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Determination of Reactive Oxygen Species in Cigarette Smoke by DR6G Fluorescent Probe

机译:DR6G荧光探针测定香烟烟中的活性氧物种

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A mass of reactive oxygen species(ROS) are produced in the process of smoking. Superfluous ROS can induce the oxidative stress in organism, which will cause irreversible damage to cells. Fluorescent probe is taken as a marker of oxidative stress in biology and has been applied to ROS detection in the field of biology and chemistry for high sensitivity, high simplicity of data collection and high resolution. As one type of fluorescent probe, no-fluorescent dihydrorhodamine 6G(dR6G) will be oxidized to the fluorescent rhodamine 6G. In this process, each molecule reacts with two active oxygen molecules. The probe can be used to detect ROS in mainstream cigarette smoke by using derivative fluorescence method. The action mechanism of ROS on dR6G was investigated and the standard curve of R6G fluorescence intensity with its content was built up. The contents of ROS from the 4 types of cigarettes purchased in market were detected and the cleaning ability of filter tip to ROS in cigarette smoke was also researched. The result shows that the amount of ROS has close relationship with the types of tobacco and cigarette production technology and the cleaning ability of filter tip to ROS in cigarette smoke is very limited. Compared with other detecting methods such as electronic spin resonance(ESR), chromatography and mass spectrometry, this detection method by the fluorescent probe has higher efficiency and sensitivity and will have wide applications in the ROS detection fields.
机译:在吸烟过程中生产的一系列反应性氧物质(ROS)。多余的ROS可以诱导生物体中的氧化应激,这会对细胞产生不可逆转的损害。荧光探针作为生物学中氧化应激的标志物,并已应用于生物学和化学领域的ROS检测,以实现高灵敏度,高分辨率的数据收集和高分辨率。作为一种类型的荧光探针,NO-荧光二氢胺6g(DR6G)将被氧化成荧光罗丹明6g。在该方法中,每个分子与两个活性氧分子反应。探针可用于通过使用衍生荧光法检测主流烟烟雾中的ROS。研究了ROS上ROS上的动作机制,建立了R6G荧光强度标准曲线。检测到在市场上购买的4种卷烟的ROS的内容,还研究了卷烟烟雾过滤器尖端的清洁能力。结果表明,ROS的数量与烟草和卷烟生产技术的类型密切相关,卷烟烟雾中的过滤器尖端的清洁能力非常有限。与其他检测方法(例如电子自旋共振(ESR),色谱和质谱相比,荧光探针的该检测方法具有较高的效率和灵敏度,并且在ROS检测场中具有广泛的应用。

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