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Ten–Second Electrophysiology: Evaluation of the 3DEP Platform for high-speed, high-accuracy cell analysis

机译:十二秒电生理:高速,高精度细胞分析的3DEP平台评估

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Electrical correlates of the physiological state of a cell, such as membrane conductance and capacitance, as well as cytoplasm conductivity, contain vital information about cellular function, ion transport across the membrane, and propagation of electrical signals. They are, however, difficult to measure; gold-standard techniques are typically unable to measure more than a few cells per day, making widespread adoption difficult and limiting statistical reproducibility. We have developed a dielectrophoretic platform using a disposable 3D electrode geometry that accurately (rsup2/sup??0.99) measures mean electrical properties of populations of ~20,000 cells, by taking parallel ensemble measurements of cells at 20 frequencies up to 45?MHz, in (typically) ten seconds. This allows acquisition of ultra-high-resolution (100-point) DEP spectra in under two minutes. Data acquired from a wide range of cells - from platelets to large cardiac cells - benchmark well with patch-clamp-data. These advantages are collectively demonstrated in a longitudinal (same-animal) study of rapidly-changing phenomena such as ultradian (2-3?hour) rhythmicity in whole blood samples of the common vole (Microtus arvalis), taken from 10?μl tail-nick blood samples and avoiding sacrifice of the animal that is typically required in these studies.
机译:电池的生理状态的电相关性,例如膜传导和电容,以及细胞质电导率,含有关于蜂窝函数,穿过膜的离子输送的重要信息,以及电信号的传播。然而,它们难以衡量;金标技术通常不能每天测量超过少数细胞,使广泛采用困难和限制统计重现性。我们已经开发了一种使用一次性3D电极几何形状的介电泳平台,可准确(R 2 ?> 0.99)尺寸通过在20个频率下采取并联集合测量来衡量〜20,000个细胞的群体的电气性质高达45?MHz,(通常)十秒钟。这允许在两分钟内获取超高分辨率(100点)DEP光谱。从各种细胞中获取的数据 - 从血小板到大型心脏细胞 - 用补丁钳数据阱很好地进行基准。这些优点在纵向(相同的动物)研究中统称在常见的鼠孔(Microotus Arvalis)的全血样品中的超级血液样本(Microotus Arvalis)中的超级血液样本(2-3?小时)的节奏,从10μl尾部进行缺口血样并避免在这些研究中通常需要的动物牺牲。

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