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Electrochemical Monitoring of the Early Events of Hydrogen Peroxide Production by Mitochondria

机译:线粒体产生过氧化氢的早期事件的电化学监测

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摘要

Mitochondria consume oxygen in the respiratory chain and convert redox energy into ATP. As a side process, they produce reactive oxygen species (ROS), whose physiological activities are still not understood. However, current analytical methods cannot be used to monitor mitochondrial ROS quantitatively and unambiguously. We have developed electrochemical biosensors based on peroxidase-redox polymer-modified electrodes, providing selective detection of H2O2 with nanomolar sensitivity, linear response over five concentration decades, and fast response time. The release of H2O2 by mitochondria was then monitored under phosphorylating or inhibited respiration conditions. We report the detection of two concomitant regimes of H2O2 release: large fluxes (hundreds of nM) under complex III inhibition, and bursts of a few mm immediately following mitochondria activation. These unprecedented bursts of H2O2 are assigned to the role of mitochondria as the hub of redox signaling in cells.
机译:线粒体消耗呼吸链中的氧气并将氧化还原能转化为ATP。作为副过程,它们会产生活性氧(ROS),其生理活性尚不清楚。但是,当前的分析方法不能用于定量和明确地监测线粒体ROS。我们已经开发了基于过氧化物酶-氧化还原聚合物修饰电极的电化学生物传感器,可选择性检测H2O2,具有纳摩尔灵敏度,超过五个浓度十年的线性响应以及快速的响应时间。然后在磷酸化或抑制的呼吸条件下监测线粒体释放的H2O2。我们报告检测到H2O2释放的两个伴随机制:复杂III抑制下的大流量(数百nM),以及线粒体激活后立即爆发的几毫米。这些史无前例的H2O2爆发被赋予线粒体作为细胞中氧化还原信号传递中心的作用。

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