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Effects of temperature and cellular interactions on the mechanics and morphology of human cancer cells investigated by atomic force microscopy 被引量:5
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作者 LI Mi LIU LianQing +3 位作者 XI Ning WANG YueChao XIAO XiuBin ZHANG WeiJing 《Science China(Life Sciences)》 SCIE CAS CSCD 2015年第9期889-901,共13页
Cell mechanics plays an important role in cellular physiological activities. Recent studies have shown that cellular mechanical properties are novel biomarkers for indicating the cell states. In this article, temperat... Cell mechanics plays an important role in cellular physiological activities. Recent studies have shown that cellular mechanical properties are novel biomarkers for indicating the cell states. In this article, temperature-controllable atomic force microscopy(AFM) was applied to quantitatively investigate the effects of temperature and cellular interactions on the mechanics and morphology of human cancer cells. First, AFM indenting experiments were performed on six types of human cells to investigate the changes of cellular Young's modulus at different temperatures and the results showed that the mechanical responses to the changes of temperature were variable for different types of cancer cells. Second, AFM imaging experiments were performed to observe the morphological changes in living cells at different temperatures and the results showed the significant changes of cell morphology caused by the alterations of temperature. Finally, by co-culturing human cancer cells with human immune cells, the mechanical and morphological changes in cancer cells were investigated. The results showed that the co-culture of cancer cells and immune cells could cause the distinct mechanical changes in cancer cells, but no significant morphological differences were observed. The experimental results improved our understanding of the effects of temperature and cellular interactions on the mechanics and morphology of cancer cells. 展开更多
关键词 原子力显微镜 细胞力学 温度变化 细胞形态 相互作用 癌细胞 机械性能 压痕实验
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