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Hypoxia-Inducible Factor-1 in Physiological and Pathophysiological Angiogenesis: Applications and Therapies

BioMed Research International · 2015 · Vol. 2015 · pp. 1–13
Agnieszka ZimnaMaciej Kurpisz

Abstract

The cardiovascular system ensures the delivery of oxygen and nutrients to all cells, tissues, and organs. Under extended exposure to reduced oxygen levels, cells are able to survive through the transcriptional activation of a series of genes that participate in angiogenesis, glucose metabolism, and cell proliferation. The oxygen-sensitive transcriptional activator HIF-1 (hypoxia-inducible factor-1) is a key transcriptional mediator of the response to hypoxic conditions. The HIF-1 pathway was found to be a master regulator of angiogenesis. Whether the process is physiological or pathological, HIF-1 seems to participate in vasculature formation by synergistic correlations with other proangiogenic factors such as VEGF (vascular endothelial growth factor), PlGF (placental growth factor), or angiopoietins. Considering the important contributions of HIF-1 in angiogenesis and vasculogenesis, it should be considered a promising target for treating ischaemic diseases or cancer. In this review, we discuss the roles of HIF-1 in both physiological/pathophysiological angiogenesis and potential strategies for clinical therapy.

Cancer, Hypoxia, and MetabolismAngiogenesis and VEGF in CancerHigh Altitude and HypoxiaAngiogenesisVasculogenesisVascular endothelial growth factorHypoxia-inducible factorsNeovascularizationMediatorHypoxia (environmental)BiologyCancer researchRegulator

MeSH terms

Placenta Growth FactorHypoxiaHumansNeovascularization, PathologicPregnancy ProteinsTranscriptional ActivationCell HypoxiaNeovascularization, PhysiologicVascular Endothelial Growth Factor AHypoxia-Inducible Factor 1, alpha Subunit

Funding

  • Narodowe Centrum Badań i Rozwoju
Citations
580
FWCI
8.67
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References
139
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99%
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Cited by
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Journal of Clinical Medicine · 2019 · 488 citations
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