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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Evaluations of a mechanistic hypothesis for the influence of extracellular ions on electroporation due to high-intensity, nanosecond pulsing
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Evaluations of a mechanistic hypothesis for the influence of extracellular ions on electroporation due to high-intensity, nanosecond pulsing

机译:机械假说的评估,该假说是由于高强度纳秒脉冲引起的细胞外离子对电穿孔的影响

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摘要

The effect of ions present in the extracellular medium on electroporation by high-intensity, short-duration pulsing is studied through molecular dynamic simulations. Our simulation results indicate that mobile ions in the medium might play a role in creating stronger local electric fields across membranes that then reinforce and strengthen electroporation. Much faster pore formation is predicted in higher conductivity media. However, the impact of extracellular conductivity on cellular inflows, which depend on transport processes such as electrophoresis, could be different as discussed here. Our simulation results also show that interactions between cations (Na+ in this case) and the carbonyl oxygen of the lipid headgroups could impede pore resealing.
机译:通过分子动力学模拟研究了细胞外介质中存在的离子通过高强度,短时脉冲对电穿孔的影响。我们的模拟结果表明,介质中的移动离子可能会在跨膜产生更强的局部电场中起作用,然后加强和增强电穿孔。预计在较高电导率的介质中会更快地形成孔。但是,细胞外电导率对细胞流入的影响取决于此处的运输过程,例如电泳,可能会有所不同。我们的模拟结果还表明,阳离子(在这种情况下为Na +)与脂质头基的羰基氧之间的相互作用可能会阻碍孔的重新密封。

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