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Nanosecond pulsed electric fields modulate cell function through intracellular signal transduction mechanisms

机译:纳秒脉冲电场通过细胞内信号转导机制调节细胞功能

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These studies describe the effects of nanosecond (10–300 ns) pulsed electric fields (nsPEF) on mammalian cell structure and function. As the pulse durations decrease, effects on the plasma membrane (PM) decrease and effects on intracellular signal transduction mechanisms increase. When nsPEF-induced PM electroporation effects occur, they are distinct from classical PM electroporation effects, suggesting unique, nsPEF-induced PM modulations. In HL-60 cells, nsPEF that are well below the threshold for PM electroporation and apoptosis induction induce effects that are similar to purinergic agonist-mediated calcium release from intracellular stores, which secondarily initiate capacitive calcium influx through store-operated calcium channels in the PM. NsPEF with durations and electric field intensities that do or do not cause PM electroporation, induce apoptosis in mammalian cells with a well-characterized phenotype typified by externalization of phosphatidylserine on the outer PM and activation of caspase proteases. Treatment of mouse fibrosarcoma tumors with nsPEF also results in apoptosis induction. When Jurkat cells were transfected by electroporation and then treated with nsPEF, green fluorescent protein expression was enhanced compared to electroporation alone. The results indicate that nsPEF activate intracellular mechanisms that can determine cell function and fate, providing an important new tool for probing signal transduction mechanisms that modulate cell structure and function and for potential therapeutic applications for cancer and gene therapy.
机译:这些研究描述了纳秒(10–300 ns)脉冲电场(nsPEF)对哺乳动物细胞结构和功能的影响。随着脉冲持续时间的减少,对质膜(PM)的影响会减少,而对细胞内信号转导机制的影响则会增加。当nsPEF诱导的PM电穿孔效应发生时,它们与经典的PM电穿孔效应不同,表明nsPEF诱导的PM调制具有独特性。在HL-60细胞中,远低于PM电穿孔和凋亡诱导阈值的nsPEF诱导的作用类似于嘌呤能激动剂介导的钙从细胞内存储中的释放,其次是通过PM中存储操作的钙通道引发电容性钙内流。具有持续时间和不引起PM电穿孔的电场强度的NsPEF诱导具有特征明确的表型的哺乳动物细胞凋亡,其特征在于外部PM上的磷脂酰丝氨酸的外在化和caspase蛋白酶的活化。用nsPEF治疗小鼠纤维肉瘤瘤也可诱导凋亡。当通过电穿孔转染Jurkat细胞,然后用nsPEF处理时,与单独的电穿孔相比,绿色荧光蛋白表达得到增强。结果表明,nsPEF激活可确定细胞功能和命运的细胞内机制,为探测调节细胞结构和功能的信号转导机制以及用于癌症和基因治疗的潜在治疗应用提供了重要的新工具。

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