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首页> 外文期刊>Scientific reports. >Dynamics of Singlet Oxygen-Triggered, RONS-Based Apoptosis Induction after Treatment of Tumor Cells with Cold Atmospheric Plasma or Plasma-Activated Medium
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Dynamics of Singlet Oxygen-Triggered, RONS-Based Apoptosis Induction after Treatment of Tumor Cells with Cold Atmospheric Plasma or Plasma-Activated Medium

机译:用冷大气血浆或等离子体活化培养基治疗肿瘤细胞后单线氧触发,鲁氏细胞凋亡诱导的动态

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Treatment of tumor cells with cold atmospheric plasma (CAP) or with plasma-activated medium (PAM) leads to a biochemical imprint on these cells. This imprint is mediated by primary singlet oxygen, which is mainly generated through the interaction between CAP-derived Hsub2/subOsub2/sub and NOsub2/subsup-/sup. This imprint is induced with a low efficiency as local inactivation of a few membrane-associated catalase molecules. As sustained generation of secondary singlet oxygen by the tumor cells is activated at the site of the imprint, a rapid bystander effect-like spreading of secondary singlet oxygen generation and catalase inactivation within the cell population is thus induced. This highly dynamic process is essentially driven by NOX1 and NOS of the tumor cells, and finally leads to intercellular RONS-driven apoptosis induction. This dynamic process can be studied by kinetic analysis, combined with the use of specific inhibitors at defined time intervals. Alternatively, it can be demonstrated and quantified by transfer experiments, where pretreated cells are mixed with untreated cells and bystander signaling is determined. These studies allow to conclude that the specific response of tumor cells to generate secondary singlet oxygen is the essential motor for their self-destruction, after a singlet oxygen-mediated triggering process by CAP or PAM.
机译:用冷大气血浆(帽)或血浆活化培养基(PAM)治疗肿瘤细胞导致这些细胞上的生物化学印记。该印记由初级单次氧介导,主要通过帽衍生的H 2 O 2 和No 2 - 。这种印记以低效率为局部灭活少数膜相关的过敏酶分子。因此,由于肿瘤细胞在压印部位激活慢性态单次氧氧,因此诱导了次级单态次次次次次次初生氧产生和过氧化氢酶灭活的快速旁观者效果的扩散。这种高动态的过程基本上由NOx1和肿瘤细胞的NO驱动,最终导致细胞间鲁的凋亡诱导。这种动态过程可以通过动力学分析来研究,结合在定义的时间间隔使用特定抑制剂。或者,可以通过转移实验进行证明和量化,其中预处理的细胞与未处理的细胞混合,并确定旁边的信号传导。这些研究允许得出结论,在单线氧介导的触发过程之后,肿瘤细胞产生二次单态氧的特异性响应是其自毁的基本电动机,通过帽或粉刺。

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