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High-speed broadband monitoring of cell viscoelasticity in real time shows myosin-dependent oscillations

机译:实时细胞粘弹性的高速宽带监测显示肌蛋白依赖性振荡

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Study of the dynamic evolutions of cell viscoelasticity is important as during cell activities such as cell metastasis and invasion, the rheological behaviors of the cells also change dynamically, reflecting the biophysical and biochemical connections between the outer cortex and the intracellular structures. Although the time variations of the static modulus of cells have been investigated, few studies have been reported on the dynamic variations of the frequency-dependent viscoelasticity of cells. Measuring and monitoring such dynamic evolutions of cells at nanoscale can be challenging as the measurement needs to meet two objectives inherently contradictory to each other-the measurement must be broadband (to cover a large frequency spectrum) but also rapid (to capture the time-elapsed changes). In this study, we exploited a recently developed control-based nanomechanical protocol of atomic force microscope to monitor in real time the dynamic evolutions of the viscoelasticity of live human prostate cancer cells (PC-3 cells) and study its dependence on myosin activities. We found that the viscoelasticity of PC-3 cells, followed the power law, and oscillated at a period of about 200 s. Both the amplitude and the frequency of the oscillation strongly depended on the intracellular calcium and blebbistatin-sensitive motor proteins.
机译:研究细胞粘弹性的动态演化是重要的,因为在细胞转移和侵袭中的细胞活性期间,细胞的流变行为也会动态变化,反映了外皮质和细胞内结构之间的生物物理和生化联系。虽然已经研究了细胞静态模量的时间变化,但是已经报告了细胞依赖性粘弹性的动态变化的研究。测量和监测在纳米级的细胞的这种动态演进可能具有挑战性,因为测量需要满足两个目标对方的两个目标 - 测量必须是宽带(以覆盖大的频谱),但也快速(以捕获时间变化)。在这项研究中,我们利用最近开发的基于控制的原子力显微镜的纳米力学方案,实时监测活性人前列腺癌细胞(PC-3细胞)的粘弹性的动态演进,并研究其对肌蛋白活动的依赖性。我们发现PC-3细胞的粘弹性,遵循电力法,并在大约200秒的时间内振荡。振幅和振荡的频率都强烈地依赖于细胞内钙和Blebbistatin敏感的电动蛋白。

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