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Stress relaxation of HepG2 cells measured by atomic force microscopy

机译:原子力显微镜测量HepG2细胞的应力松弛

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Stress relaxation of HepG2 cells was examined with an atomic force microscope ( AFM). In the measurement, a loading force was applied to the cell by an AFM tip, and a time series of the cantilever deflection signal was measured at a fixed position of the cantilever base displacement. The relaxation of the loading force was clearly observed on the HepG2 cells, and was well fitted to a stretched exponential function known as the Kohlrausch-Williams-Watts ( KWW) function, which is empirically employed to represent dispersion processes of the system. The relaxation time and the stretching exponent parameter were estimated to be similar to 0.5 s and 0.4 - 0.6, respectively. The latter indicated that the relaxation observed in HepG2 cells consisted of multiple relaxation processes. Moreover, it was found that the characteristic feature of the relaxation process was not strongly correlated with the elastic properties of the cells.
机译:用原子力显微镜(AFM)检查HepG2细胞的应力松弛。在测量中,通过AFM尖端向电池施加加载力,并且在悬臂基础位移的固定位置处测量悬臂偏转信号的时间序列。在HepG2细胞上清楚地观察到加载力的松弛,并很好地拟合了称为Kohlrausch-Williams-Watts(KWW)函数的拉伸指数函数,该函数在经验上用于表示系统的分散过程。弛豫时间和拉伸指数参数估计分别接近0.5 s和0.4-0.6。后者表明在HepG2细胞中观察到的松弛由多个松弛过程组成。此外,发现松弛过程的特征与细胞的弹性性质没有强相关。

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