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  4. Transcriptional response of human umbilical vein endothelial cells to low doses of ionizing radiation.
 
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Transcriptional response of human umbilical vein endothelial cells to low doses of ionizing radiation.

Author(s)
Lanza, Vincenzo
Pretazzoli, Valeria
Olivieri, Gregorio
ASI Sponsor
Subjects

Cells

Cultured

Dose-Response Relatio...

Radiation

Endothelial Cells

Endothelial Cells: me...

Endothelial Cells: ra...

Gene Expression Profi...

Gene Expression Profi...

Gene Expression Regul...

Gene Expression Regul...

Gene Expression Regul...

Humans

Radiation Dosage

Radiation

Ionizing

Transcription Factors...

Transcription Factors...

Transcriptional Activ...

Transcriptional Activ...

Transcriptional Activ...

Umbilical Veins

Umbilical Veins: cyto...

Umbilical Veins: meta...

Umbilical Veins: radi...

Date Issued
2005-06-01
Abstract
We used cDNA microarray hybridization technology to monitor the transcriptional response of Human Umbilical Vein Endothelial (HUVEC) cells to x-rays doses ranging from 2 to 200 cGy. An early time window from irradiation (4h) was selected in order to minimize the effects of the cell cycle blockage eventually induced at high doses of irradiation. Three different gene-clustering algorithms have been used to group the 4134 monitored ORF based on their transcriptional response in function of the irradiation dose. The results show that while few genes exhibit a typical dose-dependent modulation with a variable threshold, most of them have a different modulation pattern, peaking at the two intermediate doses. Strikingly even the lowest dose used (2 cGy) seems to be very effective in transcriptional modulation. These results confirm the physiological relevance of sublethal-dose exposures of endothelial cells and strengthens the hypothesis that alternative dose-specific pathways of radioadaptive response exist in the mammalian cells. 111 genes were found to be modulated at all doses of irradiation. These genes were functionally classified by cellular process or by molecular function. Genes involved in coagulation and peroxidase activity and structural constituent of ribosomes were over-represented among the up-regulated genes as compared with their expected statistical occurrence. Three genes coding for regulatory kinase activities (CDK6; PRCKB1 and TIE) are found down-regulated at all doses of irradiation.
URI
https://hdl.handle.net/20.500.13025/1683
ISSN
0449-3060
Journal
Journal of radiation research
URL
http://www.ncbi.nlm.nih.gov/pubmed/15988146
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