Batista Napotnik Tina, Cimperman Tina, Rems Lea
Faculty of Electrical Engineering, University of Ljubljana, Tržaška Cesta 25, 1000, Ljubljana, Slovenia.
Sci Rep. 2025 Jul 2;15(1):23451. doi: 10.1038/s41598-025-06989-5.
Electroporation affects action potential generation in excitable cells such as nerve, muscle and cardiac cells. Since electroporation-based treatments use different pulse protocols, we investigated how electric pulses of different duration (from 500 ns to 1 ms) trigger action potentials and cause electroporation in genetically engineered cultured excitable cell model. Transmembrane voltage was monitored using a fluorescent potentiometric probe and fluorescence microscopy. We triggered similar responses in these cells using electric pulses of all pulse durations. At lower electric fields, we stimulated action potentials and at higher electric fields, electroporation occurred: the action potentials were gradually prolonged and eventually, ended up in sustained depolarization. For shorter pulses, higher electric fields had to be used to achieve the same effect. However, the shape of the action potential was affected by pulse duration. With shorter pulses (500 ns-10 µs), the action potentials were much longer already at the excitation thresholds, due to more prominent effect of electroporation, compared to longer pulses (e.g., 1 ms) where action potentials were triggered by classical electrostimulation (i.e., excitation) without electroporation. Moreover, we detected a complex, biphasic intracellular calcium response in excitable S-HEK cells that was absent in non-excitable NS-HEK version of these cells.
电穿孔会影响神经、肌肉和心脏细胞等可兴奋细胞中的动作电位产生。由于基于电穿孔的治疗使用不同的脉冲方案,我们研究了不同持续时间(从500纳秒到1毫秒)的电脉冲如何在基因工程培养的可兴奋细胞模型中触发动作电位并导致电穿孔。使用荧光电位探针和荧光显微镜监测跨膜电压。我们使用所有脉冲持续时间的电脉冲在这些细胞中引发了类似的反应。在较低电场下,我们刺激动作电位,而在较高电场下,发生电穿孔:动作电位逐渐延长,最终以持续去极化结束。对于较短的脉冲,必须使用更高的电场才能达到相同的效果。然而,动作电位的形状受脉冲持续时间的影响。与较长脉冲(例如1毫秒)相比,较短脉冲(500纳秒至10微秒)在激发阈值时动作电位就已经长得多,因为电穿孔的影响更显著,较长脉冲的动作电位是由经典电刺激(即激发)触发的,没有电穿孔。此外,我们在可兴奋的S-HEK细胞中检测到了一种复杂的双相细胞内钙反应,而在这些细胞的非可兴奋NS-HEK版本中则不存在这种反应。