Division of Health Protection Technologies, Italian National Agency for Energy New Technologies and Sustainable Economic Development (ENEA), Via Anguillarese 301, 00123 Rome, Italy.
Great Equipment Center-Section of Electron Microscopy, University of Tuscia, Largo dell'Università snc, 01100 Viterbo, Italy.
Int J Mol Sci. 2024 Feb 13;25(4):2233. doi: 10.3390/ijms25042233.
In the last few years, pulsed electric fields have emerged as promising clinical tools for tumor treatments. This study highlights the distinct impact of a specific pulsed electric field protocol, PEF-5 (0.3 MV/m, 40 μs, 5 pulses), on astrocytes (NHA) and medulloblastoma (D283) and glioblastoma (U87 NS) cancer stem-like cells (CSCs). We pursued this goal by performing ultrastructural analyses corroborated by molecular/omics approaches to understand the vulnerability or resistance mechanisms triggered by PEF-5 exposure in the different cell types. Electron microscopic analyses showed that, independently of exposed cells, the main targets of PEF-5 were the cell membrane and the cytoskeleton, causing membrane filopodium-like protrusion disappearance on the cell surface, here observed for the first time, accompanied by rapid cell swelling. PEF-5 induced different modifications in cell mitochondria. A complete mitochondrial dysfunction was demonstrated in D283, while a mild or negligible perturbation was observed in mitochondria of U87 NS cells and NHAs, respectively, not sufficient to impair their cell functions. Altogether, these results suggest the possibility of using PEF-based technology as a novel strategy to target selectively mitochondria of brain CSCs, preserving healthy cells.
在过去的几年中,脉冲电场已成为有前途的肿瘤治疗临床工具。本研究强调了一种特定的脉冲电场方案(PEF-5(0.3MV/m、40μs、5 个脉冲))对星形胶质细胞(NHA)和髓母细胞瘤(D283)和神经胶质瘤(U87 NS)癌症干细胞样细胞(CSC)的独特影响。我们通过进行超微结构分析,并结合分子/组学方法来理解不同细胞类型中 PEF-5 暴露引发的易损性或抗性机制,从而实现了这一目标。电子显微镜分析表明,无论暴露的细胞如何,PEF-5 的主要靶标是细胞膜和细胞骨架,导致细胞表面膜丝状伪足样突起消失,这是首次观察到这种现象,同时伴随着细胞迅速肿胀。PEF-5 诱导了细胞线粒体的不同变化。在 D283 中证明了完全的线粒体功能障碍,而在 U87 NS 细胞和 NHA 的线粒体中观察到轻度或可忽略的扰动,这不足以损害它们的细胞功能。总之,这些结果表明,使用基于 PEF 的技术作为一种新的策略来选择性靶向脑 CSC 的线粒体,同时保留健康细胞是有可能的。