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Time- and dose-dependent effects of total-body ionizing radiation on muscle stem cells

机译:全身电离辐射对肌肉干细胞的时间和剂量依赖性

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摘要

Exposure to high levels of genotoxic stress, such as high-dose ionizing radiation, increases both cancer and noncancer risks. However, it remains debatable whether low-dose ionizing radiation reduces cellular function, or rather induces hormetic health benefits. Here, we investigated the effects of total-body γ-ray radiation on muscle stem cells, called satellite cells. Adult C57BL/6 mice were exposed to γ-radiation at low- to high-dose rates (low, 2 or 10 mGy/day; moderate, 50 mGy/day; high, 250 mGy/day) for 30 days. No hormetic responses in proliferation, differentiation, or self-renewal of satellite cells were observed in low-dose radiation-exposed mice at the acute phase. However, at the chronic phase, population expansion of satellite cell-derived progeny was slightly decreased in mice exposed to low-dose radiation. Taken together, low-dose ionizing irradiation may suppress satellite cell function, rather than induce hormetic health benefits, in skeletal muscle in adult mice.
机译:暴露于高水平的遗传毒性胁迫下,例如高剂量电离辐射,会增加癌症和非癌症的风险。但是,低剂量电离辐射是否会降低细胞功能,或带来有益的健康益处,仍有待商bat。在这里,我们研究了全身γ射线辐射对称为卫星细胞的肌肉干细胞的影响。将成年C57BL / 6小鼠以低剂量至高剂量率(低,2或10 mGy /天,中度,50 mGy /天,高,250 mGy /天)暴露于γ辐射30天。在急性期,在低剂量辐射照射小鼠中未观察到卫星细胞增殖,分化或自我更新方面的激素反应。但是,在慢性期,暴露于低剂量辐射的小鼠中卫星细胞衍生的后代的种群扩展略有减少。总之,低剂量电离辐射可以抑制成年小鼠骨骼肌中的卫星细胞功能,而不是带来有害的健康益处。

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