Gianulis Elena C, Lee Jimo, Jiang Chunqi, Xiao Shu, Ibey Bennet L, Pakhomov Andrei G
Frank Reidy Research Center for Bioelectrics, Old Dominion University, Norfolk, VA 23508, USA.
Department of Electrical and Computer Engineering, Old Dominion University, Norfolk, VA 23508, USA.
Sci Rep. 2015 Sep 8;5:13818. doi: 10.1038/srep13818.
The present study compared electroporation efficiency of bipolar and unipolar nanosecond electric field oscillations (NEFO). Bipolar NEFO was a damped sine wave with 140 ns first phase duration at 50% height; the peak amplitude of phases 2-4 decreased to 35%, 12%, and 7% of the first phase. This waveform was rectified to produce unipolar NEFO by cutting off phases 2 and 4. Membrane permeabilization was quantified in CHO and GH3 cells by uptake of a membrane integrity marker dye YO-PRO-1 (YP) and by the membrane conductance increase measured by patch clamp. For treatments with 1-20 unipolar NEFO, at 9.6-24 kV/cm, 10 Hz, the rate and amount of YP uptake were consistently 2-3-fold higher than after bipolar NEFO treatments, despite delivering less energy. However, the threshold amplitude was about 7 kV/cm for both NEFO waveforms. A single 14.4 kV/cm unipolar NEFO caused a 1.5-2 times greater increase in membrane conductance (p<0.05) than bipolar NEFO, along with a longer and less frequent recovery. The lower efficiency of bipolar NEFO was preserved in Ca2+-free conditions and thus cannot be explained by the reversal of electrophoretic flows of Ca2+. Instead, the data indicate that the electric field polarity reversals reduced the pore yield.
本研究比较了双极和单极纳秒电场振荡(NEFO)的电穿孔效率。双极NEFO是一种阻尼正弦波,在50%高度处的第一阶段持续时间为140纳秒;第二至第四阶段的峰值幅度降至第一阶段的35%、12%和7%。通过切除第二和第四阶段将该波形整流以产生单极NEFO。通过摄取膜完整性标记染料YO-PRO-1(YP)以及通过膜片钳测量的膜电导增加,对CHO和GH3细胞中的膜通透性进行定量。对于用1 - 20个单极NEFO进行的处理,在9.6 - 24 kV/cm、10 Hz的条件下,尽管传递的能量较少,但YP摄取的速率和量始终比双极NEFO处理后高2 - 3倍。然而,两种NEFO波形的阈值幅度约为7 kV/cm。单个14.4 kV/cm的单极NEFO导致膜电导增加(p<0.05)比双极NEFO大1.5 - 2倍,同时恢复时间更长且频率更低。双极NEFO的较低效率在无Ca2+条件下仍然存在,因此不能用Ca2+电泳流的逆转来解释。相反,数据表明电场极性反转降低了孔的产率。