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Comparison of fluorescence-based techniques for the quantification of particle-induced hydroxyl radicals

机译:基于荧光的定量颗粒诱导的羟基自由基技术的比较

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摘要

BackgroundReactive oxygen species including hydroxyl radicals can cause oxidative stress and mutations. Inhaled particulate matter can trigger formation of hydroxyl radicals, which have been implicated as one of the causes of particulate-induced lung disease. The extreme reactivity of hydroxyl radicals presents challenges to their detection and quantification. Here, three fluorescein derivatives [aminophenyl fluorescamine (APF), amplex ultrared, and dichlorofluorescein (DCFH)] and two radical species, proxyl fluorescamine and tempo-9-ac have been compared for their usefulness to measure hydroxyl radicals generated in two different systems: a solution containing ferrous iron and a suspension of pyrite particles.
机译:背景活性氧包括羟基自由基会引起氧化应激和突变。吸入的微粒物质会触发羟基自由基的形成,这被认为是微粒诱发的肺部疾病的原因之一。羟基自由基的极强反应性对其检测和定量提出了挑战。在这里,已比较了三种荧光素衍生物[氨基苯基荧光胺(APF),双链超红和二氯荧光素(DCFH)]和两种自由基物质,即代用品荧光胺和tempo-9-ac在测量在两个不同系统中产生的羟基自由基方面的有用性:一种含有亚铁和黄铁矿颗粒悬浮液的溶液。

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