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A role for endothelial cells in radiation-induced inflammation

机译:辐射诱导炎症中内皮细胞的作用

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摘要

Purpose: To unravel the role of the vasculature in radiation-induced brain tissue damage.Materials and methods: Postnatal day 14 mice received a single dose of 10Gy cranial irradiation and were sacrificed 6h, 24h or 7 days post-irradiation. Endothelial cells were isolated from the hippocampus and cerebellum using fluorescence-activated cell sorting, followed by cell cycle analysis and gene expression profiling.Results: Flow cytometric analysis revealed that irradiation increased the percentage of endothelial cells, relative to the whole cell population in both the hippocampus and the cerebellum. This change in cell distribution indicates that other cell types are more susceptible to irradiation-induced cell death, compared to endothelial cells. This was supported by data showing that genes involved in endothelial cell-specific apoptosis (e.g. Smpd1) were not induced at any time point investigated but that genes involved in cell-cycle arrest (e.g. Cdkn1a) were upregulated at all investigated time points, indicating endothelial cell repair. Inflammation-related genes, on the other hand, were strongly induced, such as Ccl2, Ccl11 and Il6.Conclusions: We conclude that endothelial cells are relatively resistant to ionizing radiation but that they play an active, hitherto unknown, role in the inflammatory response after irradiation. In the current study, this was shown in both the hippocampus, where neurogenesis and extensive cell death after irradiation occurs, and in the cerebellum, where neurogenesis no longer occurs at this developmental age.
机译:目的:解开脉管系统在辐射诱导的脑组织损伤中的作用。材料和方法:后期14只小鼠接受单剂量的10Gy颅辐射,并处死6小时,24h或7天。使用荧光激活的细胞分选,然后通过细胞循环分析和基因表达分析分离内皮细胞。结果:流式细胞术分析显示,辐照增加内皮细胞的百分比,相对于两种情况下的全细胞群海马和小脑。与内皮细胞相比,细胞分布的这种变化表明,与内皮细胞相比,其他细胞类型更容易受到辐照诱导的细胞死亡。数据支持该数据,表明在研究的任何时间点未诱导参与内皮细胞特异性细胞凋亡(例如SMPD1)的基因,但在所有调查的时间点都上调了参与细胞周期停滞(例如CDKN1A)的基因,表明内皮细胞修复。另一方面,炎症相关基因被强烈诱导,例如CCl2,CCl11和IL6。结论:我们得出结论,内皮细胞对电离辐射相对抗性,但它们在炎症反应中发挥活跃,迄今未知,在炎症反应中的作用照射后。在目前的研究中,这在海马中显示,其中神经发生和辐照发生的广泛细胞死亡,并且在小脑中,神经发生在该发育年龄不再发生。

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