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Tracking fast cellular membrane dynamics with sub-nm accuracy in the normal direction

机译:跟踪快速细胞膜动力学sub-nm精度在正常的方向

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Cellular membranes are important biomaterials with highly dynamic structures. Membrane dynamics plays an important role in numerous cellular processes, but precise tracking it is challenging due to the lack of tools with a highly sensitive and fast detection capability. Here we demonstrate a broad bandwidth optical imaging technique to measure cellular membrane displacements in the normal direction at subnm level detection limits and 20 ps temporal resolution (1 Hz-50 kHz). This capability allows us to study the intrinsic cellular membrane dynamics over a broad temporal and spatial spectrum. We measured the nanometer-scale stochastic fluctuations of the plasma membrane of HEK-293 cells, and found them to be highly dependent on the cytoskeletal structure of the cells. By analyzing the fluctuations, we further determine the mechanical properties of the cellular membranes. We anticipate that the method will contribute to the understanding of the basic cellular processes, and applications, such as mechanical phenotyping of cells at the single-cell level
机译:细胞膜是重要的生物材料高度动态的结构。在许多细胞中扮演一个重要的角色过程,但精确跟踪是具有挑战性的由于缺少工具高度敏感和快速检测能力。展示一个广泛的带宽光学成像技术来衡量细胞膜在subnm正常方向的位移水平检测极限和20 ps时间决议(1 Hz-50千赫)。我们研究内在的细胞膜在一个广泛的时空动态光谱。随机波动的质膜hek - 293细胞,发现他们是高度依赖于细胞骨架的结构细胞。确定的机械性能细胞膜。将有助于理解基本的细胞过程和应用程序,比如机械的细胞表现型单细胞水平

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