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通过矩形和梯形高压脉冲对小鼠皮下肿瘤进行电穿孔。

Electroporation of subcutaneous mouse tumors by rectangular and trapezium high voltage pulses.

作者信息

Pliquett U, Elez R, Piiper A, Neumann E

机构信息

Physical and Biophysical Chemistry, Faculty of Chemistry, University of Bielefeld, P.O. Box 100 131, D-33501 Bielefeld, Germany.

出版信息

Bioelectrochemistry. 2004 Apr;62(1):83-93. doi: 10.1016/j.bioelechem.2003.11.001.

Abstract

The artificial electrotransfer of bioactive agents such as drugs, peptides or therapeutical nucleic acids and oligonucleotides by membrane electroporation (MEP) into single cells and tissue cells requires knowledge of the optimum ranges of the voltage, pulse duration and frequency of the applied pulses. For clinical use, the classical electroporators appear to necessitate some tissue specific presetting of the pulse parameters at the high voltage generator, before the actual therapeutic pulsing is applied. The optimum pulse parameters may be derived from the kinetic normal mode analysis of the current relaxations due to a voltage step (rectangular pulse). Here, the novel method of trapezium test pulses is proposed to rapidly assess the current (I)/voltage (U) characteristics (IUC). The analysis yields practical values for the voltage U(app) between a given electrode distance and pulse duration t(E) of rectangular high voltage (HV) pulses, to be preset for an effective in vivo electroporation of mouse subcutaneous tumors, clamped between two planar plate electrodes of stainless steel. The IUC of the trapezium pulse compares well with the IUC of rectangular pulses of increasing amplitudes. The trapezium pulse phase (s) of constant voltage and 3 ms duration, following the rising ramp phase (r), yields a current relaxation which is similar to the current relaxation during a rectangular pulse of similar duration. The fit of the current relaxation of the trapezium phase (s) to an exponential function and the IUC can be used to estimate the maximum current at a given voltage. The IUC of the falling edge (phase f) of the trapezium pulse serves to estimate the minimum voltage for the exploration of the long-lived electroporation membrane states with consecutive low-voltage (LV) pulses of longer duration, to eventually enhance electrophoretic uptake of ionic substances, initiated by the preceding HV pulses.

摘要

通过膜电穿孔(MEP)将药物、肽或治疗性核酸及寡核苷酸等生物活性剂人工电转移到单细胞和组织细胞中,需要了解所施加脉冲的电压、脉冲持续时间和频率的最佳范围。对于临床应用,传统的电穿孔仪在实际进行治疗性脉冲施加之前,似乎需要在高压发生器上针对某些组织进行特定的脉冲参数预设。最佳脉冲参数可从由于电压阶跃(矩形脉冲)引起的电流弛豫的动力学正常模式分析中得出。在此,提出了一种梯形测试脉冲的新方法来快速评估电流(I)/电压(U)特性(IUC)。该分析得出了在给定电极间距和矩形高压(HV)脉冲的脉冲持续时间t(E)之间的电压U(app)的实际值,以便为夹在两个不锈钢平板电极之间的小鼠皮下肿瘤进行有效的体内电穿孔预设。梯形脉冲的IUC与幅度不断增加的矩形脉冲的IUC具有良好的可比性。在上升斜坡阶段(r)之后,持续3毫秒的恒定电压梯形脉冲阶段(s)产生的电流弛豫与类似持续时间的矩形脉冲期间的电流弛豫相似。梯形阶段(s)的电流弛豫对指数函数的拟合以及IUC可用于估计给定电压下的最大电流。梯形脉冲下降沿(阶段f)的IUC用于估计最小电压,以便通过持续时间更长的连续低压(LV)脉冲探索长寿命的电穿孔膜状态,最终增强由先前的HV脉冲引发的离子物质的电泳摄取。

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