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Detection and Characterization of Reactive Oxygen and Nitrogen Species in Biological Systems by Monitoring Species-Specific Products

机译:通过监测特定物种的产品来检测和表征生物系统中的活性氧和氮物种

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摘要

>Significance: Since the discovery of the superoxide dismutase enzyme, the generation and fate of short-lived oxidizing, nitrosating, nitrating, and halogenating species in biological systems has been of great interest. Despite the significance of reactive oxygen species (ROS) and reactive nitrogen species (RNS) in numerous diseases and intracellular signaling, the rigorous detection of ROS and RNS has remained a challenge.>Recent Advances: Chemical characterization of the reactions of selected ROS and RNS with electron paramagnetic resonance (EPR) spin traps and fluorescent probes led to the establishment of species-specific products, which can be used for specific detection of several forms of ROS and RNS in cell-free systems and in cultured cells in vitro and in animals in vivo. Profiling oxidation products from the ROS and RNS probes provides a rigorous method for detection of those species in biological systems.>Critical Issues: Formation and detection of species-specific products from the probes enables accurate characterization of the oxidative environment in cells. Measurement of the total signal (fluorescence, chemiluminescence, etc.) intensity does not allow for identification of the ROS/RNS formed. It is critical to identify the products formed by using chromatographic or other rigorous techniques. Product analyses should be accompanied by monitoring of the intracellular probe level, another factor controlling the yield of the product(s) formed.>Future Directions: More work is required to characterize the chemical reactivity of the ROS/RNS probes, and to develop new probes/detection approaches enabling real-time, selective monitoring of the specific products formed from the probes. Antioxid. Redox Signal. 28, 1416–1432.
机译:>意义:自从发现超氧化物歧化酶以来,生物系统中短寿命的氧化,亚硝化,硝化和卤化物种的产生和命运一直备受关注。尽管活性氧物种(ROS)和活性氮物种(RNS)在许多疾病和细胞内信号传导中具有重要意义,但严格检测ROS和RNS仍然是一个挑战。>近期进展:选定的ROS和RNS与电子顺磁共振(EPR)自旋阱和荧光探针的反应导致建立了物种特异性产物,可用于无细胞系统和培养物中多种形式的ROS和RNS的特异性检测体外和体内动物体内的细胞。用ROS和RNS探针分析氧化产物为检测生物系统中的这些物种提供了一种严格的方法。>关键问题:通过探针形成和检测特定物种的产物可以准确表征氧化环境在细胞中。总信号强度(荧光,化学发光等)的测量无法识别形成的ROS / RNS。鉴定使用色谱或其他严格技术形成的产品至关重要。产品分析应伴随细胞内探针水平的监测,细胞内探针水平是控制所形成产品产率的另一个因素。>未来方向:需要更多的工作来表征ROS / RNS的化学反应性探针,并开发新的探针/检测方法,从而可以实时,选择性地监控由探针形成的特定产物。抗氧化。氧化还原信号。 28,1416–1432。

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