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Role of Reactive Oxygen Species in Low Level Light Therapy

机译:活性氧在低水平光疗中的作用

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This review will focus on the role of reactive oxygen species in the cellular and tissue effects of low level light therapy (LLLT). Coincidentally with the increase in electron transport and in ATP, there has also been observed by intracellular fluorescent probes and electron spin resonance an increase in intracellular reactive oxygen species (ROS) such as superoxide, hydrogen peroxide, singlet oxygen and hydroxyl radical. ROS scavengers, antioxidants and ROS quenchers block many LLLT processes. It has been proposed that light between 400-500-nm may produce ROS by a photosensitization process involving flavins, while longer wavelengths may directly produce ROS from the mitochondria. Several redox-sensitive transcription factors are known such as NF-kB and AP1, that are able to initiate transcription of genes involved in protective responses to oxidative stress. It may be the case that LLLT can be pro-oxidant in the short-term, but anti-oxidant in the long-term.
机译:这项审查将侧重于活性氧在低水平光疗法(LLLT)的细胞和组织效应中的作用。巧合的是,随着电子传输和ATP的增加,通过细胞内荧光探针和电子自旋共振还观察到细胞内活性氧(ROS)例如超氧化物,过氧化氢,单线态氧和羟基自由基的增加。 ROS清除剂,抗氧化剂和ROS淬灭剂阻止了许多LLLT过程。已经提出400-500nm之间的光可以通过涉及黄素的光敏化过程产生ROS,而更长的波长可以直接从线粒体产生ROS。已知几种氧化还原敏感的转录因子,例如NF-kB和AP1,它们能够启动涉及氧化应激保护反应的基因的转录。 LLLT在短期内可能是促氧化剂,但在长期内可能是抗氧化剂。

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