Oncotarget 2015-05-10

Sunitinib but not VEGF blockade inhibits cancer stem cell endothelial differentiation.

Alessia Brossa, Cristina Grange, Letizia Mancuso, Laura Annaratone, Maria Antonietta Satolli, Massimiliano Mazzone, Giovanni Camussi, Benedetta Bussolati

Index: Oncotarget 6 , 11295-309, (2015)

Full Text: HTML

Abstract

Different mechanisms of angiogenesis and vasculogenesis are involved in the development of the tumor vasculature. Among them, cancer stem cells are known to contribute to tumor vasculogenesis through their direct endothelial differentiation. Here, we investigated the effect of anti-angiogenic therapy on vasculogenesis of cancer stem cells derived from breast and renal carcinomas. We found that all the anti-angiogenic approaches impaired proliferation and survival of cancer stem cells once differentiated into endothelial cells in vitro and reduced murine angiogenesis in vivo. At variance, only VEGF-receptor inhibition using the non-specific tyrosine kinase inhibitor Sunitinib or the anti-VEGF-receptor 2 neutralizing antibody, but not VEGF blockade using Bevacizumab, impaired the process of endothelial differentiation in vitro, suggesting a VEGF-independent mechanism. In addition, tyrosine kinase inhibition by Sunitinib but not VEGF blockade using the soluble VEGF trap sFlk1 inhibited the cancer stem cell-induced vasculogenesis in vivo. Accordingly, Sunitinib but not Bevacizumab inhibited the induction of hypoxia-inducible factor pathway occurring during endothelial differentiation under hypoxia. The present results highlight a differential effect of VEGF-receptor blockade versus VEGF inhibition in tumor vascularization. VEGFR blockade inhibits the process of tumor vasculogenesis occurring during tumor hypoxia whereas the effect of VEGF inhibition appears restricted to differentiated endothelial cells.


Related Compounds

Related Articles:

Imaging of a clinically relevant stroke model: glucose hypermetabolism revisited.

2015-03-01

[Stroke 46(3) , 835-42, (2015)]

Surface modifications of silica nanoparticles are crucial for their inert versus proinflammatory and immunomodulatory properties.

2014-01-01

[Int. J. Nanomedicine 9 , 2815-32, (2014)]

Uptake of neutrophil-derived Ym1 protein distinguishes wound macrophages in the absence of interleukin-4 signaling in murine wound healing.

2014-12-01

[Am. J. Pathol. 184(12) , 3249-61, (2014)]

Brain pericyte-derived soluble factors enhance insulin sensitivity in GT1-7 hypothalamic neurons.

2015-02-20

[Biochem. Biophys. Res. Commun. 457(4) , 532-7, (2015)]

Evaluation of a dental pulp-derived cell sheet cultured on amniotic membrane substrate.

2015-01-01

[Biomed Mater Eng 25(2) , 203-12, (2015)]

More Articles...