Vilnius Gediminas Technical University, Institute of High Magnetic Fields, Vilnius, 03227, Lithuania.
Vilnius University, Department of Biotechnology and Microbiology, Vilnius, 03101, Lithuania.
Sci Rep. 2016 Sep 16;6:33537. doi: 10.1038/srep33537.
Electroporation is a phenomenon occurring due to exposure of cells to Pulsed Electric Fields (PEF) which leads to increase of membrane permeability. Electroporation is used in medicine, biotechnology, and food processing. Recently, as an alternative to electroporation by PEF, Pulsed ElectroMagnetic Fields (PEMF) application causing similar biological effects was suggested. Since induced electric field in PEMF however is 2-3 magnitudes lower than in PEF electroporation, the membrane permeabilization mechanism remains hypothetical. We have designed pilot experiments where Saccharomyces cerevisiae and Candida lusitaniae cells were subjected to single 100-250 μs electrical pulse of 800 V with and without concomitant delivery of magnetic pulse (3, 6 and 9 T). As expected, after the PEF pulses only the number of Propidium Iodide (PI) fluorescent cells has increased, indicative of membrane permeabilization. We further show that single sub-millisecond magnetic field pulse did not cause detectable poration of yeast. Concomitant exposure of cells to pulsed electric (PEF) and magnetic field (PMF) however resulted in the increased number PI fluorescent cells and reduced viability. Our results show increased membrane permeability by PEF when combined with magnetic field pulse, which can explain electroporation at considerably lower electric field strengths induced by PEMF compared to classical electroporation.
电穿孔是一种由于细胞暴露于脉冲电场 (PEF) 而引起的现象,导致细胞膜通透性增加。电穿孔在医学、生物技术和食品加工中得到应用。最近,有人提出了一种替代 PEF 电穿孔的方法,即应用脉冲电磁场 (PEMF) ,产生类似的生物学效应。然而,由于 PEMF 中感应电场比 PEF 电穿孔低 2-3 个数量级,因此细胞膜通透性的机制仍然是假设的。我们设计了初步实验,其中将酿酒酵母和卡氏酵母细胞暴露于 800V 的单个 100-250μs 电脉冲,并在有或没有同时施加磁场脉冲 (3、6 和 9T) 的情况下进行。正如预期的那样,只有在施加 PEF 脉冲后,碘化丙啶 (PI) 荧光细胞的数量才会增加,表明细胞膜通透性增加。我们进一步表明,单个亚毫秒磁场脉冲不会导致酵母穿孔。然而,细胞同时暴露于脉冲电场 (PEF) 和磁场 (PMF) 会导致 PI 荧光细胞数量增加和活力降低。我们的结果表明,PEF 与磁场脉冲联合使用时会增加细胞膜的通透性,这可以解释与传统电穿孔相比,PEMF 诱导的电场强度低得多时的电穿孔现象。