Department of Bio and Brain Engineering, College of Life Science and Bioengineering, KAIST, Yuseong-gu, Daejeon, Republic of Korea.
Tissue Eng Part C Methods. 2010 Dec;16(6):1245-53. doi: 10.1089/ten.TEC.2009.0803. Epub 2010 Apr 6.
A microfabricated electroporator (MFE) for the irreversible electroporation (IRE) of tissues has been developed by miniaturizing a clinical electroporator with a two-needle array while keeping the same electric field strength distribution. Since IRE was brought to special attention as one of the local tissue ablation techniques to treat tumors, many preclinical studies have been conducted to investigate the efficacy of IRE on animal tissues. However, some technical difficulties have been frequently encountered due to the macroscale dimension of clinical electroporators, particularly in experiments on small animal models such as the mouse or rat. Here, the MFE was proposed to solve the associated problems, resulting in time- and cost-effective experimental procedures. With the developed MFE, the effect of IRE on rat liver tissues was analyzed with time by immunohistological stainings and electrical measurement, and the experimental results were compared with those operated with the corresponding real-scale clinical electroporator.
已通过将具有两针阵列的临床电穿孔器微型化来开发用于组织的不可逆电穿孔 (IRE) 的微加工电穿孔器 (MFE),同时保持相同的电场强度分布。由于 IRE 作为治疗肿瘤的局部组织消融技术之一受到特别关注,因此已经进行了许多临床前研究来研究 IRE 对动物组织的疗效。然而,由于临床电穿孔器的宏观尺寸,经常会遇到一些技术难题,特别是在小动物模型(如小鼠或大鼠)的实验中。在这里,提出了 MFE 来解决相关问题,从而实现了具有成本效益的实验程序。使用所开发的 MFE,通过免疫组织化学染色和电测量分析了 IRE 对大鼠肝组织的随时间的影响,并将实验结果与使用相应的实际临床电穿孔器进行的操作进行了比较。