模拟微重力对人脑神经组织细胞骨架和凋亡的影响

Effects of Simulated Microgravity on Cytoskeleton and Apoptosis of Human Brain Nervous Tissue

  • 摘要: 探讨模拟微重力效应对神经组织形态结构、骨架系统和凋亡的影响.原代培养人脑癌旁细胞7 d后,一组回转,另一组静置.倒置显微镜和透射电镜观察细胞大体形态及超微结构,扫描电镜观察细胞表面微细形貌;用TRITC标记的二抗和FITC标记的鬼笔环肽分别显示β-tubulin和F-actin的分布.回转时间延长至7、14 d后细胞体明显变大,细胞对基底的贴附能力显著下降.14 d回转组胞浆内细胞器结构变少,线粒体断裂同时相互离散,并有大量空泡.回转组胞质内β-tubulin和F-actin表达明显减少,F-actin绕核呈环,分布紊乱,且1个细胞核解离成几个微核.结果表明,模拟微重力一周能明显影响神经组织细胞的大体形态及超微结构,同时引起骨架蛋白的高度紊乱并伴随细胞凋亡的发生.

     

    Abstract: To investigate the influence of simulated microgravity on the morphological structure, skeletal system and apoptosis of the nervous tissue. Human brain tumor cells were cultured by separated cell methods for 7 days, then randomly divided into two groups, one for static culture, and another for rotary processing. The morphology and ultrastructure were observed under inverted microscope and transmission electron microscopy. The surface topography was observed by scanning electron microscopy. A second layer of TRITC-conjugated antibody for β-tubulin and the cytochemical labeling phalloidin-FITC for F-actin showed the distribution of cytoskeleton. When the rotary time lengthened to 7 d and 14 d, cell somas became significantly larger, adhesion ability declined. The 14 d rotary group showed that organelle structures became fewer in cytoplasm, mitochondrial cristae were clear and disassociated with each other, and large vacuoles produced. The rotary group indicated that F-actin and β-tubulin were highly disorganized, and significantly decreased in expression. F-actin formed a loop around the nucleus. Furthermore, the nucleus dissociated into several micronuclei. The results indicate that simulated microgravity can affect the morphology and ultrastructure of nervous tissue cells, can cause highly disorganized distribution of cytoskeleton, with the increasing of cell apoptosis since a week rotary.

     

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