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首页> 外文期刊>Biochemical and Biophysical Research Communications >Bipolar nanosecond electric pulses are less efficient at electropermeabilization and killing cells than monopolar pulses
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Bipolar nanosecond electric pulses are less efficient at electropermeabilization and killing cells than monopolar pulses

机译:双极纳秒电脉冲在电透化和杀死细胞方面比单极脉冲效率低

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Multiple studies have shown that bipolar (BP) electric pulses in the microsecond range are more effective at permeabilizing cells while maintaining similar cell survival rates as compared to monopolar (MP) pulse equivalents. In this paper, we investigated whether the same advantage existed for BP nanosecond-pulsed electric fields (nsPEF) as compared to MP nsPEF. To study permeabilization effectiveness, MP or BP pulses were delivered to single Chinese hamster ovary (CHO) cells and the response of three dyes, Calcium Green-1, propidium iodide (PI), and FM1-43, was measured by confocal microscopy. Results show that BP pulses were less effective at increasing intracellular calcium concentration or PI uptake and cause less membrane reorganization (FM1-43) than MP pulses. Twenty-four hour survival was measured in three cell lines (Jurkat, U937, CHO) and over ten times more BP pulses were required to induce death as compared to MP pulses of similar magnitude and duration. Flow cytometry analysis of CHO cells after exposure (at 15 min) revealed that to achieve positive FITC-Annexin V and PI expression, ten times more BP pulses were required than MP pulses. Overall, unlike longer pulse exposures, BP nsPEF exposures proved far less effective at both membrane permeabilization and cell killing than MP nsPEF.
机译:多项研究表明,与单极(MP)脉冲等效物相比,微秒范围内的双极(BP)电脉冲在透化细胞方面更有效,同时保持相似的细胞存活率。在本文中,我们研究了与MP nsPEF相比,BP纳秒脉冲电场(nsPEF)是否存在相同的优势。为了研究通透性的有效性,将MP或BP脉冲传递至单个中国仓鼠卵巢(CHO)细胞,并通过共聚焦显微镜测量了三种染料Calcium Green-1,碘化丙啶(PI)和FM1-43的响应。结果显示,与MP脉冲相比,BP脉冲在增加细胞内钙浓度或PI吸收方面效果不佳,并且导致更少的膜重组(FM1-43)。在三个细胞系(Jurkat,U937,CHO)中测量了二十四小时的存活率,与类似幅度和持续时间的MP脉冲相比,需要十倍以上的BP脉冲才能诱发死亡。暴露后(第15分钟)对CHO细胞的流式细胞仪分析表明,要使FITC-Annexin V和PI表达阳性,所需的BP脉冲要比MP脉冲多十倍。总体而言,与更长的脉冲暴露不同,BP nsPEF暴露在膜通透性和细胞杀伤力上均远不如MP nsPEF有效。

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