Nesmith Thomas, Vieira Christian, Rackus Darius G, Gupta Gagan D
Department of Chemistry and Biology, Toronto Metropolitan University, Toronto, Ontario M5B 2K3, Canada.
Biomicrofluidics. 2024 Aug 6;18(4):044105. doi: 10.1063/5.0204837. eCollection 2024 Jul.
Electric fields are used in biology to address a broad range of questions and through a variety of techniques, including electroporation, gene electrotransfer (GET), electrostimulation (ES), and electrochemotherapy. Each of these modalities requires specific conditions and has drastically different target outcomes on the cell. ES has demonstrated that non-pore forming electric fields alter cell cycle progression. However, pore forming electric fields such as with GET have not been as widely explored despite major clinical advancements. Additionally, the real-time visual analysis of electrical field effects on mammalian cell culture is currently lacking among most commercial systems. To facilitate investigations into these research areas, an electroporation cytometry system was developed including a custom chamber compatible with live cell imaging and exponential decay pulse generator for live cell analysis. The functionality of the system was demonstrated using a recombinant cell line using U-2 OS cells and FUCCI(CA)5 cell cycle reporter. The exposure of the cells to a 180 V pulse in both unsynchronized and synchronized populations revealed an effect on the cell cycle.
电场在生物学中被用于解决广泛的问题,并通过多种技术来实现,包括电穿孔、基因电转移(GET)、电刺激(ES)和电化学疗法。这些方法中的每一种都需要特定的条件,并且对细胞具有截然不同的目标结果。电刺激已证明非成孔电场会改变细胞周期进程。然而,尽管在临床方面取得了重大进展,但诸如基因电转移中使用的成孔电场尚未得到广泛研究。此外,大多数商业系统目前缺乏对电场对哺乳动物细胞培养影响的实时视觉分析。为了促进对这些研究领域的调查,开发了一种电穿孔细胞计数系统,该系统包括一个与活细胞成像兼容的定制腔室和用于活细胞分析的指数衰减脉冲发生器。使用含有U-2 OS细胞和FUCCI(CA)5细胞周期报告基因的重组细胞系证明了该系统的功能。在未同步和同步群体中,细胞暴露于180 V脉冲均显示对细胞周期有影响。