Poulkouras Romanos, Dijk Gerwin, Lefevre Marie, Bača Martin, Moreau David, O'Connor Rodney P
Mines Saint-Etienne, Centre CMP, Department of Bioelectronics, Gardanne, France; Institut de Neurosciences de la Timone (INT), Centre National de la Recherche Scientifique (CNRS) and Aix-Marseille Université, Marseille, France.
Mines Saint-Etienne, Centre CMP, Department of Bioelectronics, Gardanne, France; Panaxium SAS, Aix-en-Provence, France.
Bioelectrochemistry. 2022 Oct;147:108163. doi: 10.1016/j.bioelechem.2022.108163. Epub 2022 May 17.
Glioblastoma Multiforme is a highly lethal form of brain cancer, resistant to traditional therapeutic approaches and oftentimes hardly resectable. The application of pulsed electric fields (PEF) is gaining prominence as a highly effective approach for combating malignant tumors. However, PEF application at high voltages can generate reactive oxygen species through electrochemical events at electrodes, which can greatly affect intracellular processes and damage healthy cells. Here, we present an in depth study on the cellular impact of coating metal electrodes with an organic polymer PEDOT:PSS. We compared the effect of PEF application through coated and uncoated gold electrodes on the U87 human glioblastoma cell line. The results show that PEF application using PEDOT:PSS-coated electrodes does not induce intracellular ROS generation, even at high voltages, contrary to that observed with uncoated electrodes. PEF delivery with PEDOT:PSS coated electrodes results in minimal cell electroporation and a lower intracellular calcium response than uncoated metal electrodes. The application of the antioxidant MnTBAP allowed us to establish that superoxide generation is partially responsible for the higher intracellular calcium response observed in uncoated metal electrodes. The results demonstrate that PEDOT-coated electrodes allow for PEF application without intracellular ROS generation, with the trade-off being a diminished electroporation efficiency. These electrodes could therefore be useful for PEF application in ROS-sensitive tissues, as well as for disentangling the effect of PEFs on cells from the metabolic impact of electrolytic events arising from the electrode material.
多形性胶质母细胞瘤是一种极具致死性的脑癌,对传统治疗方法具有抗性,而且通常难以切除。脉冲电场(PEF)的应用作为一种对抗恶性肿瘤的高效方法正日益受到关注。然而,高电压下的PEF应用会通过电极处的电化学事件产生活性氧物种,这会极大地影响细胞内过程并损害健康细胞。在此,我们对用有机聚合物PEDOT:PSS包覆金属电极的细胞影响进行了深入研究。我们比较了通过包覆和未包覆的金电极施加PEF对U87人胶质母细胞瘤细胞系的影响。结果表明,与未包覆电极的情况相反,使用PEDOT:PSS包覆电极施加PEF即使在高电压下也不会诱导细胞内ROS生成。与未包覆的金属电极相比,用PEDOT:PSS包覆电极进行PEF传递导致的细胞电穿孔最小,细胞内钙反应也更低。抗氧化剂MnTBAP的应用使我们能够确定超氧化物的产生部分是未包覆金属电极中观察到的较高细胞内钙反应的原因。结果表明,PEDOT包覆电极允许在不产生细胞内ROS的情况下施加PEF,权衡之处在于电穿孔效率降低。因此,这些电极可用于对ROS敏感组织中的PEF应用,以及用于区分PEF对细胞的影响与电极材料引起的电解事件的代谢影响。