Department of Radiology and Seoul National University Cancer Research Institute, Seoul National University College of Medicine, SNU-SMG Boramae Medical Center, 39 Boramae-Gil, Dongjak-Gu, Seoul 156-707, Republic of Korea.
Biochem Biophys Res Commun. 2013 Jun 14;435(4):651-6. doi: 10.1016/j.bbrc.2013.05.039. Epub 2013 May 17.
Irreversible electroporation is a novel method of ablating living tissues through its non-thermal effects, unlike radiofrequency ablation which has a severe problem of heat sink. It is due to high-energy direct current which leads to permanent disruption of lipid bilayer integrity in terms of exchanges between intra- and extracellular components via nano-sized pores. That finally causes irreversible damage to cellular homeostasis. Irreversibly damaged cells may undergo apoptosis followed by necrosis with time after electroporation. This damage can make it possible to monitor the ablated area with time post-IRE through MR imaging and an ultrasound system. Most previous studies have investigated the immediate response of undesired tissue to IRE. In our study, we showed changes of tumor tissues with time post-IRE by histological analysis and MR imaging. Tissues under IRE ablation showed a peak apoptotic rate at 24 h after IRE ablation with viable tissues at the peripheral rim of treated tissues in histological analysis. This phenomenon was also observed with no enhancement on contrast-enhanced MR images due to devascularization of IRE ablated zones.
不可逆电穿孔是一种通过非热效应消融活组织的新方法,与射频消融不同,后者存在严重的热沉问题。这是由于高能直流电导致细胞内外成分通过纳米大小的孔进行交换时,脂质双层完整性永久中断。这最终导致细胞内稳态的不可逆损伤。不可逆损伤的细胞可能在电穿孔后随着时间的推移经历凋亡,随后发生坏死。这种损伤使得通过磁共振成像和超声系统监测IRE 后消融区域成为可能。大多数先前的研究都调查了非预期组织对 IRE 的即时反应。在我们的研究中,我们通过组织学分析和磁共振成像显示了 IRE 后肿瘤组织随时间的变化。IRE 消融后的组织在组织学分析中显示出 24 小时时凋亡率最高,而在治疗组织的外周边缘仍有存活组织。这种现象也在对比增强磁共振图像上观察到,因为 IRE 消融区域的血管化。