Effects of low doses of ionizing radiation exposures on stress-responsive gene expression in human embryonic stem cells

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Abstract

There is a great deal of uncertainty on how low (≤0.1 Gy) doses of ionizing radiation (IR) affect human cells, partly due to a lack of suitable experimental model systems for such studies. The uncertainties arising from low-dose IR human data undermine practical societal needs to predict health risks emerging from diagnostic medical tests' radiation, natural background radiation, and environmental radiological accidents. To eliminate a variability associated with remarkable differences in radioresponses of hundreds of differentiated cell types, we established a novel, human embryonic stem cell (hESC)-based model to examine the radiobiological effects in human cells. Our aim is to comprehensively elucidate the gene expression changes in a panel of various hESC lines following low IR doses of 0.01; 0.05; 0.1 Gy; and, as a reference, relatively high dose of 1 Gy of IR. Here, we examined the dynamics of transcriptional changes of well-established IR-responsive set of genes, including CDKN1A, GADD45A, etc. at 2 and 16 h post-IR, representing "early" and "late" radioresponses of hESCs. Our findings suggest the temporal-and hESC line-dependence of stress gene radioresponses with no statistically significant evidence for a linear dose-response relationship within the lowest doses of IR exposures. © 2014 by the authors; licensee MDPI, Basel, Switzerland.

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Sokolov, M., & Neumann, R. (2014). Effects of low doses of ionizing radiation exposures on stress-responsive gene expression in human embryonic stem cells. International Journal of Molecular Sciences, 15(1), 588–604. https://doi.org/10.3390/ijms15010588

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