Intermittent hypoxia is an angiogenic inducer for endothelial cells: role of HIF-1

被引:0
作者
Sébastien Toffoli
Audrey Roegiers
Olivier Feron
Martine Van Steenbrugge
Noëlle Ninane
Martine Raes
Carine Michiels
机构
[1] FUNDP-University of Namur,Laboratory of Biochemistry and Cellular Biology
[2] University of Louvain Medical School,Unit of Pharmacology and Therapeutics, UCL
来源
Angiogenesis | 2009年 / 12卷
关键词
Intermittent hypoxia; Reoxygenation; HIF-1; Nrf2; NF-κB; ROS; Endothelial cells; Inflammation; Angiogenesis;
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学科分类号
摘要
The presence of hypoxia in tumor and its role in promoting angiogenesis are well-established. Recently, in addition to chronic hypoxia, cycling or intermittent hypoxia has also been demonstrated. However, its role in inducing new blood vessel formation is less clear. This work is aimed to investigate whether intermittent hypoxia can induce a pro-angiogenic phenotype in endothelial cells, in vitro. We studied changes in the expression of genes involved in inflammation and angiogenesis under intermittent and chronic hypoxia. We evidenced genes specifically expressed under intermittent hypoxia, suggesting different cell responses induced by intermittent versus chronic hypoxia. An increase in the expression of pro-angiogenic and pro-inflammatory genes under intermittent hypoxia, translating a pro-angiogenic effect of intermittent hypoxia was detected. In parallel, we investigated the activity of three transcription factors known to be activated either under hypoxia or by reoxygenation: HIF-1, Nrf2, and NF-κB. HIF-1α stabilization and an increase in HIF-1 transcriptional activity were evidenced under intermittent hypoxia. On the other hand, NRF2 and NF-κB transcription factors were not activated. Finally, an increase in endothelial cell migration and in tubulogenesis in the course of hypoxia–reoxygenation cycles was evidenced, which was inhibited by HIF-1α siRNA. All together, these results demonstrate a clear pro-angiogenic effect of intermittent hypoxia.
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页码:47 / 67
页数:20
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[1]  
Morikawa S(2002)Abnormalities in pericytes on blood vessels and endothelial sprouts in tumors Am J Pathol 160 985-1000
[2]  
Baluk P(1998)Temporal changes in PO2 of R3230AC tumors in Fischer-344 rats Int J Radiat Oncol Biol Phys 42 723-726
[3]  
Kaidoh T(2008)Spectral imaging facilitates visualization and measurements of unstable and abnormal microvascular oxygen transport in tumors J Biomed Opt 13 014026-3002
[4]  
Dewhirst MW(2008)Intermittent hypoxia is a key regulator of cancer cell and endothelial cell interplay in tumours FEBS J 275 2991-437
[5]  
Braun RD(2008)Cycling hypoxia and free radicals regulate angiogenesis and radiotherapy response Nat Rev Cancer 8 425-22647
[6]  
Lanzen JL(1997)Hypoxia-inducible factor 1alpha (HIF-1alpha) protein is rapidly degraded by the ubiquitin-proteasome system under normoxic conditions. Its stabilization by hypoxia depends on redox-induced changes J Biol Chem 272 22642-3
[7]  
Sorg BS(2001)HIF-1, O(2), the 3 PHDs: how animal cells signal hypoxia to the nucleus Cell 107 1-25741
[8]  
Hardee ME(2000)Hypoxia inducible factor-alpha binding and ubiquitylation by the von Hippel-Lindau tumor suppressor protein J Biol Chem 275 25733-472
[9]  
Agarwal N(2001)Targeting of HIF-alpha to the von Hippel-Lindau ubiquitylation complex by O2-regulated prolyl hydroxylation Science 292 468-1314
[10]  
Toffoli S(2001)Induction of HIF-1alpha in response to hypoxia is instantaneous FASEB J 15 1312-17778