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The Effect of Intense Subnanosecond Electrical Pulses on Biological Cells

机译:强烈的亚纳秒电脉冲对生物细胞的影响

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Nanosecond electrical pulses have been successfully used to treat melanoma tumors by using needle arrays as pulse delivery systems. Reducing the pulse duration of intense electric field pulses from nanoseconds into the subnanosecond range will allow us to use wideband antennas to deliver the electromagnetic fields into tissue with a spatial resolution in the centimeter range. To explore the biological effect of intense subnanosecond pulses, we have developed a generator that provides voltage pulses of 160 kV amplitude, 200 ps rise time, and 800 ps pulse width. The pulses are delivered to a cylindrical Teflon chamber with polished flat electrodes at either end. The distance between the electrodes is variable and allows us to generate electric fields of up to 1 MV/cm in cell suspensions. The pulses have been applied to B16 (murine melanoma) cells, and the plasma membrane integrity was studied by means of trypan blue exclusion. For pulse amplitudes of 550 kV/cm, approximately 50% of the cells took up trypan blue right after pulsing, whereas only 20% were taking it up after 1 h. This indicates that the plasma membrane in a majority of the cells affected by the pulses recovers with a time constant of about 1 h. The cells that show trypan blue uptake after this time suffer cell death through apoptosis. Evaluation of the experimental results and molecular dynamics modeling results indicate that with a pulse duration of 800 ps, membrane charging and nanopore formation are the dominant bioelectric effects on B16 cells. This information has been used in a continuum model to estimate the increase in membrane permeability and, consequently, the increase in pore size caused by repetitive pulsing.
机译:纳秒级电脉冲已通过使用针阵列作为脉冲传输系统成功地用于治疗黑素瘤肿瘤。将强电场脉冲的脉冲持续时间从纳秒减少到亚纳秒范围内,将使我们能够使用宽带天线以厘米范围内的空间分辨率将电磁场传递到组织中。为了探索亚纳秒脉冲的生物效应,我们开发了一种发生器,该发生器可提供160 kV振幅,200 ps上升时间和800 ps脉冲宽度的电压脉冲。脉冲被传送到圆柱形的聚四氟乙烯室,其两端均带有抛光的扁平电极。电极之间的距离是可变的,使我们能够在细胞悬液中产生高达1 MV / cm的电场。脉冲已应用于B16(鼠黑色素瘤)细胞,并通过锥虫蓝排除法研究了质膜的完整性。对于550 kV / cm的脉冲幅度,大约50%的细胞在脉冲后立即吸收了锥虫蓝,而仅20%的细胞在1小时后吸收了锥虫蓝。这表明受脉冲影响的大多数细胞的质膜以约1小时的时间常数恢复。这段时间之后显示出锥虫蓝摄取的细胞会因凋亡而死亡。对实验结果和分子动力学建模结果的评估表明,脉冲持续时间为800 ps时,膜电荷和纳米孔形成是B16细胞的主要生物电效应。该信息已用于连续模型中,以估计膜渗透性的增加,并因此估计由重复脉冲引起的孔径的增加。

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