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EFFECTS OF SIMULATED MICROGRAVITY ON CELL CYCLE IN HUMAN ENDOTHELIAL CELLS

机译:模拟微重力对人内皮细胞细胞周期的影响

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Endothelial cells, playing crucial role in pathogenesis of many diseases, are highly sensitive to low gravityconditions. In this study, we analyzed changes in the cell cycle after the endothelial-like EA.hy926 cells exposure tosimulated microgravity using 3D-clinostat (Dutch Space, Astrium Company, NL). EA.hy926 cells were seeded inOptiCell cell culture system, mounted in a 3D-clinostat, and cultured at 37°C in a humidified atmosphere of 95% airand 5% CO_2. The cell cycle distribution of EA.hy926 cells was analyzed by propidium iodide staining of cellularDNA content, and flow cytometry FACSCalibur. The percentages of cell population in G0/G1, S or G2 phases werecalculated from histograms by the Cell Quest software. Cell cycles determined by flow cytometry showed, thatpercentage of the cells in the G0/G1 phase after 24 and 96 h of clinorotation were significantly increased ascompared to control group, however, after 120 h and 168 h of clinorotation, the difference was not significant.Under normal conditions percentage of the cells in the G0/G1 phase was 65.5%, 70.4% and 76.4%, 81.4% after 24,96 and 120, 168 h, respectively, whereas after 24, 96 h and 120, 168 h of clinorotation it made 76.6%, 87.2% and74.1%, 80.6 %, respectively. Percentage of the cells in the S phase significantly decreased from 25.5% to 15.0% andfrom 22.0% to 7.9% after 24 and 96 h, while after 120 h and 168 h of clinorotation the difference was not significant.Thus, we showed that simulated microgravity inhibits the cell cycle progression of human EA.hy926 cells from theG0/G1 to the S phase. We observed an effect of a hibernation-like state, when the growth of the cells in theclinorotation group slowed, but did not stop. Our results confirm the experiments, which showed the ability of cellsto adapt to changes in the gravitational field. However, our data also showed that endothelial EA.hy926 cells wereless resistant to stress as compared to the human neuroblastoma cells SHSY-5Y, which we examined in a previousstudy. Our experiments support the conclusion, that the adverse effects of simulated microgravity have variousimpacts on different kinds of cells.
机译:内皮细胞在许多疾病的发病机理中起着至关重要的作用,对低重力高度敏感 情况。在这项研究中,我们分析了内皮样EA.hy926细胞暴露于 使用3D倾斜仪(荷兰阿斯特里姆公司,荷兰空间)模拟微重力。将EA.hy926细胞接种在 OptiCell细胞培养系统,安装在3D倾斜仪中,并在95%空气的湿润气氛中于37°C培养 和5%CO_2。碘化丙啶染色分析EA.hy926细胞的细胞周期分布。 DNA含量和流式细胞仪FACSCalibur。 G0 / G1,S或G2期的细胞群体百分比为 由Cell Quest软件根据直方图计算得出。通过流式细胞仪确定的细胞周期表明, 旋转24小时和96小时后,处于G0 / G1期的细胞百分比显着增加, 与对照组相比,在进行了120 h和168 h的旋转后,差异无统计学意义。 在正常情况下,24小时后,处于G0 / G1期的细胞百分比分别为65.5%,70.4%和76.4%,81.4%, 分别进行96、120和168小时的水平旋转,而在进行24、96和120、168小时的水平旋转后,旋转角度分别为76.6%,87.2%和 分别为74.1%,80.6%。 S期细胞的百分比从25.5%显着降低到15.0%, 在24和96小时后从22.0%下降到7.9%,而在120小时和168小时后发生了旋转,差异无显着性。 因此,我们表明模拟的微重力抑制了人类EA.hy926细胞从 G0 / G1到S相。我们观察到休眠状态的影响,当细胞在 旋转肌群减慢,但没有停止。我们的结果证实了实验,表明了细胞的能力 适应重力场的变化。然而,我们的数据还显示内皮EA.hy926细胞是 与人类神经母细胞瘤细胞SHSY-5Y相比,对压力的抵抗力更弱 学习。我们的实验支持以下结论:模拟微重力的不利影响有多种 对不同种类细胞的影响。

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