首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >Non-invasive, electro-orientation-based viability assay using optically transparent electrodes for individual fission yeast cells
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Non-invasive, electro-orientation-based viability assay using optically transparent electrodes for individual fission yeast cells

机译:非侵入性,基于电取的基于电取的活力测定,用于各个裂变酵母细胞的光学透明电极

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摘要

A non-invasive assay of cylindrical yeast cell viability based on electro-orientation (EO) in an alternating electric field was developed, in which cell viability can be determined by each cell's EO direction without the need for reagents. A cell suspension of a few microliters was sandwiched between a pair of optically transparent indium tin oxide (ITO) plate electrodes. Observation under a light microscope enabled easy identification of EO based on cell shape, e.g., cells were standing upright and appeared perfectly circular when oriented parallel to the electric field direction (standing position), and they were lying flat and had an elongated shape when oriented perpendicular to the field (lain-down position). The alternative EO positions of living or dead cells were dependent on the applied frequency: opposite EO positions were obtained by applying an AC voltage of 1.5 Vat 10 MHz; at which point, only living cells rapidly attained a standing position, whereas dead cells were lain-down within 10 s. All the cell's EO positions agreed well with a viability assay by florescence staining. Therefore, at the single-cell level and fluorescently label-free, it was possible to simply and accurately determine whether individual cells were alive or dead based on their shape.
机译:基于交替电场中的电型电场(EO)的圆柱酵母电池活力的非侵入性测定,其中细胞活力可以通过每个细胞的EO方向确定而不需要试剂。几个微升的细胞悬浮液夹在一对光学透明的氧化铟锡(ITO)板电极之间。在光学显微镜下观察能够易于基于细胞形状识别EO,例如,当平行于电场方向(站立位置)的定向时,细胞竖立直立,并且出现完全圆形,并且它们在平坦并且当取向时具有细长的形状垂直于该领域(Lain-Down位置)。生活或死电池的替代EO位置取决于所施加的频率:通过施加1.5 VAT 10 MHz的AC电压来获得相反的EO位置;此时,只有活细胞迅速达到立体位置,而死细胞在10秒内留下。所有细胞的EO位置都通过浮动染色来吻合良好。因此,在单细胞水平和无荧光标记上,可以简单地准确地确定各个细胞是否基于它们的形状活着或死亡。

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