Tumor-associated macrophages are a prominent component of ovarian cancer stroma and contribute to tumor progression. B7-H4 is a recently identified B7 family molecule. We show that primary ovarian tumor cells express intracellular B7-H4, whereas a fraction of tumor macrophages expresses surface B7-H4. B7-H4+ tumor macrophages, but not primary ovarian tumor cells, suppress tumor-associated antigen-specific T cell immunity. Blocking B7-H4-, but not arginase-, inducible nitric oxide synthase or B7-H1 restored the T cell stimulating capacity of the macrophages and contributes to tumor regression in vivo. Interleukin (IL)-6 and IL-10 are found in high concentrations in the tumor microenvironment. These cytokines stimulate macrophage B7-H4 expression. In contrast, granulocyte/macrophage colony-stimulating factor and IL-4, which are limited in the tumor microenvironment, inhibit B7-H4 expression. Ectopic expression of B7-H4 makes normal macrophages suppressive. Thus, B7-H4+ tumor macrophages constitute a novel suppressor cell population in ovarian cancer. B7-H4 expression represents a critical checkpoint in determining host responses to dysfunctional cytokines in ovarian cancer. Blocking B7-H4 or depleting B7-H4+ tumor macrophages may represent novel strategies to enhance T cell tumor immunity in cancer.Keywords
This publication has 58 references indexed in Scilit:
- Regulatory T cells, tumour immunity and immunotherapyNature Reviews Immunology, 2006
- Regulation of immune responses by L-arginine metabolismNature Reviews Immunology, 2005
- Mechanisms and functional significance of tumour-induced dendritic-cell defectsNature Reviews Immunology, 2004
- A Paracrine Loop between Tumor Cells and Macrophages Is Required for Tumor Cell Migration in Mammary TumorsCancer Research, 2004
- Inflammation and necrosis promote tumour growthNature Reviews Immunology, 2004
- The promise of cancer vaccinesNature Reviews Cancer, 2004
- Co-inhibitory molecules of the B7–CD28 family in the control of T-cell immunityNature Reviews Immunology, 2004
- Tumour-educated macrophages promote tumour progression and metastasisNature Reviews Cancer, 2004
- Natural selection of tumor variants in the generation of “tumor escape” phenotypesNature Immunology, 2002
- The role of tumour‐associated macrophages in tumour progression: implications for new anticancer therapiesThe Journal of Pathology, 2002