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Quantification of living cell adhesion forces with a nanorobotic system

机译:用纳米菌卵系统定量活性细胞粘附力

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Cell-surface adhesion forces are significant in regulating cellular activities. In this paper, a nanorobotic system was developed and based on this system, a novel method measuring the cell-surface adhesion force is proposed. The nanorobotic system mainly consists of two independently actuated and sensed microcantilevers, forming a nanotweezer with capabilities of pick-and-place manipulation of a single cell in aqueous environments with accurate force sensing that is sufficiently sensitive to characterize interactions of cell-cell, cell-surface, even single molecules. Capabilities of the developed nanorobotic system have been validated by experimentally qualifying cell-surface adhesion events occurred between C2C12 cells (mouse adherent myoblasts) and Petri dishes under different contact time.
机译:细胞表面粘附力在调节细胞活性方面是显着的。在本文中,提出了一种纳米毒卵间体系,提出了一种测量细胞表面粘附力的新方法。纳米菌卵系统主要由两个独立致动和感测的微膜组成,形成纳米仪,具有在水性环境中的单个细胞的拾取和放置单个细胞的能力的能力,其具有足够敏感的细胞 - 细胞的相互作用,细胞 - 细胞表面,甚至单分子。通过在不同接触时间下的C2C12细胞(小鼠粘附肌细胞)和培养皿之间发生的实验鉴定细胞表面粘合事件,已经通过了实验鉴定了开发的纳米毒性系统的能力。

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