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Label-free single cell analysis with a chip-based impedance flow cytometer

机译:使用基于芯片的阻抗流式细胞仪进行无标记单细胞分析

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For description of cellular phenotypes and physiological states new developments are needed. Axetris' impedance flow cytometer (IFC) (Leister) is a new promising label-free alternative to fluorescence-based flow cytometry (FCM). IFC measures single cells at various frequencies simultaneously. The frequencies used for signal acquisition range from 0.1 to 20 MHz. The impedance signal provides information about cell volume (< 1 MHz), membrane capacitance (~l-4 MHz) and cytoplasmic conductivity (4-10 MHz), parameters directly related to the physiological conditions of single cells. In MCF-7 cell viability experiments, cells were treated with cytotoxic agents to induce cell death. Impedance analysis showed discrimination between viable and dead cells. This was clearly visible at 4 MHz suggesting that differentiation was possible based on cell membrane capacitance. Changes in cell membrane potential were also analysed by IFC. RN22 cells were loaded with membrane potential sensitive dye (DiBAC4). The cells were then treated with the ionophore valinomycin. Changes in membrane potential were detectable at the level of cytoplasm conductivity (>4 MHz) and membrane capacitance (1-4 MHz). Our data indicate that IFC can be a valuable alternative to conventional FCM for various applications in the field of cell death and physiology. The work will be extended to address further potential applications of IFC in biotechnology and biomedical cell analysis, as well as in cell sorting.
机译:为了描述细胞表型和生理状态,需要新的发展。 Axetris的阻抗流式细胞仪(IFC)(Leister)是基于荧光的流式细胞仪(FCM)的一种新的无标记替代方法。 IFC同时测量各种频率的单个小区。用于信号采集的频率范围为0.1到20 MHz。阻抗信号提供有关细胞体积(<1 MHz),膜电容(约1-4 MHz)和细胞质电导率(4-10 MHz)的信息,这些参数与单细胞的生理状况直接相关。在MCF-7细胞活力实验中,用细胞毒性剂处理细胞以诱导细胞死亡。阻抗分析显示区分活细胞和死细胞。这在4 MHz时清晰可见,这表明基于细胞膜电容可以分化。还通过IFC分析了细胞膜电位的变化。 RN22细胞装有膜电位敏感染料(DiBAC4)。然后用离子载体缬氨霉素处理细胞。在细胞质电导率(> 4 MHz)和膜电容(1-4 MHz)水平可以检测到膜电位的变化。我们的数据表明,对于细胞死亡和生理学领域的各种应用,IFC可以成为传统FCM的宝贵替代品。这项工作将扩大,以解决IFC在生物技术和生物医学细胞分析以及细胞分选中的进一步潜在应用。

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