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Ultrashort electric pulse induced changes in cellular dielectric properties

机译:超短电脉冲引起细胞介电特性的变化

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摘要

The interaction of nanosecond duration pulsed electric fields (nsPEFs) with biological cells, and the models describing this behavior, depend critically on the electrical properties of the cells being pulsed. Here, we used time domain dielectric spectroscopy to measure the dielectric properties of Jurkat cells, a malignant human T-cell line, before and after exposure to five 10 ns, 150 kV/cm electrical pulses. The cytoplasm and nucleoplasm conductivities decreased dramatically following pulsing, corresponding to previously observed rises in cell suspension conductivity. This suggests that electropermeabilization occurred, resulting in ion transport from the cell’s interior to the exterior. A delayed decrease in cell membrane conductivity after the nsPEFs possibly suggests long-term ion channel damage or use dependence due to repeated membrane charging and discharging. This data could be used in models describing the phenomena at work.
机译:纳秒持续时间脉冲电场(nsPEF)与生物细胞的相互作用以及描述这种行为的模型,在很大程度上取决于被脉冲细胞的电学性质。在这里,我们使用时域介电谱法测量了在暴露于五个10 ns,150 kV / cm电脉冲前后的Jurkat细胞(一种恶性人T细胞系)的介电性能。脉冲后,细胞质和核质的电导率急剧下降,与先前观察到的细胞悬浮液电导率的上升相对应。这表明发生了电渗透,导致离子从电池内部传输到外部。 nsPEFs后细胞膜电导率的延迟下降可能表明长期的离子通道受损或由于重复的膜充电和放电而导致使用依赖性。该数据可用于描述工作现象的模型中。

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