首页> 外文期刊>Free Radical Biology and Medicine: The Official Journal of the Oxygen Society >Real-time imaging of novel spatial and temporal responses to photodynamic stress.
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Real-time imaging of novel spatial and temporal responses to photodynamic stress.

机译:实时成像对光动力应力的新型时空响应。

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Cells subjected to various forms of stress have been shown to induce bystander responses in nontargeted cells, thus extending the stress response to a larger population. However, the mechanism(s) of bystander responses remains to be clearly identified, particularly for photodynamic stress. Oxidative stress and cell viability were studied on the spatial and temporal levels after photodynamic targeting of a subpopulation of EMT6 murine mammary cancer cells in a multiwell plate by computerized time-lapse fluorescence microscopy. In the targeted population a dose-dependent loss of cell viability was observed in accordance with increased oxidative stress. This was accompanied by increased oxidative stress in bystander populations but on different time scales, reaching a maximum more rapidly in targeted cells. Treatment with extracellular catalase, or the NADPH oxidase inhibitor diphenyleneiodinium, decreased production of reactive oxygen species (ROS) in both populations. These effects are ascribed to photodynamic activation of NADPH-oxidase in the targeted cells, resulting in a rapid burst of ROS formation with hydrogen peroxide acting as the signaling molecule responsible for initiation of these photodynamic bystander responses. The consequences of increased oxidative stress in bystander cells should be considered in the overall framework of photodynamic stress.
机译:已经显示,遭受各种形式的压力的细胞会在非靶向细胞中诱导旁观者反应,从而将压力反应扩展到更大的群体。但是,旁观者反应的机制尚待明确,特别是对于光动力应力而言。通过计算机延时摄影荧光显微镜研究了多孔板中EMT6鼠乳癌细胞亚群的光动力靶向后,在空间和时间水平上研究了氧化应激和细胞活力。在目标人群中,随着氧化应激的增加,观察到细胞活力的剂量依赖性丧失。这伴随着旁观者群体中氧化应激的增加,但是在不同的时间尺度上,在靶细胞中达到最大值的速度更快。用细胞外过氧化氢酶或NADPH氧化酶抑制剂二亚苯基碘鎓处理可降低两个种群中活性氧(ROS)的产生。这些作用归因于靶细胞中NADPH-氧化酶的光动力活化,导致ROS形成的快速爆发,其中过氧化氢充当负责引发这些光动力旁观者反应的信号分子。应在光动力应激的总体框架中考虑旁观者细胞中氧化应激增加的后果。

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