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首页> 外文期刊>The Journal of Membrane Biology: An International Journal for Studies on the Structure, Function & Genesis of Biomembranes >Terahertz Electric Field-Induced Membrane Electroporation by Molecular Dynamics Simulations
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Terahertz Electric Field-Induced Membrane Electroporation by Molecular Dynamics Simulations

机译:通过分子动力学模拟的Terahertz电场诱导膜电穿孔

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In this paper, the membrane electroporation induced by the terahertz electric field is simulated by means of the molecular dynamics method. The influences of the waveform and frequency of the applied terahertz electric field on the electroporation and the unique features of the process of the electroporation with the applied terahertz electric field are given. It shows that whether the electroporation can happen depends on the waveform of the applied terahertz electric field when the magnitude is not large enough. No pore appears if the terahertz electric field direction periodically reverses, and dipole moments of the interfacial water and the bulk water keep reversing. The nm-scale single pore forms with the applied terahertz trapezoidal electric field. It is found that the average pore formation time is strongly influenced by the terahertz electric field frequency. An abnormal variation region that shows decline exists on the correlation curve of the average pore formation time and the trapezoidal electric field frequency, whereas the overall trend of the curve is increasing. The decrease of the water oriented polarization degree results in the increase of the electroporation time, and the abnormal variation region appearance may be related to the drastic change of average water hydrogen bond number that is resulted from the resonance of water hydrogen bond network and the applied electric field. Compared to the nanosecond electric pulse and constant electric field, the numbers of the water protrusions and the water bridges are smaller and the pore formation time is relatively longer with the applied terahertz electric field.
机译:本文通过分子动力学方法模拟了太赫兹电场诱导的膜电穿孔。给出了施加的太赫兹电场的波形和频率对电穿孔的影响和与所施加的太赫兹电场的电穿孔过程的独特特征。它表明,电穿孔是否可能发生取决于当幅度不够大时施加的太赫兹电场的波形。如果太赫兹电场方向周期性地逆转,并且界面水的偶极矩和散装水的偶极矩保持逆转。 NM尺度单孔用施加的太赫兹梯形电场形成。发现平均孔形成时间受到太赫兹电场频率的强烈影响。在平均孔形成时间和梯形电场频率的相关曲线上显示出衰落的异常变化区域,而曲线的总体趋势正在增加。取向偏振度的降低导致电穿孔时间的增加,并且异常变化区域外观可能与水氢键网络的共振和所施加的平均水氢键数的激烈变化有关。电场。与纳秒电脉冲和恒定电场相比,水突起的数量和水桥的数量较小,并且孔形成时间与应用的太赫兹电场相对较长。

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