Department of Biomedical Engineering, Faculty of Electrical Engineering, University of Ljubljana, Tržaška 25, SI-1000 Ljubljana, Slovenia.
Bioelectrochemistry. 2013 Dec;94:79-86. doi: 10.1016/j.bioelechem.2013.09.001. Epub 2013 Sep 10.
Electrostatic discharges occur naturally as lightning strokes, and artificially in light sources and in materials processing. When an electrostatic discharge interacts with living matter, the basic physical effects can be accompanied by biophysical and biochemical phenomena, including cell excitation, electroporation, and electrofusion. To study these phenomena, we developed an experimental system that provides easy sample insertion and removal, protection from airborne particles, observability during the experiment, accurate discharge origin positioning, discharge delivery into the sample either through an electric arc with adjustable air gap width or through direct contact, and reliable electrical insulation where required. We tested the system by assessing irreversible electroporation of Escherichia coli bacteria (15 mm discharge arc, 100 A peak current, 0.1 μs zero-to-peak time, 0.2 μs peak-to-halving time), and gene electrotransfer into CHO cells (7 mm discharge arc, 14 A peak current, 0.5 μs zero-to-peak time, 1.0 μs peak-to-halving time). Exposures to natural lightning stroke can also be studied with this system, as due to radial current dissipation, the conditions achieved by a stroke at a particular distance from its entry are also achieved by an artificial discharge with electric current downscaled in magnitude, but similar in time course, correspondingly closer to its entry.
静电放电自然发生,如闪电,也可在光源和材料处理中人为产生。当静电放电与生物体相互作用时,基本物理效应可能伴随着生物物理和生化现象,包括细胞兴奋、电穿孔和电融合。为了研究这些现象,我们开发了一种实验系统,该系统提供了易于插入和取出样品、防止空气中颗粒进入、在实验过程中进行观察、准确定位放电源、通过可调空气隙宽度的电弧或直接接触将放电输送到样品中、以及在需要时进行可靠的电绝缘的功能。我们通过评估大肠杆菌(15 毫米放电弧、100 A 峰值电流、0.1 μs 零到峰值时间、0.2 μs 峰值到减半时间)的不可逆电穿孔和 CHO 细胞的基因电转(7 毫米放电弧、14 A 峰值电流、0.5 μs 零到峰值时间、1.0 μs 峰值到减半时间)来测试该系统。由于径向电流耗散,该系统还可以研究自然闪电的暴露情况,因为在特定距离处的闪电产生的条件,也可以通过电流按比例缩小但时间过程相似的人工放电来实现,相应地更接近其入口。