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Histopathological and Ultrastructural Changes after Electroporation in Pig Liver Using Parallel-Plate Electrodes and High-Performance Generator

机译:平行板电极和高效能发生器在猪肝中电穿孔后的组织病理学和超微结构变化

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摘要

Irreversible electroporation (IRE) has gained attention as a new non-thermal therapy for ablation with important benefits in terms of homogeneous treatment and fast recovery. In this study, a new concept of high voltage generator is used, enabling irreversible electroporation treatment in large tissue volume using parallel plates. Unlike currently available generators, the proposed versatile structure enables delivering high-voltage high-current pulses. To obtain homogeneous results, 3-cm parallel-plates electrodes have also been designed and implemented. IRE ablation was performed on six female pigs at 2000 V/cm electric field, and the results were analysed after sacrifice three hours, three days and seven days after ablation. Histopathological and ultrastructural studies, including transmission and scanning electron microscopy, were carried out. The developed high-voltage generator has proved to be effective for homogeneous IRE treatment using parallel plates. The destruction of the membrane of the hepatocytes and the alterations of the membranes of the cellular organelles seem incompatible with cell death by apoptosis. Although endothelial cells also die with electroporation, the maintenance of vascular scaffold allows repairing processes to begin from the third day after IRE as long as the blood flow has not been interrupted. This study has opened new direction for IRE using high performance generators and highlighted the importance of taking into account ultrastructural changes after IRE by using electron microscopy analysis.
机译:不可逆电穿孔(IRE)作为一种新型的消融非热疗法引起了人们的关注,在均匀治疗和快速恢复方面具有重要优势。在这项研究中,使用了高压发生器的新概念,可以使用平行板在大组织体积中进行不可逆的电穿孔治疗。与当前可用的发电机不同,所提出的通用结构能够传递高压大电流脉冲。为了获得均匀的结果,还设计并实现了3厘米的平行板电极。对六只雌猪在2000 V / cm电场下进行IRE消融,并在消融后3小时,3天和7天处死后分析结果。进行了组织病理学和超微结构研究,包括透射电子显微镜和扫描电子显微镜。事实证明,开发的高压发生器对于使用平行板进行均匀的IRE处理非常有效。肝细胞膜的破坏和细胞器细胞膜的改变似乎与细胞凋亡引起的细胞死亡不相容。尽管内皮细胞也会因电穿孔而死亡,但只要不中断血流,维持血管支架可使修复过程从IRE后第三天开始。这项研究为使用高性能发生器的IRE开辟了新的方向,并强调了通过电子显微镜分析考虑IRE后超微结构变化的重要性。

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