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dc.creatorFloratou, K.en
dc.creatorGiannopoulou, E.en
dc.creatorAntonacopoulou, A.en
dc.creatorKarakantza, M.en
dc.creatorAdonakis, G.en
dc.creatorKardamakis, D.en
dc.creatorMatsouka, P.en
dc.date.accessioned2015-11-23T10:26:34Z
dc.date.available2015-11-23T10:26:34Z
dc.date.issued2012
dc.identifier10.1093/jrr/rrs019
dc.identifier.issn0449-3060
dc.identifier.urihttp://hdl.handle.net/11615/27475
dc.description.abstractRadiation exerts direct as well as indirect effects on DNA through the generation of reactive oxygen species (ROS). Irradiated hematopoietic progenitor cells (HPCs) experience DNA strand breaks, favoring genetic instability, due to ROS generation. Our aim was to study the effect of a range of radiation doses in HPCs and the possible protective mechanisms activated by insulin-like growth factor-1 (IGF-1). ROS generation was evaluated, in the presence or absence of IGF-1 in liquid cultures of human HPCs-CD34(+) irradiated with 1-, 2- and 5-Gy X-rays, using a flow cytometry assay. Manganese superoxide dismutase (MnSOD) expression was studied by western blot analysis and visualized by an immunotluorescence assay. Apoptosis was estimated using the following assays: Annexin-V assay, DNA degradation assay, BCL-2/BAX mRNA and protein levels and caspase-9 protein immunotluorescence visualization. Viability and clonogenic potential were studied in irradiated HPCs. The generation of superoxide anion radicals at an early and a late time point was increased, while the hydrogen peroxide generation at a late time point was stable. IGF-1 presence further enhanced the radiation-induced increase of MnSOD at 24 h post irradiation. IGF-1 inhibited the mitochondria-mediated pathway of apoptosis by regulating the m-RNA and protein expression of BAX, BCL-2 and the BCL-2/BAX ratio and by decreasing caspase-9 protein expression. IGF-1 presence in culture media of irradiated cells restored the clonogenic capacity and the viability of HPCs as well. In conclusion, IGF-1 protects HPCs-CD34(+) from radiation effects, by eliminating the oxidative microenvironment through the enhancement of MnSOD activation and by regulating the mitochondria-mediated pathway of apoptosis.en
dc.sourceJournal of Radiation Researchen
dc.source.uri<Go to ISI>://WOS:000308900700002
dc.subjectionizing radiationen
dc.subjectreactive oxygen speciesen
dc.subjectMnSODen
dc.subjectIGF-1en
dc.subjecthematopoieticen
dc.subjectprogenitor cellsen
dc.subjectGROWTH-FACTOR-Ien
dc.subjectINDUCED GENOMIC INSTABILITYen
dc.subjectOXYGEN SPECIES ROSen
dc.subjectIONIZING-RADIATIONen
dc.subjectBONE-MARROWen
dc.subjectREACTIVE OXYGENen
dc.subjectSUPEROXIDE-DISMUTASEen
dc.subjectINDUCED APOPTOSISen
dc.subjectFLOW-CYTOMETRYen
dc.subjectSTEM-CELLSen
dc.subjectBiologyen
dc.subjectRadiology, Nuclear Medicine & Medical Imagingen
dc.titleOxidative stress due to radiation in CD34(+) Hematopoietic progenitor cells: protection by IGF-1en
dc.typejournalArticleen


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