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首页> 外文期刊>Methods: A Companion to Methods in Enzymology >Multiple-Particle-Tracking to investigate viscoelastic properties in living cells.
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Multiple-Particle-Tracking to investigate viscoelastic properties in living cells.

机译:多粒子跟踪研究活细胞中的粘弹性。

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Cell mechanical properties play an important role in determining many cellular activities. Passive microrheology techniques, such as Multiple-Particle-Tracking (MPT) give an insight into the structural rearrangements and viscoelastic response of a wide range of materials, in particular soft materials and complex fluids like cell cytoplasm in living cells. The technique finds an important field of application in large cells such as oocytes where, during their growth, several organelles and molecules are displaced in specific territories of the cell instrumental for later embryonic development. To measure cell mechanics, cells are usually deformed by many techniques that are slow and often invasive. To overcome these limits, the MPT technique is applied. Probe particles are embedded in the viscoelastic sample and their properties are extracted from the thermal fluctuation spectra measured using digital video-microscopy. The Brownian motion of a probe particle immersed in a network is directly related to the network's mechanical properties. Particles exhibit larger motions when their local environments are less rigid or less viscous. The mean-square-displacement (MSD) of the particle's trajectory is used to quantify its amplitude of motions over different time scales.
机译:细胞机械性质在确定许多细胞活动中起重要作用。被动微流变技术,例如多颗粒跟踪(MPT),使人们能够洞察多种材料的结构重排和粘弹性响应,特别是软质材料和诸如活细胞中细胞质的复杂流体。该技术在卵母细胞等大型细胞中发现了重要的应用领域,在卵母细胞的生长过程中,一些细胞器和分子在细胞的特定区域内被置换,为以后的胚胎发育提供了帮助。为了测量细胞力学,细胞通常会通过许多缓慢且经常具有侵入性的技术进行变形。为了克服这些限制,应用了MPT技术。探针颗粒嵌入粘弹性样品中,并从使用数字视频显微镜测量的热波动光谱中提取其特性。浸入网络中的探针粒子的布朗运动与网络的机械性能直接相关。当其局部环境的刚度较小或粘性较小时,它们将显示较大的运动。粒子轨迹的均方位移(MSD)用于量化其在不同时间范围内的运动幅度。

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