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The effect of loading rate on the measurement of cellular viscoelasticity properties with atomic force microscopy

机译:加载速率对原子力显微镜测量细胞粘弹性的影响

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Organisms are composed by cells, and the cells can also reflect the physiology of creatures. The composition of a single cell and its cytoskeletal structure can be reflected by the mechanical properties of the cell. The cellular mechanical properties are correlated to the biological functions of the cell and its physiological activities. Therefore, establishing the mathematical model for the mechanical properties of single cells could provide the foundation for analyzing and regulating the physiological state of cells. In our previous work, we established a dynamical mathematical model with the viscose and elastic properties of single cells as the system parameters of the cellular system. The mathematical model can characterize the stressrelaxation phenomenon of a single cell, which is caused by an atomic force microscope (AFM). However, in this model, the effect of the loading rate of the AFM cantilever was neglected and all the stress-relaxation curves needed to be measured at a constant loading rate, in case that different loading rates would cause errors in the stress-relaxation curves. In this study, we discussed the effect of the loading rate on the measurement of cellular viscoelasticity properties with AFM. We clearly illustrated that the cellular stress-relaxation curves won't be effected by the loading rate of AFM when the loading rate is higher than a threshold. The stress-relaxation curves with the loading rate which is higher than the threshold can be used to extract viscoelasticity parameters more accurately.
机译:生物是由细胞组成的,细胞也可以反映生物的生理。单个细胞的组成及其细胞骨架结构可以通过细胞的机械特性来反映。细胞的机械性能与细胞的生物学功能及其生理活性有关。因此,建立单细胞力学特性的数学模型可以为分析和调控细胞的生理状态提供基础。在我们以前的工作中,我们建立了一个动态数学模型,将单个细胞的粘胶和弹性特性作为细胞系统的系统参数。该数学模型可以表征单个电池的应力松弛现象,该现象是由原子力显微镜(AFM)引起的。但是,在该模型中,忽略了AFM悬臂梁加载速率的影响,并且所有应力松弛曲线都需要以恒定的加载速率进行测量,以防不同的加载速率会导致应力松弛曲线出现误差。在这项研究中,我们讨论了加载速率对AFM测量细胞粘弹性特性的影响。我们清楚地说明,当加载速率高于阈值时,AFM的加载速率不会影响细胞应力松弛曲线。加载速率高于阈值的应力松弛曲线可用于更精确地提取粘弹性参数。

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