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A Highly Sensitive Chemiluminometric Assay for Real-Time Detection of Biological Hydrogen Peroxide Formation

机译:用于实时检测生物过氧化氢形成的高灵敏化学发光分析

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摘要

Hydrogen peroxide (H2O2) is a major reactive oxygen species (ROS) produced by various cellular sources, especially mitochondria. At high levels, H2O2 causes oxidative stress, leading to cell injury, whereas at low concentrations, this ROS acts as an important second messenger to participate in cellular redox signaling. Detection and measurement of the levels or rates of production of cellular H2O2 are instrumental in studying the biological effects of this major ROS. While a number of assays have been developed over the past decades for detecting and/or quantifying biological H2O2formation, none has been shown to be perfect. Perhaps there is no perfect assay for sensitively and accurately quantifying H2O2 as well as other ROS in cells, wherein numerous potential reactants are present to interfere with the reliable measurement of the specific ROS. In this context, each assay has its own advantages and intrinsic limitations. This article describes a highly sensitive assay for real-time detection of H2O2 formation in cultured cells and isolated mitochondria. This assay is based on the luminol/horseradish peroxidase-dependent chemiluminescence that is inhibitable by catalase. The article discusses the usefulness and shortcomings of this chemiluminometric assay in detecting biological H2O2 formation induced by beta-lapachone redox cycling with both cells and isolated mitochondria.
机译:过氧化氢(H2O2)是由各种细胞来源(尤其是线粒体)产生的主要活性氧(ROS)。高水平时,H2O2会引起氧化应激,导致细胞损伤,而低浓度时,此ROS则是参与细胞氧化还原信号传导的重要第二信使。检测和测量细胞H2O2的产生水平或速率有助于研究这种主要ROS的生物学效应。尽管在过去的几十年中已经开发出了许多检测和/或定量生物学H2O2形成的方法,但没有一种方法是完美的。也许没有一种灵敏,准确地定量细胞中H2O2和其他ROS的完美方法,其中存在大量潜在的反应物,干扰了特定ROS的可靠测量。在这种情况下,每种测定法都有其自身的优点和固有的局限性。本文介绍了一种用于实时检测培养的细胞和分离的线粒体中H2O2形成的高灵敏度检测方法。该测定基于过氧化氢酶可抑制的鲁米诺/辣根过氧化物酶依赖性化学发光。本文讨论了这种化学发光测定法在检测β-拉帕酮氧化还原循环与细胞和分离的线粒体诱导的生物过氧化氢形成中的有用性和不足。

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