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Overview on the Different Patterns of Tumor Vascularization

Journal

CELLS
Volume 10, Issue 3, Pages -

Publisher

MDPI
DOI: 10.3390/cells10030639

Keywords

angiogenesis; tumor growth; vascular co-option; vasculogenic mimicry

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Angiogenesis is crucial in embryogenesis and wound healing, but dysregulation can lead to tumor vascular network formation. Despite the solid scientific foundation, alternative mechanisms like vascular co-option and vasculogenic mimicry challenge conventional understanding of tumor vascularization and resistance to anti-angiogenic therapy.
Angiogenesis is a crucial event in the physiological processes of embryogenesis and wound healing. During malignant transformation, dysregulation of angiogenesis leads to the formation of a vascular network of tumor-associated capillaries promoting survival and proliferation of the tumor cells. Starting with the hypothesis formulated by Judah Folkman that tumor growth is angiogenesis-dependent, this area of research has a solid scientific foundation and inhibition of angiogenesis is a major area of therapeutic development for the treatment of cancer. Over this period numerous authors published data of vascularization of tumors, which attributed the cause of neo-vascularization to various factors including inflammation, release of angiogenic cytokines, vasodilatation, and increased tumor metabolism. More recently, it has been demonstrated that tumor vasculature is not necessarily derived by endothelial cell proliferation and sprouting of new capillaries, but alternative vascularization mechanisms have been described, namely vascular co-option and vasculogenic mimicry. In this article, we have analyzed the mechanisms involved in tumor vascularization in association with classical angiogenesis, including post-natal vasculogenesis, intussusceptive microvascular growth, vascular co-option, and vasculogenic mimicry. We have also discussed the role of these alternative mechanism in resistance to anti-angiogenic therapy and potential therapeutic approaches to overcome resistance.

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