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模拟微重力对人类大脑神经组织的影响。

Effects of simulated microgravity on human brain nervous tissue.

作者信息

Wang Xianghan, Du Jianxin, Wang Demei, Zeng Fan, Wei Yukui, Wang Fuli, Feng Chengcheng, Li Nuomin, Dai Rongji, Deng Yulin, Quan Zhenzhen, Qing Hong

机构信息

School of Life Science, Beijing Institute of Technology, Beijing 100081, China.

Xuanwu Hospital, Capital Medical University, Beijing 100053, China.

出版信息

Neurosci Lett. 2016 Aug 3;627:199-204. doi: 10.1016/j.neulet.2016.06.004. Epub 2016 Jun 3.

Abstract

During spaceflight, the negative effects of space microgravity on astronauts are becoming more and more prominent, and especially, of which on the nervous system is urgently to be solved. For this purpose tissue blocks and primary cells of nervous tissues obtained from glioma of patients were cultivated after culturing for about 7days, explanted tissues and cells were then randomly divided into two groups, one for static culture (control group, C), and the other for rotary processing for 1day, 3days, 5days, 7days and 14days (experiment group, E). Figures captured by inverted microscope revealed that, with short time rotating for 1day or 3days, morphology changes of tissue blocks were not obvious. When the rotary time was extended to 7days or 14days, it was found that cell somas is significantly larger and the ability of adhesion is declined in comparison with that in control group. Additionally, the arrangement of cells migrated from explanted tissues was disorganized, and the migration distance became shorter. In immunofluorescence analysis, β-tubulin filaments in control group appeared to organize into bundles. While in experiment group, β-tubulin was highly disorganized. In conclusion, simulated microgravity treatment for a week affected the morphology of nervous tissue, and caused highly disorganized distribution of cytoskeleton and the increase of cell apoptosis. These morphological changes might be one of the causes of apoptosis induced by simulated microgravity.

摘要

在太空飞行过程中,太空微重力对宇航员的负面影响日益凸显,尤其是对神经系统的影响亟待解决。为此,将取自胶质瘤患者的神经组织块及原代细胞培养约7天后,将外植组织和细胞随机分为两组,一组进行静态培养(对照组,C),另一组分别进行1天、3天、5天、7天和14天的旋转处理(实验组,E)。倒置显微镜拍摄的图像显示,短时间旋转1天或3天时,组织块的形态变化不明显。当旋转时间延长至7天或14天时,发现与对照组相比,细胞体明显增大,黏附能力下降。此外,从外植组织迁移出的细胞排列紊乱,迁移距离变短。在免疫荧光分析中,对照组的β-微管蛋白丝似乎聚集成束。而在实验组中,β-微管蛋白高度紊乱。综上所述,一周的模拟微重力处理影响了神经组织的形态,导致细胞骨架分布高度紊乱和细胞凋亡增加。这些形态变化可能是模拟微重力诱导细胞凋亡的原因之一。

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