Search Results - "Rigaud, O"
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Stem Cell Metabolism: Powering Cell-Based Therapeutics
Published in Cells (Basel, Switzerland) (16-11-2020)“…Cell-based therapeutics for cardiac repair have been extensively used during the last decade. Preclinical studies have demonstrated the effectiveness of…”
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Exploring ultrashort high-energy electron-induced damage in human carcinoma cells
Published in Cell death & disease (01-09-2010)Get full text
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Contribution of antioxidant enzymes to the adaptive response to ionizing radiation of human lymphoblasts
Published in International journal of radiation biology (1999)“…Purpose: To investigate whether the adaptive response to ionizing radiation triggered by a low-dose pre-exposure could be due to the activation of the…”
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The adaptive response to ionizing radiation: low dose effects unpredictable from high dose experiments
Published in Human & experimental toxicology (01-07-1999)Get more information
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Identification of differentially transcribed genes in human lymphoblastoid cells irradiated with 0.5 Gy of γ-ray and the involvement of low dose radiation inducible CHD6 gene in cell proliferation and radiosensitivity
Published in International journal of radiation biology (01-03-2006)“…Purpose: To identify candidate genes specifically involved in response to low-dose irradiation in human lymphoblastoid cells; to better clarify the role of the…”
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Uncoupling protein 2‐mediated metabolic adaptations define cardiac cell function in the heart during transition from young to old age
Published in Stem cells translational medicine (01-01-2021)“…Cellular replacement in the heart is restricted to postnatal stages with the adult heart largely postmitotic. Studies show that loss of regenerative properties…”
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Decreased Deletion Mutation in Radioadapted Human Lymphoblasts
Published in Radiation research (01-01-1993)“…Survival and $HPRT^{-}$ mutant frequency were measured in human lymphoblastoid cells preexposed or not to a low dose of 0.02 Gy γ rays and then treated with a…”
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Down-Regulation of the Human CDC16 Gene after Exposure to Ionizing Radiation: A Possible Role in the Radioadaptive Response
Published in Radiation research (01-01-2001)“…Zhou, P. K. and Rigaud, O. Down-Regulation of the Human CDC16 Gene after Exposure to Ionizing Radiation: A Possible Role in the Radioadaptive Response. We have…”
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Inflammatory biomarkers and effect of exercise on functional capacity in patients with heart failure: Insights from a randomized clinical trial
Published in European journal of preventive cardiology (01-05-2017)“…Background In patients with heart failure, inflammation has been associated with worse functional capacity, but it is uncertain whether it could affect their…”
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DNA Sequence Analysis of $HPRT^{-}$ Mutants Induced in Human Lymphoblastoid Cells Adapted to Ionizing Radiation
Published in Radiation research (01-11-1995)“…Radioadaptation to the mutagenic effect of ionizing radiation by pre-exposure of human cells to a low dose has been shown to decrease the proportion of…”
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Radioadaptation to the mutagenic effect of ionizing radiation in human lymphoblasts: Molecular analysis of HPRT mutants
Published in Cancer research (Chicago, Ill.) (01-04-1994)“…A 70% reduction of HPRT super(-) mutant frequency in radioadapted human lymphoblastoid cells has been reported, as analyzed by the Southern blot method. The…”
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Radioadaptation for gene mutation and the possible molecular mechanisms of the adaptive response
Published in Mutation research (04-11-1996)“…This paper reviews the experimental results showing that a prior exposure to a low dose of ionising radiation induces an adaptive response expressed as a…”
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Abstract 17359: UCP2 Induced Glycolysis Promotes Histone Acetylation to Regulate Cardiomyocyte Cell Cycle After Injury
Published in Circulation (New York, N.Y.) (07-11-2023)“…Abstract only Developmental cardiac tissue is proliferative capable of robust regenerative response after myocardial injury, but this ability is lost by P7…”
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Abstract 11254: Lin28a Promotes Persistence of Mononucleated Diploid Cardiomyocytes and Cardiac Regeneration After Injury
Published in Circulation (New York, N.Y.) (16-11-2021)“…Developmental cardiac tissue holds a remarkable capacity to regenerate after injury and consists of regenerative mononuclear and diploid cardiomyocytes…”
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Biochemical Alterations in Human Cells Irradiated with α Particles Delivered by Macro- or Microbeams
Published in Radiation research (01-05-2007)“…Gault, N., Rigaud, O., Poncy, J-L. and Lefaix, J-L. Biochemical Alterations in Human Cells Irradiated with α Particles Delivered by Macro- or Microbeams…”
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Infrared microspectroscopy study of γ-irradiated and H2O2-treated human cells
Published in International journal of radiation biology (01-10-2005)“…Purpose: Fourier transform infrared microspectroscopy (FT-IRM), which allows simultaneous detection of biochemical changes in the various cellular…”
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Abstract 15035: LIN28a Extends Regenerative Window of the Postnatal Heart and Promotes New Myocyte Formation in the Adult Heart After Injury via Lncrna-h19
Published in Circulation (New York, N.Y.) (08-11-2022)“…The neonatal heart holds a remarkable regenerative capacity that is lost within the first week of life coinciding with a profound shift in cardiomyocyte (CM)…”
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Quantitative Measurement of DNA Strand Breaks and Repair in γ-Irradiated Human Leukocytes from Normal and Ataxia Telangiectasia Donors
Published in Radiation research (01-06-1985)“…Fluorimetric analysis of DNA unwinding, which allows measurement of DNA strand breaks in human leukocytes, has been optimized by reducing the amount of cells…”
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Abstract P1030: LIN28a-induced Metabolic Reprogramming Regulates New Myocyte Formation In The Heart Via Lncrna-H19
Published in Circulation research (05-08-2022)“…Developmental cardiac tissue holds remarkable capacity to regenerate after injury and consists of regenerative mononuclear and diploid cardiomyocytes (MNDCMs)…”
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Abstract 12785: Psat1 Promotes Serine Synthesis Pathway and Cardiac Regeneration After Myocardial Infarction
Published in Circulation (New York, N.Y.) (08-11-2022)“…IntroductionPermanent loss of cardiomyocytes (CM) after myocardial infarction (MI) and limited cardiac regenerative capacity lead to heart failure. The…”
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