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The light-oxygen effect in biological cells enhanced by highly localized surface plasmon-polaritons

机译:通过高度局部表面等离子体 - 极性恒增强生物细胞中的光氧效

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Here at the first time we suggested that the surface plasmon-polariton phenomenon which it is well described in metallic nanostructures could also be used for explanation of the unexpectedly strong oxidative effects of the low-intensity laser irradiation in living matters (cells, tissues, organism). We demonstrated that the narrow-band laser emitting at 1265?nm could generate significant amount of the reactive oxygen species (ROS) in both HCT116 and CHO-K1 cell cultures. Such cellular ROS effects could be explained through the generation of highly localized plasmon-polaritons on the surface of mitochondrial crista. Our experimental conditions, the low-intensity irradiation, the narrow spectrum band (4?nm) of the laser and comparably small size bio-structures (~10?μm) were shown to be sufficient for the plasmon-polariton generation and strong laser field confinement enabling the oxidative stress observed.
机译:在这里,我们建议在金属纳米结构中详细描述的表面等离子体 - 极性磁性现象也可用于解释生命事项的低强度激光照射的意外强的氧化效果(细胞,组织,生物体)。我们证明,在1265℃下发射的窄带激光可以在HCT116和CHO-K1细胞培养物中产生大量的活性氧物质(ROS)。这种细胞ROS效应可以通过在线粒体嵴表面上产生高度局部化的血浆 - 极性官来解释。我们的实验条件,低强度照射,激光和相对小尺寸的生物结构(〜10?μm)的窄光谱带(<4·nm)足以使等离子体 - 极性恒电和强激光器足够现场监禁使得观察到氧化应激。

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