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首页> 外文期刊>Chembiochem: A European journal of chemical biology >Probing the Membrane Vibration of Single Living Cells by Using Nanopipettes
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Probing the Membrane Vibration of Single Living Cells by Using Nanopipettes

机译:用纳米坯探测单活细胞的膜振动

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The vibration of a cell membrane plays a key role in the regulation of cell shape and the behavior of cells. However, most existing approaches for the measurement of cell vibration require either exogenous modification or sophisticated techniques, and the main challenge lies in developing methods that can monitor membrane vibration of living cells directly. Herein, a noninvasive strategy based on ultrasmall quartz nanopipettes is introduced. With a tip size of less than 100 nm, nanopipettes can be spatially controlled for precision targeting of a specific location on the membrane of single living cells. Surprisingly, by employing a constant voltage, stable cyclic oscillations are observed from the continuous current versus time traces. The time-domain current can be decomposed into two basic waves: the high-frequency one indicates the local membrane vibration driven by the electro-osmotic flow from the nanopipette, whereas the low-frequency one indicates the natural frequency of the whole cell. This provides a simple but reliable method to test local and global membrane vibration of single living cells simultaneously with little damage, which provides a tool for the quantification of drugs, disease, or mutations of the cell structure.
机译:细胞膜的振动在细胞形状和细胞的行为的调节中起着关键作用。然而,测量细胞振动的大多数现有方法需要外源性改性或复杂的技术,并且主要挑战在于可以直接监测活细胞膜振动的方法。在此,引入了基于超易氧型纳米坯的非侵入性策略。具有小于100nm的尖端尺寸,可以在空间控制纳米坯以用于精确靶向单一活细胞膜上的特定位置。令人惊讶的是,通过采用恒定电压,从连续电流与时间迹线观察稳定的循环振荡。时域电流可以分解成两个基本波:高频器表示由来自纳米纤维电池的电渗透流动驱动的局部膜振动,而低频器表示整个细胞的固有频率。这提供了一种简单但可靠的方法,可以同时测试单一活细胞的局部和全球膜振动,其损坏几乎没有损伤,这为药物,疾病或细胞结构的突变提供了一种工具。

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