Neutrophils responsive to endogenous IFN-β regulate tumor angiogenesis and growth in a mouse tumor model
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Open Access
- 1 April 2010
- journal article
- Published by American Society for Clinical Investigation in Journal of Clinical Investigation
- Vol. 120 (4) , 1151-1164
- https://doi.org/10.1172/jci37223
Abstract
Angiogenesis is a hallmark of malignant neoplasias, as the formation of new blood vessels is required for tumors to acquire oxygen and nutrients essential for their continued growth and metastasis. However, the signaling pathways leading to tumor vascularization are not fully understood. Here, using a transplantable mouse tumor model, we have demonstrated that endogenous IFN-β inhibits tumor angiogenesis through repression of genes encoding proangiogenic and homing factors in tumor-infiltrating neutrophils. We determined that IFN-β–deficient mice injected with B16F10 melanoma or MCA205 fibrosarcoma cells developed faster-growing tumors with better-developed blood vessels than did syngeneic control mice. These tumors displayed enhanced infiltration by CD11b+Gr1+ neutrophils expressing elevated levels of the genes encoding the proangiogenic factors VEGF and MMP9 and the homing receptor CXCR4. They also expressed higher levels of the transcription factors c-myc and STAT3, known regulators of VEGF, MMP9, and CXCR4. In vitro, treatment of these tumor-infiltrating neutrophils with low levels of IFN-β restored expression of proangiogenic factors to control levels. Moreover, depletion of these neutrophils inhibited tumor growth in both control and IFN-β–deficient mice. We therefore suggest that constitutively produced endogenous IFN-β is an important mediator of innate tumor surveillance. Further, we believe our data help to explain the therapeutic effect of IFN treatment during the early stages of cancer development.Keywords
This publication has 70 references indexed in Scilit:
- Ly6c+ “inflammatory monocytes” are microglial precursors recruited in a pathogenic manner in West Nile virus encephalitisThe Journal of Experimental Medicine, 2008
- HIF1α Induces the Recruitment of Bone Marrow-Derived Vascular Modulatory Cells to Regulate Tumor Angiogenesis and InvasionCancer Cell, 2008
- Regulation of CXCR4 signalingBiochimica et Biophysica Acta (BBA) - Biomembranes, 2007
- Infiltrating neutrophils mediate the initial angiogenic switch in a mouse model of multistage carcinogenesisProceedings of the National Academy of Sciences, 2006
- Pathological angiogenesis is induced by sustained Akt signaling and inhibited by rapamycinCancer Cell, 2006
- NF-κB: linking inflammation and immunity to cancer development and progressionNature Reviews Immunology, 2005
- Tumour-educated macrophages promote tumour progression and metastasisNature Reviews Cancer, 2004
- RANKL maintains bone homeostasis through c-Fos-dependent induction of interferon-βNature, 2002
- The Hallmarks of CancerCell, 2000
- What Is the Evidence That Tumors Are Angiogenesis Dependent?JNCI Journal of the National Cancer Institute, 1990