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Ionizing Radiation Perturbs Cell Cycle Progression of Neural Precursors in the Subventricular Zone Without Affecting Their Long-Term Self-Renewal
Journal article   Open access  Peer reviewed

Ionizing Radiation Perturbs Cell Cycle Progression of Neural Precursors in the Subventricular Zone Without Affecting Their Long-Term Self-Renewal

Hongxin Chen, Matthew T Goodus, Sonia M de Toledo, Edouard I Azzam, Steven W Levison and Nizar Souayah
ASN neuro, Vol.7(3), p.175909141557802
05/2015
PMCID: PMC4461572
PMID: 26056396

Abstract

Neural Stem Cells - radiation effects Stem Cell Niche - radiation effects Gamma Rays - adverse effects Cell Self Renewal - physiology Cell Self Renewal - radiation effects Brain - physiology Astrocytes - radiation effects Oligodendroglia - physiology Neurons - physiology Neurogenesis - radiation effects Oligodendroglia - radiation effects Cell Survival - physiology Animals, Newborn Mice, Inbred C57BL Cells, Cultured Neural Stem Cells - physiology Cell Cycle Checkpoints - physiology Brain - radiation effects Cesium Radioisotopes - adverse effects Cell Survival - radiation effects Astrocytes - physiology Animals Cell Cycle Checkpoints - radiation effects Neurogenesis - physiology Stem Cell Niche - physiology Neurons - radiation effects
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https://doi.org/10.1177/1759091415578026View
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