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Correlation of cell mechanics with the resistance to malignant transformation in naked mole rat fibroblasts

机译:细胞力学与裸鼹鼠成纤维细胞恶性转化抗性的相关性

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Naked mole rats (NMRs) demonstrate exceptional longevity and resistance to cancer. Using a biochemical approach, it was previously shown that the treatment of mouse fibroblast cells with RasV12 oncogene and SV40 Large T antigen (viral oncoprotein) led to malignant transformations of cells. In contrast, NMR fibroblasts were resistant to malignant transformations upon this treatment. Here we demonstrate that atomic force microscopy (AFM) can provide information which is in agreement with the above finding, and further, adds unique information about the physical properties of cells that is impossible to obtain by other existing techniques. AFM indentation data were collected from individual cells and subsequently processed through the brush model to obtain information about the mechanics of the cell body (absolute values of the effective Young's moduli). Furthermore, information about the physical properties of the pericellular layer surrounding the cells was obtained. We found a statistically significant decrease in the rigidity of mouse cells after the treatment, whereas there was no significant change found in the rigidity of NMR cells upon the treatment. We also found that the treatment caused a substantial increase in a long part of the pericellular layer in NMR cells only (the long brush was defined as having a size of >10 microns). The mouse cells and smaller brush did not show statistically significant changes upon treatment. The observed change in cell mechanics is in agreement with the frequently observed decrease in cell rigidity during progression towards cancer. The change in the pericellular layer due to the malignant transformation of fibroblast cells has practically not been studied, though it was shown that the removal of part of the pericellular layer of NMR fibroblasts made the cells susceptible to malignant transformation. Although it is plausible to speculate that the observed increase in the long part of the brush layer of NMR cells might help cells to resist malignant transformations, the significance of the observed change in the pericellular layer is yet to be understood. As of now, we can conclude that changes in cell mechanics might be used as an indication of the resistance of NMR cells to malignant transformations.
机译:裸鼹鼠(nmr)表现优异长寿和抵抗癌症。生化方法,之前显示小鼠成纤维细胞的治疗RasV12致癌基因和SV40大T抗原(病毒肿瘤蛋白)导致恶性的转变细胞。在这个抗恶性转换治疗。显微镜(AFM)可以提供信息同意上述发现,此外,添加独特的物理信息细胞是不可能获得的属性通过其他现有技术。从单个细胞和收集的数据随后通过刷模型来处理获取信息的机制胞体(有效的绝对值杨氏模)。pericellular层的物理性质周围的细胞。统计上显著的减少刚性的老鼠细胞治疗后,而没有发现显著变化核磁共振的刚性细胞治疗。还发现,治疗了大幅增加的一部分pericellular层只在NMR细胞(长刷被定义为拥有一个规模> 10微米)。没有显示显著的变化治疗。经常观察到的是一致的吗减少细胞刚度在进展对癌症。层由于恶性转变成纤维细胞已经几乎没有了研究,尽管它是显示的pericellular层核磁共振成纤维细胞的一部分容易恶性细胞转换。推测,观察长增加NMR细胞刷层的一部分可能会有所帮助细胞抵抗恶性转变,观察到的变化的重要性pericellular层尚未被理解。现在,我们可以得出这样的结论:细胞的变化力学可能使用的迹象电阻的NMR细胞恶性转换。

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