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Label-free Sorting and Counting of Yeast Cells for Viability Studies

机译:无活性研究的无标记分选和计数酵母细胞

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This paper reports the new combination of cell sorting and counting capabilities on a single device. Most state-of-the-art devices combining these technologies use optical techniques requiring complicate experimental setups and labeled samples. The use of a label-free, electrical device significantly decreases the system complexity and makes it more appropriate for use in point-of-care diagnostics. Living and dead yeast cells are separated by dielectrophoretic forces and counted using coulter counters. The combination of these two methods allows the determination of the percentage of living and dead cells for viability studies of cell samples. It could further be used for sorting and counting of blood cells in applications such as diagnosis of insufficient cell concentrations, identification of cell deficiencies or bacterial contamination. The use of dielectrophoresis (DEP) as sorting principle allows to separate cells based on their dielectric properties in place of size-based separation, enabling sorting of large panels of cells and separation of infected and non-infected cells of the same type.
机译:本文报告了单个设备上的单元格排序和计数功能的新组合。组合这些技术的最先进的设备使用需要复杂的实验设置和标记样品的光学技术。使用无标签的电气设备显着降低了系统复杂性,并使其更适合用于护理点诊断。生活和死酵母细胞通过介电泳力分离并使用Coulter计数器进行计数。这两种方法的组合允许测定细胞样品的活性研究的生物和死细胞的百分比。它可以进一步用于分类和计数血细胞在诸如细胞浓度不足,鉴定细胞缺陷或细菌污染的应用中的血细胞。使用介电泳(DEP)作为分类原理允许基于它们的介电性能分离细胞代替基于尺寸的分离,从而能够分类细胞的大面板和相同类型的感染和未感染细胞的分离。

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