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Use of a novel sonosensitizer in sonodynamic therapy of U251 glioma cells in vitro

机译:新型声敏剂在U251胶质瘤细胞体外声动力治疗中的应用

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摘要

The aim of the present study was to investigate the effect of ZnPcS2P2-meditated sonodynamic therapy (SDT) on U251 human glioma cells and to identify its underlying biological mechanism. The growth inhibition rate was determined by MTT assay. The apoptotic rate was examined by flow cytometry. Fine structures were observed with transmission electron microscopy (TEM). Generation of reactive oxygen species (ROS) was detected spectrophotometrically. Caspase-3, -8 and -9 expression was detected by Western blot analysis. The growth inhibition rate of U251 human glioma cells indicated that ZnPcS2P2-meditated SDT had a better growth inhibition rate of tumor cells at a concentration of 5.0 μg/ml ZnPcS2P2, at a 4-h incubation time with ZnPcS2P2, and at 6 h re-incubation following SDT. At 6 h after SDT, the growth inhibition rate of cells was significantly higher compared to other groups, apoptosis could be detected in SDT by flow cytometry. TEM examination revealed morphological features of apoptosis or necrosis. Furthermore, caspase-3, -8 and -9 expression following SDT was found to be increased by Western blot analysis. Finally, generation of ROS in cells was also elevated. In conclusion, ZnPcS2P2-SDT is capable of inducing U251 cell apoptosis or necrosis and has satisfying antitumor effects. The mechanism of ZnPcS2P2-meditated SDT involves ROS generation in U251 cells, which initiates subsequent apoptosis through the mitochondrial and death receptor pathways.
机译:本研究的目的是研究ZnPcS2P2冥想声动力疗法(SDT)对U251人神经胶质瘤细胞的作用,并确定其潜在的生物学机制。通过MTT测定法确定生长抑制率。通过流式细胞术检查细胞凋亡率。用透射电子显微镜(TEM)观察到精细的结构。分光光度法检测活性氧(ROS)的产生。通过蛋白质印迹分析检测Caspase-3,-8和-9的表达。 U251人神经胶质瘤细胞的生长抑制率表明,ZnPcS2P2介导的SDT在浓度为5.0μg/ ml ZnPcS2P2,与ZnPcS2P2孵育4小时后以及在6 h的重新培养后,对肿瘤细胞具有更好的生长抑制率。 SDT后进行孵育。 SDT后6 h,细胞的生长抑制率明显高于其他组,流式细胞仪检测到SDT细胞凋亡。 TEM检查显示细胞凋亡或坏死的形态特征。此外,通过蛋白质印迹分析发现SDT后caspase-3,-8和-9的表达增加。最后,细胞中ROS的产生也增加了。总之,ZnPcS2P2-SDT能够诱导U251细胞凋亡或坏死,并具有令人满意的抗肿瘤作用。 ZnPcS2P2介导的SDT的机制涉及U251细胞中的ROS生成,其通过线粒体和死亡受体途径启动随后的凋亡。

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