From sprouting angiogenesis to erythrocytes generation by cancer stem cells: Evolving concepts in tumor microcirculation
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Hindawi Publishing Corporation
Abstract
Angiogenesis is essential for tumor growth and metastasis. Over the last decades, a substantial progress has been achieved in defining different patterns of tumor microcirculation. Sprouting angiogenesis, the oldest model of microcirculation, is the de novo vessel formation from preexisting blood vessels. Vessel splitting and hijacking, also known, respectively, as intussusception and cooption, are alternative models that account for tumor resistance to antiangiogenic therapy. In addition to remodeling the microenvironment, the tumor cell can undergo intrinsic changes and survive hypoxic conditions by acquiring stem cell properties. In line with the concept of pluripotency, tumor cells can form vascular mimicry structures creating their own microcirculation despite a latent vessel growth. The recent identification of the polyploid giant cancer cells and tumor-derived erythrocytes is the most innovative survival mechanism in hypoxia and provides a potential target for more effective therapies. © 2014 Raafat S. Alameddine et al.
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Angiogenesis inhibitors, Epithelial-mesenchymal transition, Erythrocytes, Humans, Microcirculation, Neoplasm metastasis, Neoplasms, Neoplastic cells, circulating, Neoplastic stem cells, Neovascularization, pathologic, Angiogenesis inhibitor, Beta catenin, Immunoglobulin enhancer binding protein, Mammalian target of rapamycin, Notch receptor, Phosphatidylinositol 3 kinase, Sonic hedgehog protein, Wnt protein, Angiogenesis, Cancer stem cell, Endothelium, Epithelial mesenchymal transition, Erythrocyte, Human, Intussusception, Nonhuman, Plasticity, Polyploid giant cancer cell, Review, Tumor microenvironment, Wnt signaling pathway, Genetics, Metabolism, Metastasis, Neoplasm, Neovascularization (pathology), Pathology, Tumor embolism