首页> 外文期刊>IEEE Transactions on Dielectrics and Electrical Insulation >Ultrashort Pulsed Electric Fields Induce Membrane Phospholipid Translocation and Caspase Activation: Differential Sensitivities of Jurkat T Lymphoblasts and Rat Glioma C6 Cells
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Ultrashort Pulsed Electric Fields Induce Membrane Phospholipid Translocation and Caspase Activation: Differential Sensitivities of Jurkat T Lymphoblasts and Rat Glioma C6 Cells

机译:超短脉冲电场诱导膜磷脂易位和胱天蛋白酶激活:Jurkat T淋巴细胞和大鼠神经胶质瘤C6细胞的敏感性差异。

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Megavolt-per-meter electric pulses with durations shorter than charging time constants associated with external cell membrane dielectric properties can generate significant voltages on the membranes of intracellular structures. Nanosecond-duration, high-field (2-4 MV/m) pulses are not immediately lethal to cells and do not produce the conductive openings in the cytoplasmic membrane associated with long-pulse, low-field electroporation, but can induce profound physiological changes, including apoptosis (programmed cell death). We demonstrate rapid, non-destructive, field-dependent translocation of the plasma membrane inner leaflet phospholipid phosphatidylserine in Jurkat T lymphocytes, and we show that cells which exhibit a similar geometry in suspension, rat glioma C6 cells, are highly resistant to these pulses and respond differently even to much higher doses.
机译:持续时间短于与外部细胞膜介电特性相关的充电时间常数的每米兆伏电脉冲会在细胞内结构的膜上产生大量电压。纳秒持续时间的高场(2-4 MV / m)脉冲不会立即对细胞致死,并且不会在细胞质膜上产生与长脉冲,低场电穿孔相关的导电开口,但会引起深刻的生理变化,包括凋亡(程序性细胞死亡)。我们证明了Jurkat T淋巴细胞中质膜内部小叶磷脂磷脂酰丝氨酸的快速,非破坏性,场依赖性移位,并且我们显示了在悬浮液中表现出相似几何形状的细胞,大鼠神经胶质瘤C6细胞对这些脉冲具有高度抗性,并且甚至对更高剂量也有不同的反应。

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