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A 2-D Cell Layer Study on Synergistic Combinations of High-Voltage and Low-Voltage Irreversible Electroporation Pulses

机译:一种二维细胞层研究高压和低压不可逆电穿孔脉冲的协同组合

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摘要

Irreversible electroporation (IRE) employs brief, high-electric field pulses to ablate tumors while preserving the extracellular matrix. Recently, we showed that combining short high-voltage (SHV) IRE pulses and long low-voltage (LLV) IRE pulses can enlarge the tissue ablation region, presumably through a synergistic effect. Objective: The goal of this study is to further investigate the effect of this combination on a 2-D cell layer tumor model. Methods: 2-D layers of tumor cells are exposed to various SHV and LLV combinations, and the results of propidium iodide (PI) and fluorescein diacetate staining are examined to correlate treatment protocols with the ensuing irreversible and reversible electroporation areas. Results: The combination of SHV+LLV pulses produces a larger area of electroporation and ablation than LLV+SHV pulses, LLV pulses alone, and SHV pulses alone. Conclusion: Judiciously combining SHV and LLV pulses can produce a synergistic effect that enlarges the electroporation-induced ablation area. A hypothetical explanation for this effect is that it involves a combination of pore expansion and electrolysis induced by LLV pulses in the area that had been reversibly permeabilized by the SHV pulses. Significance: This paper is valuable for the design of improved IRE protocols and provides a hypothesis for the mechanisms involved.
机译:不可逆的电穿孔(IRE)在保持细胞外基质的同时使用简短的高电场脉冲以消融肿瘤。最近,我们表明,组合短的高压(SHV)IRE脉冲和长低电压(LLV)IRE脉冲可以扩大组织消融区域,推测通过协同效应。目的:本研究的目的是进一步研究这种组合对2-D细胞层肿瘤模型的影响。方法:将肿瘤细胞的2-D层暴露于各种SHV和LLV组合,并检查碘化丙啶(PI)和荧光素二乙酸盐染色的结果,以与随后的不可逆电穿孔区域相关联的治疗方案。结果:SHV + LLV脉冲的组合比LLV + SHV脉冲,单独的LLV脉冲和SHV脉冲产生更大的电穿孔和消融区域。结论:显着地结合SHV和LLV脉冲可以产生增大电穿孔诱导的消融区域的协同效应。对这种效果的假设解释是它涉及通过SHV脉冲可逆地透露的区域中的LLV脉冲诱导的孔膨胀和电解的组合。意义:本文对改进的IRE协议设计有价值,并为所涉及的机制提供假设。

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