Wang Lijun, Liu Dun, Zhou Ru, Wang Zhigang, Cuschieri Alfred
Institute for Medical Science and Technology (IMSaT), College of Medicine, Dentistry and Nursing, University of Dundee, Dundee DD2 1FD, UK.
Int J Mol Sci. 2015 Mar 26;16(4):6890-901. doi: 10.3390/ijms16046890.
Electroporation is a physical method to increase permeabilization of cell membrane by electrical pulses. Carbon nanotubes (CNTs) can potentially act like "lighting rods" or exhibit direct physical force on cell membrane under alternating electromagnetic fields thus reducing the required field strength. A cell poration/ablation system was built for exploring these effects of CNTs in which two-electrode sets were constructed and two perpendicular electric fields could be generated sequentially. By applying this system to breast cancer cells in the presence of multi-walled CNTs (MWCNTs), the effective pulse amplitude was reduced to 50 V/cm (main field)/15 V/cm (alignment field) at the optimized pulse frequency (5 Hz) of 500 pulses. Under these conditions instant cell membrane permeabilization was increased to 38.62%, 2.77-fold higher than that without CNTs. Moreover, we also observed irreversible electroporation occurred under these conditions, such that only 39.23% of the cells were viable 24 h post treatment, in contrast to 87.01% cell viability without presence of CNTs. These results indicate that CNT-enhanced electroporation has the potential for tumour cell ablation by significantly lower electric fields than that in conventional electroporation therapy thus avoiding potential risks associated with the use of high intensity electric pulses.
电穿孔是一种通过电脉冲增加细胞膜通透性的物理方法。碳纳米管(CNTs)在交变电磁场作用下可能像“避雷针”一样发挥作用,或对细胞膜施加直接的物理力,从而降低所需的场强。构建了一个细胞穿孔/消融系统来探索碳纳米管的这些效应,该系统构建了两组电极,能够依次产生两个相互垂直的电场。通过将该系统应用于存在多壁碳纳米管(MWCNTs)的乳腺癌细胞,在优化的500个脉冲的脉冲频率(5 Hz)下,有效脉冲幅度降低至50 V/cm(主电场)/15 V/cm(排列电场)。在这些条件下,即时细胞膜通透性增加到38.62%,比没有碳纳米管时高2.77倍。此外,我们还观察到在这些条件下发生了不可逆电穿孔,以至于处理后24小时只有39.23%的细胞存活,而没有碳纳米管时细胞存活率为87.01%。这些结果表明,与传统电穿孔疗法相比,碳纳米管增强的电穿孔有可能通过显著更低的电场实现肿瘤细胞消融,从而避免与使用高强度电脉冲相关的潜在风险。