Institute of Anatomy, TU Dresden, D-01304 Dresden, Germany.
Institute of Clinical Chemistry and Laboratory Medicine, TU Dresden, D-01069 Dresden, Germany.
Int J Mol Sci. 2023 Feb 8;24(4):3433. doi: 10.3390/ijms24043433.
Though electrical stimulation is used as a therapeutic approach to treat retinal and spinal injuries, many protective mechanisms at cellular level have not been elucidated. We performed a detailed analysis of cellular events in blue light (Li) stressed 661W cells, which were subjected to direct current electric field (EF) stimulation. Our findings revealed that EF stimulation induced protective effects in 661W cells from Li-induced stress by multiple defense mechanisms, such as increase in mitochondrial activity, gain in mitochondrial potential, increase in superoxide levels, and the activation of unfolded protein response (UPR) pathways, all leading to an enhanced cell viability and decreased DNA damage. Here, our genetic screen results revealed the UPR pathway to be a promising target to ameliorate Li-induced stress by EF stimulation. Thus, our study is important for a knowledgeable transfer of EF stimulation into clinical application.
尽管电刺激被用作治疗视网膜和脊髓损伤的方法,但许多细胞水平的保护机制仍未阐明。我们对暴露于蓝光(Li)的 661W 细胞中的细胞事件进行了详细分析,这些细胞受到了直流电场(EF)刺激。我们的研究结果表明,EF 刺激通过多种防御机制诱导 661W 细胞免受 Li 诱导的应激的保护作用,例如线粒体活性增加、线粒体势增加、超氧化物水平增加以及未折叠蛋白反应(UPR)途径的激活,所有这些都导致细胞活力增强和 DNA 损伤减少。在这里,我们的遗传筛选结果表明 UPR 途径是通过 EF 刺激改善 Li 诱导的应激的有希望的靶标。因此,我们的研究对于将 EF 刺激知识转移到临床应用中非常重要。