Residual γH2AX foci induced by low dose x-ray radiation in bone marrow mesenchymal stem cells do not cause accelerated senescence in the progeny of irradiated cells

低剂量X射线辐射在骨髓间充质干细胞中诱导的残留γH2AX灶不会导致受辐射细胞的后代加速衰老

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作者:Margarita Pustovalova, Тatiana A Astrelina, Anna Grekhova, Natalia Vorobyeva, Anastasia Tsvetkova, Taisia Blokhina, Victoria Nikitina, Yulia Suchkova, Daria Usupzhanova, Vitalyi Brunchukov, Irina Kobzeva, Тatiana Karaseva, Ivan V Ozerov, Aleksandr Samoylov, Andrey Bushmanov, Sergey Leonov, Evgeny Iz

Abstract

Mechanisms underlying the effects of low-dose ionizing radiation (IR) exposure (10-100 mGy) remain unknown. Here we present a comparative study of early (less than 24h) and delayed (up to 11 post-irradiation passages) radiation effects caused by low (80 mGy) vs intermediate (1000 mGy) dose X-ray exposure in cultured human bone marrow mesenchymal stem cells (MSCs). We show that γН2АХ foci induced by an intermediate dose returned back to the control value by 24 h post-irradiation. In contrast, low-dose irradiation resulted in residual γН2АХ foci still present at 24 h. Notably, these low dose induced residual γН2АХ foci were not co-localized with рАТМ foci and were observed predominantly in the proliferating Кi67 positive (Кi67+) cells. The number of γН2АХ foci and the fraction of nonproliferating (Кi67-) and senescent (SA-β-gal+) cells measured at passage 11 were increased in cultures exposed to an intermediate dose compared to unirradiated controls. These delayed effects were not seen in the progeny of cells that were irradiated with low-dose X-rays, although such exposure resulted in residual γН2АХ foci in directly irradiated cells. Taken together, our results support the hypothesis that the low-dose IR induced residual γH2AХ foci do not play a role in delayed irradiation consequences, associated with cellular senescence in cultured MSCs.

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