[低剂量和亚致死剂量γ-辐射对小鼠脑间充质和神经干细胞的影响]。

G A Posypanova, E Yu Moskaleva, A V Rodina, Yu P Semochkina, M G Ratushnjak, V G Perevozchikova
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引用次数: 0

摘要

除了神经干细胞(NSC)外,大脑中还存在间充质干细胞(MSC)。本研究旨在探讨小鼠脑间充质干细胞(MSC(BR))与骨髓间充质干细胞(MSC(BM))和NSC对亚致死剂量γ辐射的敏感性,并研究低剂量γ辐射对这些细胞的影响。细胞以10 ~ 200mgy剂量率(10mgy /min)暴露于γ-辐射(137Cs)中;在剂量率为200和500毫戈瑞/分钟(60Co)时获得更高的剂量。通过在Goryaev室中用台盼蓝染色计数活细胞或使用MTT试验对NSC作为神经球生长的细胞存活率进行评估。罗丹明-123孵育后用流式细胞术测定SP含量。暴露在10至500毫戈瑞的剂量范围内可刺激细胞增殖。在照射后第7天细胞数量减少最多,MSC(BR)和MSC(BM)几乎相同。NCS的放射敏感性高于MSC。暴露于100 ~ 500 mGy的剂量可刺激除MSC(BM)外的所有SCs的细胞增殖。结果表明,低剂量γ辐照后,MSC(BR)的SP部分的大小减小。因此,低剂量γ辐照后的细胞增殖刺激伴随着不同细胞亚群的重新分布:观察到SP部分的减少和一般细胞群的增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Effects of Low and Sublethal Doses of γ-Radiation on Mesenchymal and Neural Stem Cells from Mouse Brain].

Mesenchymal stem cells (MSC) exist in the brain in addition to the neural stem cells (NSC). The aim of this work was to investigate the sensitivity of mouse brain MSC (MSC(BR)) to sublethal doses of γ-radiation in comparison with the sensitivity of bone marrow MSC (MSC(BM)) and NSC and to study the effects of γ-irradiation at low doses on these cells. Cells were exposed to γ-radiation (137Cs) at the doses of 10 to 200 mGy at a dose rate of 10 mGy/min; higher doses were achieved at the dose rates of 200 and 500 mGy/min (60Co). The survival of cells was assessed by counting living cells after staining with trypan blue in the Goryaev's chamber or using the MTT test for NSC growing as neurospheres. SP fraction was measured using flow cytometry after incubation with rhodamine-123. Exposure to the doses in the range of 10 to 500 mGy stimulated cell proliferation. The maximum decrease in the cells number was seen on the seventh day after irradiation and it was practically the same for the MSC(BR) and MSC(BM). NCS were more radiosensitive than MSC. Exposure to the doses of 100 to 500 mGy stimulated cells proliferation of all SCs except of MSC(BM). It was shown that the size of SP fraction of MSC(BR) was diminished after γ-irradiation at low doses. Thus, the stimulation of cell proliferation after γ-irradiation at low doses is accompanied by the redistribution of distinct cell subpopulations: the decrease in the SP fraction and the increase in the general population of cells were observed.

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