University of Ljubljana, Faculty of Electrical Engineering, Tržaška cesta 25, 1000, Ljubljana, Slovenia.
Sci Rep. 2020 Jun 4;10(1):9149. doi: 10.1038/s41598-020-65830-3.
In gene electrotransfer and cardiac ablation with irreversible electroporation, treated muscle cells are typically of elongated shape and their orientation may vary. Orientation of cells in electric field has been reported to affect electroporation, and hence electrodes placement and pulse parameters choice in treatments for achieving homogeneous effect in tissue is important. We investigated how cell orientation influences electroporation with respect to different pulse durations (ns to ms range), both experimentally and numerically. Experimentally detected electroporation (evaluated separately for cells parallel and perpendicular to electric field) via Ca uptake in H9c2 and AC16 cardiomyocytes was numerically modeled using the asymptotic pore equation. Results showed that cell orientation affects electroporation extent: using short, nanosecond pulses, cells perpendicular to electric field are significantly more electroporated than parallel (up to 100-times more pores formed), and with long, millisecond pulses, cells parallel to electric field are more electroporated than perpendicular (up to 1000-times more pores formed). In the range of a few microseconds, cells of both orientations were electroporated to the same extent. Using pulses of a few microseconds lends itself as a new possible strategy in achieving homogeneous electroporation in tissue with elongated cells of different orientation (e.g. electroporation-based cardiac ablation).
在基因电转移和不可逆电穿孔的心脏消融中,处理后的肌肉细胞通常呈长形,其方向可能会有所不同。据报道,细胞在电场中的方向会影响电穿孔,因此在治疗中选择电极的放置和脉冲参数以实现组织内的均匀效果非常重要。我们研究了细胞方向如何影响电穿孔,具体涉及不同的脉冲持续时间(纳秒到毫秒范围),包括实验和数值研究。使用 H9c2 和 AC16 心肌细胞通过 Ca 摄取来实验检测(分别评估细胞与电场平行和垂直的电穿孔情况),并使用渐近孔方程进行数值建模。结果表明,细胞方向会影响电穿孔程度:使用短的纳秒脉冲时,与电场垂直的细胞比与电场平行的细胞电穿孔程度明显更高(形成的孔多达 100 倍),而使用长的毫秒脉冲时,与电场平行的细胞比与电场垂直的细胞电穿孔程度更高(形成的孔多达 1000 倍)。在几微秒的范围内,两种取向的细胞都被电穿孔到相同的程度。使用几微秒的脉冲可能是一种新的策略,可以实现具有不同取向的长形细胞的组织内均匀电穿孔(例如基于电穿孔的心脏消融)。